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Secondary Metabolites of Penicillium and Acremonium | SpringerLink
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Secondary Metabolites of Penicillium and AcremoniumP. G. MantleChapter
Fungi elaborate an almost bewildering array of metabolites that, being additional to those normally regarded as having a specific role in the living process, are generally termed secondary metabolites. It is now clear that all the compounds are biosynthesized from a few key metabolic intermediates that are themselves either intermediates or end products of primary metabolism, which can be thought of as all the integrated metabolic processes the products of which are ultimately involved in structure, replication, differentiation, communication, and homeostasis at the cellular or organismic level.Mycophenolic Acid Fungal Metabolite Biosynthetic Potential Penicillium Cyclopium Triacetic Acid Lactone
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to check access.Unable to display preview.&Abe, M., Yamatodani, S., Yamano, T., Kozu, Y., and Yamada, S., 1967, Production of alkaloids and related substances by fungi. I. Examination of filamentous fungi for their ability of producing ergot alkaloids, J. Agric. Chem. Soc. Jpn.
41:68–71.Abe, M., Ohmomo, S., Ohashi, T., and Tabuchi, T., 1969, Isolation of chanoclavine I and two new interconvertible alkaloids, rugulovasine A and B, from cultures of Penicillium concavo-rugulosum, Agric. Biol. Chem.
33:469–471.Abraham, E. P., and Florey, H. W., 1949, Substances produced by fungi imperfecti and ascomycetes, in: Antibiotics, Vol. I (H. W. Florey, E. Chain, N. G. Heatley, M. A. Jennings, A. G. Sanders, E. P. Abraham, and M. E. Florey, eds.), Oxford University Press, London, p. 274.Achenbach, H., Strittmatter, H., and Kohl, W., 1972, Die Strukturen der Xanthocilline Yl and Y2, Chem. Ber.
105:.Acker, T. E., Brenneisen, P. E., and Tanenbaum, S. W., 1966, Isolation, structure and radiochemical synthesis of 3,6-dimethyl-4-hydroxy-2-pyrone, J. Am. Chem. Soc.
88:834–837.Ackland, M. J., Hanson, J. R., Ratcliffe, A. H., and Sadler, I. H., 1982, A 2H NMR study of the rearrangement step in aphidicolin biosynthesis, J. Chem. Soc. Chem. Commun. 165-166.Actam, H. K., Campbell, I. M., and McCorkindale, N.J., 1967, Ergosterol peroxide: A fungal artefact, Nature (London)
216:397.Actams, M. R., and Bu’Lock, J. D., 1975, Biosynthesis of the diterpene antibiotic, aphidicolin, by radioisotope and 13C nuclear magnetic resonance methods, J. Chem. Soc. Chem. Commun. 389.Aldridge, D. C., and Turner, W. B., 1971, Two new mould metabolites related to avenaciolide, J. Chem. Soc. C .Aldridge, D. C., Giles, D., and Turner, W. B., 1971, Antibiotic 1233A: A fungal β-lactone, J. Chem. Soc. C .Ali, M. S., Shannon, J. S., and Taylor, A., 1968, Isolation and structures of 1,2,3,4-tetrahydro-1,4-dioxopyrazino [l,2-a]-indoles from cultures of Penicillium terlikowskii, J. Chem. Soc. C 2044.Ando, K., Kato, A., and Suzuki, S., 1970, Isolation of 2,4-dichlorophenol from a soil fungus and its biological significance, Biochem. Biophys. Res. Commun.
39:.Ando, K., Matsuura, I., Nawata, Y., Endo, H., Sasaki, H., Okytomi, T., Saeki, T., and Tamura, G., 1978, Funiculosin, a new antibiotic. II. Structure elucidation and antifungal activity, J. Antibiot. (Tokyo)
31:533–538.Angeletti, A., Tappi, G., and Biglino, G., 1952, Composition of the mycelium of Penicillium notatum, Ann. Chim. (Rome)
42:502–506.Anslow, W. K., Breen, J., and Raistrick, H., 1940, Studies in the biochemistry of microorganisms. 64. Emodic acid and hydroxyemodin, metabolic products of a strain of Penicillium cyclopium Westling, Biochem. J.
34:159–168.Arndt, R. R., Holzapfel, C. W., Ferriera, N. P., and Marsh, J. J., 1974, The structure and biogenesis of desoxyverrucarin E, a metabolite of Eupenicillium hirayamae, Phytochemistry
13:.Atherton, J., Bycroft, B. W., Roberts, J. C., Roffey, P., and Wilcox, M. E., 1968, Studies in mycological chemistry. 23. The structure of flavomannin, a metabolite of Penicillium wortmanni, J. Chem. Soc. C .Aulin-Erdtman, G., 1951, Studies in the tropolone series. IV. Stipitatic, puberulic and puberulonic acids, Acta Chem. Scand.
5:301–315.Austin, D. J., and Meyers, M. B., 1964, 3-O-methylviridicatin, a new metabolite from Penicillium puberulum, J. Chem. Soc. .Awaya, J., Kesado, T., Omura, S., and Lukacs, G., 1975, Preparation of 13C-and 3H-labeled cerulenin and biosynthesis with 13C-NMR, J. Antibiot. (Tokyo)
28:824–827.Bar, H., Zarnack, J., and Pfeifer, S., 1971a, Phenoxazinone in Kulturl?sungen von Penicillium notatum Westl., Pharmazie
26:314.Bar, H., Zarnack, J., and Pfeifer, S., 1971b, N-Formyl-2-aminophenol—ein neuer Naturstoff, Pharmazie
26:108.Barrow, K. D., Colley, P. W., and Tribe, D. E., 1979, Biosynthesis of the neurotoxin alkaloid roquefortine, J. Chem. Soc. Chem. Commun. 225-226.Barton, D. H. R., and Sutherland, J. K., 1965, The Nonadrides. I. Introduction and general survey, J. Chem. Soc. .Bassett, E. W., and Tanenbaum, S. W., 1958, The metabolic products of Penicillium patulum and their probable interrelation, Experientia
14:38–40.Bates, M. L., Reid, W. W., and White, J. D., 1976, Duality of pathways in the oxidation of ergosterol to its peroxide in vivo, J. Chem. Soc. Chem. Commun. 44-45.Belgian patent, 1962, Fusidic acid, Chem. Abstr. 59:2133.Bentley, R., and Keil, J. G., 1962, Tetronic acid biosynthesis in moulds. II. Formation of penicillic acid in Penicillium cyclopium, J. Biol. Chem.
237:867–873.Bentley, R., and Thiessen, C. P., 1957, Biosynthesis of itaconic acid in Aspergillus terreus, J. Biol. Chem.
226:673–720.Bentley, R., and Zwitkowits, P. M., 1967, Biosynthesis of tropolones in Penicillium stipitatum. VII. The formation of polyketide lactones and other nontropolone compounds as a result of ethionine inhibition, J. Am. Chem. Soc.
89:676–685.Bentley, R., Bhate, D. S., and Keil, J. G., 1962, Tetronic acid biosynthesis in moulds. I. Formation of carlosic and carolic acids in Penicillium charlesii, J. Biol. Chem.
237:859–866.Betina, V., Nemec, P., Dobias, J., and Barath, Z., 1962, Cyanein, a new antibiotic from Penicillium cyaneum, Folia Microbiol.
7:353–357.Betina, V., Fuska, J., Kjaer, A., Kutkova, M., Nemec, P., and Shapiro, R. H., 1966, Production of cyanein by Penicillium simplicissimum, J. Antibiot. (Tokyo)
19:115–117.Better, J., and Gatenbeck, S., 1976, l,4-Dihydroxy-2-methoxy-6-methyl-benzene, a metabolite of Penicillium baarnense, Acta Chem. Scand. 30B:368.Biollaz, M., Buchi, G., and Milne, G., 1968, The biosynthesis of the aflatoxins, J. Am. Chem. Soc.
92:.Birch, A. J., and Kocor, M., 1960, Studies in relation to biosynthesis. XXII. Palitantin and cyclopaldic acid, J. Chem. Soc. 866-871.Birch, A. J., and Pride, E., 1962, Studies in relation to biosynthesis. XXVI. 7-Hydroxy-4,6-dimethylphthalide, J. Chem. Soc. 370-371.Birch, A. J., and Russell, R. A., 1972, Studies in relation to biosynthesis. 44. Structural elucidations of brevianamides-B,-C.,-D, Tetrahedron
28:.Birch, A. J., and Stapleford, K. S. J., 1967, The structure of nalgiolaxin, J. Chem. Soc. C .Birch, A. J., and Wright, J. J., 1969, Brevianamides: A new class of fungal alkaloid, Chem. Commun. 644-645.Birch, A. J., Kocor, M., Sheppard, N., and Winter, J., 1962, Studies in relation to biosynthesis. 29. The terpenoid chain of mycelianamide, J. Chem. Soc. .Birch, A. J., Qureshi, A. A., and Rickards, R. W., 1968, Metabolites of Aspergillus indicus: The structure and some aspects of the biosynthesis of dihydrocanadensolide, Aust. J. Chem.
21:.Birch, A. J., Gager, F., Mo, L., Pelter, A., and Wright, J. J., 1969, Studies in relation to biosynthesis. XLI. Canescin, Aust. J. Chem.
22:.Bird, B. A., and Campbell, I. M., 1982a, Occurrence and biosynthesis of asperphenamate in solid cultures of Penicillium brevicompactum, Phytochemistry
21:.Bird, B. A., and Campbell, I. M., 1982b, Disposition of mycophenolic acid, brevianamide A, asperphenamate and ergosterol in solid cultures of Penicillium brevicompactum, Appl. Environ. Microbiol.
43:345–348.Birkinshaw, J. H., and Gowlland, A., 1962, Studies in the biochemistry of microorganisms. 110.c Production and biosynthesis of orsellinic acid by Penicillium madriti G. Smith, Biochem. J.
84:342–347.Birkinshaw, J. H., and Mohammed, Y. S., 1962, Studies in the biochemistry of micro-organisms. 111. The production of 1-phenylalanine anhydride (cis-l-3,6-dibenzyl-2,5-dioxopiperazine) by Penicillium nigricans (Bainer) Thorn, Biochem. J.
85:523–527.Birkinshaw, J. H., and Raistrick, H., 1934, The metabolic products of Penicillium minio-luteum Dierckx, minioluteic acid, Biochem. J. 28:828–836.Birkinshaw, J. H., and Raistrick, H., 1936, Isolation, properties and constitution of terrestric acid (ethyl carolic acid), a metabolic product of Penicillium terrestre Jensen, Biochem. J.
30:.Birkinshaw, J. H., and Samant, M. S., 1960, Metabolites of Penicillium viridicatum Westling: Viridicatic acid (ethylcarlosic acid), Biochem. J.
74:369–373.Birkinshaw, J. H., Luckner, M., Mohammed, Y. S., and Stickings, C. E., 1963a, Studies in the biochemistry of micro-organisms. 114. Viridicatol and cyclopenol, metabolites of Penicillium viridicatum Westling and Penicillium cyclopium Westling, Biochem. J.
89:196–202.Birkinshaw, J. H., Kalyanpur, M. G., and Stickings, C. E., 1963b, Studies in the biochemistry of micro-organisms. 113. Pencolide, a nitrogen-containing metabolite of Penicillium multicolor, Biochem. J.
86:237–243.Bloomer, J. L., Moppett, C. E., and Sutherland, J. K., 1968, The Nonadrides. V. Biosynthesis of glauconic acid, J. Chem. Soc. C
588-591.Bodo, M., Massias, M., Molho, L., Molho, D., and Gombrisson, S., 1976, Application of carbon-13 NMR to the determination of biosynthesis of a fungal metabolite, spiculisporic acid, by Penicillium spiculisporum in shake culture, Bull. Mus. Natl. Hist. Nat. Sci. Phys.-Chim.
11:53–62.Boeckman, R. K., Fayos, J., and Clardy, J., 1974, A revised structure of vermiculine: A novel macrolide dilactone antibiotic from Penicillium vermiculatum, J. Am. Chem. Soc.
96:.Bond, R. F., Boeyens, J. C. A., Holzapfel, C. W., and Steyn, P. S., 1979, Cyclopiamines A and B, novel oxindole metabolites of Penicillium cyclopium Westling, J. Chem. Soc. Perkin Trans. 1 .Bose, A. K., Das, K. G., Funke, P. T., Kugajevsky, I., Shukla, O. P., Khanchandani, K. S., and Suhadolnik, R. J., 1968, Biosynthetic studies on gliotoxin using stable isotopes and mass spectral methods, J. Am. Chem. Soc.
90:.Bracken, A., and Raistrick, H., 1947, Dehydrocarolic acid, a metabolic product of Penicillium cinerascens Biourge, Biochem. J.
41:569–575.Bracken, A., Pocker, A., and Raistrick, H., 1954, Studies in the biochemistry of microorganisms. 93. Cyclopenin, a nitrogen-containing metabolic product of Penicillium cyclopium Westling, Biochem. J.
57:587–595.Breen, J., Dacre, J. C., Raistrick, H., and Smith, G., 1955, Studies in the biochemistry of microorganisms. 95. Rugulosin, a crystalline colouring matter of Penicillium rugulosum Thorn, Biochem. J.
60:618–626.Broadbent, D., Mabelis, R. P., and Spencer, H., ,8-Trihydroxy-l-methylxanthone—an antibacterial metabolite from Penicillium patulum, Phytochemistry
14:.Brown, A. G., Smale, T. C., King, T. J., Hasenkamp, R., and Thompson, R. H., 1976, Crystal and molecular structure of compactin, a new antifungal metabolite from Penicillium brevicompactum, J. Chem. Soc. Perkin Trans. 1
1165-1170.Brundidge, S. P., Gaeta, F. C. A., Hook, D. J., Sapino, C., Elander, R. P., and Morin, R. B., 1980, Association of 6-oxopiperidine-2-carboxylic acid with penicillin V production in Penicillium chrysogenum fermentations, J. Antibiot.
33:.Bryant, R. W., and Light, R. J., 1974, Stipitatonic acid biosynthesis: Incorporation of [formyl-14C]-3-methylorcylaldehyde and [14C]stipitaldehydic acid, a new tropolone metabolite, Biochemistry
13:.Buchi, G., White, J. D., and Wogan, G. N., 1965, The structures of mitorubrin and mitorubrinol, J. Am. Chem. Soc.
87:.Bu’Lock, J. D., 1980, Mycotoxins as secondary metabolites, in: The Biosynthesis of Mycotoxins (P. S. Steyn, ed.), Academic Press, New York, pp. 1–16.Bu’Lock, J. D., and Clay, P. T., 1969, Fatty acid cyclisation in the biosynthesis of brefeldin A: A new route to some fungal metabolites, Chem. Commun. 237-238.Bu’Lock, J. D., and Ryan, A. J., 1958, The biogenesis of patulin, Proc. Chem. Soc. (London) 222-223.Bu’Lock, J. D., and Smith, J. R., 1968, Modified anthraquinones from Penicillium islandicum, J. Chem. Soc. C .Burton, H. S., and Abraham, E. P., 1951, Isolation of antibiotics from a species of Cephalosporium: Cephalosporins Pl P2, P3, P4 and P5, Biochem. J.
50:168–174.Cagnoli, N., Ceccherelli, P., Curini, M., Spagnoli, N., and Ribaldi, M, 1980, 19-Norisopimara-7,15-dien-3-one: A new norditerpenoid from Acremonium luzulae (Fuckel) Gams, J. Chem. Res. Synop.
8:276.Cagnoli, N., Ceccherelli, P., Curini, M., Madruzza, G. F., and Ribaldi, ML, 1982, Isopimara-7,15-dien-19-ol: A new diterpenoid from Acremonium luzulae (Fuckel) Gams, J. Chem. Res. Synop.
9:254.Cagnoli-Bellavita, N., Ceccherelli, P., Fringuelli, R., and Ribaldi, M., 1975, Ascochlorin: A ter-penoid metabolite from Acremonium luzulae, Phytochemistry
14:807.Cagnoli-Bellavita, N., Ceccherelli, P., Ribaldi, M., Polonsky, J., Baskevitch-Varon, Z., and Varenne, J., 1977, Structures of virescenosides D and H, new metabolites of Acremonium luzulae (Fuckel) Gams, J. Chem. Soc. Perkin Trans. 1 351-354.Campbell, I. M., Calzadilla, C. H., and McCorkindale, N. J., 1966, Some new metabolites related to mycophenolic acid, Tetrahedron Lett.
42:.Canonica, L., Kroszczynski, W., Ranzi, B. M., Rindone, B., and Scolastico, C., 1971, The biosynthesis of mycophenolic acid, J. Chem. Soc. Chem. Commun. 257.Casey, M. L., Paulick, R. C., and Whitlock, H. W., 1978, Carbon-13 nuclear magnetic resonance study of the biosynthesis of daunomycin and islandicin, J. Org. Chem.
43:.Ceccherelli, P., Fringuelli, R., Madruzza, G. F., and Ribaldi, M., 1975, Cerevisterol and ergosterol peroxide from Acremonium luzulae, Phytochemistry
14:1434.Chalmers, A. A., De Jesus, A. E., Gorst-Allman, C. P., and Steyn, P. S., 1981, Biosynthesis of PR toxin by Penicillium roqueforti, J. Chem. Soc. Perkin Trans. 1 .Chaplen, P., and Thomas, R., 1960, Studies in the biosynthesis of fungal metabolites: The biosynthesis of palitantin, Biochem. J.
77:91–96.Chen, Y. S., and Haskins, R. H., 1963, Studies on pigments of Penicillium funiculosum. I. Production of cholesterol, Can. J. Chem.
41:.Chexal, K. K., Snipes, C., and Tamm, C., 1980, Biosynthesis of the antibiotic verrucarin E: Use of [1-13C]-, [2-13C]-, [1,2-13C]-and [2-13C., 22H3]-acetates, Helv. Chim. Acta
63:761–768.Chou, T. S., Eisenbraun, E. J., and Rapala, R. T., 1969, The chemistry of steroid acids from Cephalosporium acremonium, Tetrahedron
25:.Ciegler, A., and Pitt, J. I., 1970, A survey of the genus Penicillium for tremorgenic toxin production, Mycopathol. Mycol. Appl.
42:119–124.Ciegler, A., Fennell, D. I., MintzlafF, H.-J., and Leistner, L., 1972, Ochratoxin synthesis by Penicillium species, Naturwissenschaften
59:365–366.Cockrum, P. A., Culvenor, C. C. J., Edgar, J. A., and Payne, A. L., 1979, Chemically different tremorgenic mycotoxins in isolates of Penicillium paxilli from Australia and North America, J. Nat. Prod.
42:534–536.Cole, R. J., Kirksey, J. W., Moore, J. H., Blankenship, B. R., Diener, U. L., and Davis, N. D., 1972, Tremorgenic toxin from Penicillium verruculosum, Appl. Microbiol.
24:248–256.Cole, R. J., Kirksey, J. W., and Wells, J. M., 1974, A new tremorgenic metabolite from Penicillium paxilli, Can. J. Microbiol.
20:.Cole, R. J., Kirksey, J. W., Cutler, H. G., Wilson, D. M., and Morgan-Jones, G., 1976a, Two toxic indole alkaloids from Penicillium islandicum, Can. J. Microbiol.
22:741–744.Cole, R. J., Kirksey, J. W., Clardy, J., Eickman, M., Weinreb, S. M., Singh, P., and Kim, D., 1976b, Structure of rugulovasine-A and-B and 8-chlororugulovasine-A and-B, Tetrahedron Lett.
43:.Cole, R. J., Dorner, J. W., Lansden, J. A., Cox, R. H., Pape, G, Cunfer, B., Nicholson, S. S., and Bedell, D. M., 1977, Paspalum staggers: Isolation and identification of tremorgenic metabolites from sclerotia of C. paspali, J. Agric. Food Chem.
25:.Cole, R. J., Dorner, J. W., Cox, R. H., Hill, R. A., Cluter, H. G., and Wells, J. M., 1981, Isolation of citreoviridin from Penicillium charlesii cultures and molded pecan fragments, Appl. Environ. Microbiol.
42:677–681.Cole, R. J., Dorner, J. W., Cox, R. H., and Raymond, L. W., 1983, Two classes of alkaloid mycotoxins produced by Penicillium crustosum Thorn isolated from contaminated beer, J. Agric. Food Chem.
31:655–657.Collins, R. P., 1976, Terpenes and odoriferous materials from microorganisms, Lloydia
39:20–24.Colombo, L., Gennari, C., Potenza, D., Scolastico, G, Aragozzini, F., and Gualandris, R., 1982, 6-Farnesyl-5,7-dihydroxy-4-methylphthalide oxidation mechanism in mycophenolic acid biosynthesis, J. Chem. Soc. Perkin Trans. 1 365-373.Corbett, R. E., Johnson, A. W., and Todd, A. R., 1950, Puberulic and puberulonic acids. II. Structure, J. Chem. Soc. 6-9.Cox, R. H., Hernandez, O., Dorner, J. W., Cole, R. J., and Fennell, D. I., 1979, A new isochroman mycotoxin isolated from Penicillium steckii, J. Agric. Food Chem.
27:999–1001.Cram, D. J., 1948, Mold metabolites. II. The structure of sorbicillin, a pigment produced by the mold Penicillium notatum, J. Am. Chem. Soc.
70:.Cram, D. J., and Tishler, M., 1948, Mold metabolites. I. Isolation of several compounds from clinical penicillin, J. Am. Chem. Soc.
70:.Cunningham, K. G., and Freeman, G. G., 1953, The isolation and some chemical properties of viridicatin, a metabolic product of Penicillium viridicatum Westling, Biochem. J.
53:328–332.Curtis, R. F., Hassall, C. H., and Nazar, M., 1968, The biosynthesis of phenols. XV. Some metabolites of Penicillium citrinum related to citrinin, J. Chem. Soc. C 85-93.Czech patent, 1982, Antibiotic citrinin by fermentation with Penicillium janthinellum, Chem. Abstr. 97:22,078.Dalziel, W., Hesp, B., Stevenson, K. M., and Jarvis, J. A. J., 1973, The structure and absolute configuration of the antibiotic aphidicolin: A tetracyclic diterpenoid containing a new ring system, J. Chem. Soc. Perkin Trans. 1
2841-2851.Damoglou, A. P., Downey, G. A., and Shannon, W., 1984, The production of ochratoxin A and citrinin in barley, J. Sci. Food Agric.
35:395–400.Day, J. B., and Mantle, P. G., 1982, Biosynthesis of radiolabeled verruculogen by Penicillium sim-plicissimum, Appl. Environ. Microbiol.
43:514–516.Dean, F. M., Eade, R. A., Moubasher, R., and Robertson, A., 1957, The chemistry of fungi. 27. The structure of fulvic acid from Carpenteles brefeldianum, J. Chem. Soc. .De Jesus, A. E., Steyn, P. S., Vleggaar, R., Kirby, G. W., Varley, M. J., and Ferreira, N. P., 1981, Biosynthesis of α-cyclopiazonic acid: Steric course of proton removal during the cyclisation of β-cyclopiazonic acid in Penicillium griseofulvum, J. Chem. Soc. Perkin Trans. 1 .De Jesus, A. E., Hull, W. E., Steyn, P. S., Van Heerden, F. R., and Vleggaar, R., 1982, Biosynthesis of viridicatumtoxin, a mycotoxin from Penicillium expansum, J. Chem. Soc. Chem. Commun. 902-904.De Jesus, A. E., Steyn, P. S., Van Heerden, F. R., Vleggaar, R., Wessels, P. L., and Hull, W. E., 1983a, Tremorgenic mycotoxins from Penicillium crustosum: Isolation of penitrems A-F and the structure elucidation and absolute configuration of penitrem A, J. Chem. Soc. Perkin Trans. 1 .De Jesus, A. E., Steyn, P. S., Van Heerden, F. R., Vleggaar, R., Wessels, P. L., and Hull, W. E., 1983b, Tremorgenic mycotoxins from Penicillium crustosum: Structure elucidation and absolute configuration of penitrems B-F, J. Chem. Soc. Perkin Trans. 1 .De Jesus, A. E., Gorst-Allman, C. P., Steyn, P. S., Van Heerden, F. R., Vleggaar, R., Wessels, P. L., and Hull, W. E., 1983c, Tremorgenic mycotoxins from Penicillium crustosum: Biosynthesis of penitrem A, J. Chem. Soc. Perkin Trans. 1 .De Jesus, A. E., Steyn, P. S., and Van Heerden, F. R., 1983d, Structure of 7-de-O-methylsemivioxanthin, a metabolite of Penicillium janthinellum, S. Afr. J. Chem.
36:82–83.De Jesus, A. E., Steyn, P. S., Van Heerden, F. R., and Vleggaar, R., 1984, Structure elucidation of the janthitrems, novel tremorgenic mycotoxins from Penicillium janthinellum, J. Chem. Soc. Perkin Trans. 1 697-701.Dewar, M. J. S., 1945, Structure of stipitatic acid, Nature (London)
155:50–51.Di Menna, M. E., Mantle, P. G., and Mortimer, P. H., 1976, Experimental production of a staggers syndrome in ruminants by a tremorgenic Penicillium from soil, N. Z. Vet. J.
24:45–46.Dimroth, P., Walter, H., and Lynen, F., 1970, Biosynthese von 6-Methylsalicyls?ure, Eur. J. Biochem.
13:98–110.Divekar, P. V., Brenneisen, P. E., and Tanenbaum, S. W., 1961, Stipitatic acid ethyl ester: A naturally occurring tropolone derivative, Biochim. Biophys. Acta
50:588–589.Dix, D. T., Martin, J., and Moppett, C. E., 1972, Molecular structure of the metabolite lanosulin, J. Chem. Soc. Chem. Commun. 1168.Doerfler, D. L., Bird, B. A., and Campbell, I. M., 1981, N-Benzoylphenylalanine and N-ben-zoylphenylalaninol, and their biosynthesis in Penicillium brevicompactum, Phytochemistry
20:.Dorner, J. W., Cole, R. J., Hill, R., Wicklow, D., and Cox, R. H., 1980, Penicillium rubrum and Penicillium biforme, new sources of rugulovasins A and B, Appl. Environ. Microbiol.
40:685–687.Endo, A., Kuroda, M., and Tsujita, Y., 1976, ML-236 A, B, C., new inhibitors of cholesterogenesis produced by Penicillium citrinum, J. Antibiot.
29:.Fayos, J., Lokensgard, D., Clardy, J., Cole, R. J., and Kirksey, J. W., 1974, Structure of verruculogen, a tremor producing peroxide from Penicillium verruculosum, J. Am. Chem. Soc.
96:.Fletcher, L. R., and Harvey, I. C., 1981, An association of a Lolium endophyte with ryegrass staggers, N. Z. Vet. J.
29:185–186.Forrester, P. I., and Gaucher, G. M., 1972a, Conversion of 6-methylsalicylic acid into patulin by Penicillium urticae, Biochemistry
11:.Forrester, P. I., and Gaucher, G. M., 1972b, m-Hydroxy benzyl alcohol dehydrogenase from Penicillium urticae, Biochemistry
11:.Framm, J., Nover, L., El Azzouny, A., Richter, H., Winter, K., Werner, S., and Luckner, M., 1973, Cyclopeptin und Dehydrocyclopeptin: Zwischenprodukte der Biosynthese von Alkaloiden der Cyclopenin-Viridicatin-Gruppe bei Penicillium cyclopium Westling, Eur. J. Biochem.
37:78–85.Franck, B., 1980, The biosynthesis of the ergochromes, in: The Biosynthesis of Mycotoxins: A Study in Secondary Metabolism (P. S. Steyn, ed.), Academic Press, New York, pp. 157–191.Fujimoto, Y., Kamiya, M., Tsunoda, H., Ohtsubo, K., and Tatsuno, T., 1980, Recherche toxicologique des substances métaboliques de Penicillium carneo-lutescens, Chem. Pharm. Bull.
28:.Fujimoto, Y., Tsunoda, H., Uzawa, J., and Tatsuno, T., 1982, The structure of islandic acid, a new metabolite from Penicillium islandicum Sopp., J. Chem. Soc. Chem. Commun. 83-84.Fujimoto, Y., Takahashi, T., Yokoyama, E., Uzawa, J., Tsunoda, H., and Tatsuno, T., 1983, The isolation and structural elucidation of the antitumor metabolites produced by Penicillium diver sum var. aureum, Tennen Tuki Kagobutsu Toronkai Koen Toshishu
26:166–172.Furusaki, A., Matsumoto, T., Ogura, H., Takayanagi, H., Hirano, A., and Omura, S., 1980, X-ray crystal structure of herquline, a new biologically active piperazine from Penicillium herquei Fg-372, J. Chem. Soc. Chem. Commun. 698.Fuska, J., and Proksa, B., 1983, Chromatographie determination of vermiculine, Pharmazie
38:634–635.Fuska, J., Nemec, P., and Fuskova, A., 1979, Vermicillin, a new metabolite from Penicillium ver-miculatum inhibiting tumor cells in vitro, J. Antibiot.
32:667–669.Gallagher, R. T., and Latch, G. C. M., 1977, Production of the tremorgenic mycotoxins verruculogen and fumitremorgin B by Penicillium piscarium Westling, Appl. Environ. Microbiol.
33:730–731.Gallagher, R. T., White, E. P., and Mortimer, P. H., 1981, Ryegrass staggers: Isolation of potent neurotoxins lolitrem A and lolitrem B from staggers-producing pastures, N. Z. Vet. J.
29:189–190.Gallagher, R. T., Hawkes, A. D., Steyn, P. S., and Vleggaar, R., 1984, Tremorgenic neurotoxins from perennial ryegrass causing ryegrass staggers disorder of livestock: Structure elucidation of lolitrem B, J. Chem. Soc. Chem. Commun. 614-616.Ganguli, M., Burka, L. T., and Harris, T. M., 1984, Structural studies of the mycotoxin verrucosidin, J. Org. Chem.
49:.Gatenbeck, S., 1957, 3-Hydroxyphthalic acid, a metabolite in Penicillium islandicum Sopp, Acta Chem. Scand.
11:555–557.Gatenbeck, S., 1959a, The occurrence of endocrocin in Penicillium islandicum, Acta Chem. Scand.
13:386–387.Gatenbeck, S., 1959b, Studies of mono-C-methylquinalizarins in relation to a phenolic metabolite of Penicillium islandicum, Acta Chem. Scand.
13:705–710.Gatenbeck, S., 1962, The mechanism of the biological formation of anthraquinones, Acta Chem. Scand.
16:.Gatenbeck, S., and Lonnroth, I., 1962, The biosynthesis of gentisic acid, Acta Chem. Scand.
16:.Gatenbeck, S., and Mahlen, A., 1964, The enzymic synthesis of spiculisporic acid, in: Proc. Congress Antibiotics, Prague, Butterworth, London, p. 540.Gatenbeck, S., and Mahlen, A., 1968, A metabolic variation in Penicillium spiculisporum Lehman. I. Production of (+) and (-)-decylcitric acids, Acta Chem. Scand.
22:.Gatenbeck, S., and Mosbach, K., 1963, The mechanism of biosynthesis of citromycetin, Biochem. Biophys. Res. Commun.
11:166–169.German patent, 1984, Antibiotic compound, Chem. Abstr. 100:137, 374.Ghosh, A. C., and Ramgopal, M., 1980, Cyclic peptides from Penicillium islandicum: A review and a reevaluation of the structure of islanditoxin, J. Heterocycl. Chem.
18:.Ghosh, A. C., Manmade, A., Kobbe, B., Townsend, J. M., and Demain, A. L., 1978, Production of luteoskyrin and isolation of a new metabolite, pibasterol, from Penicillium islandicum Sopp., Appl. Environ. Microbiol.
35:563–566.Godin, P., 1955, Separation of chromatography on column of cellulose of phenolic substances produced by Penicillium brevi-compadum and the perfunctory chemical analysis of one of them, Antonie van Leeuwenhoek J. Microbiol. Serol.
21:362–366.Gorst-Allman, C. P., and Steyn, P. S., 1983, Biosynthesis of 5,6-dihydro-4-methoxy-2H-pyran-2-one in Penicillium italicum, S. Afr. J. Chem.
36:83–84.Gorst-Allman, C. P., Steyn, P. S., and Vleggaar, R., 1982, The biosynthesis of roquefortine: An investigation of acetate and mevalonate incorporation using high field NMR spectroscopy, J. Chem. Soc. Chem. Commun. 652-653.Gray, R. W., and Whalley, W. B., 1971, The chemistry of fungi. 63. Rubrorotiorin, a metabolite of Penicillium hirayamae, J. Chem. Soc. C .Gray, R. A., Gauger, G. W., Dulaney, E. L., Kaczka, E. A., and Woodruff, H. B., 1964, Hadacidin, a new plant-growth inhibitor produced by fermentation, Plant Physiol.
39:204–207.Gudgeon, J. A., Holker, J. S. E., Simpson, T. J., and Young, K., 1979, The structures and biosynthesis of multicolanic, multicolic and multicolosic acids, novel tetronic acid metabolites of Penicillium multicolor, Bioorg. Chem.
8:311–322.Gyimesi, J., and Melera, A., 1967, On the structure of crotocin, an antifungal antibiotic, Tetrahedron Lett.
17:.Haefliger, W., and H?user, D., 1973, Isolierung und Strukturaufkl?rung von 11-Desacetoxy-wortmannin, Helv. Chim. Acta
56:.Hagedorn, I., Eholzer, U., and Luttringhaus, A., 1960, Beitr?ge zur Konstitutionsermittlung des Antibiotikums Xanthocillin, Chem. Ber.
93:.Halsall, T. G., and Sayer, G. C., 1959, The chemistry of the triterpenes and related compounds. 35. Some non-acidic constituents, J. Chem. Soc. .Harris, C. M., Robertson, J. S., and Harris, T. M., 1976, Biosynthesis of griseofulvin, J. Am. Chem. Soc.
98:.Hattori, T., Igarashi, H., Iwasaki, S., and Okuda, S., 1969, Isolation of 3β-hydroxy-4β-methylfusida-17(20)[16,21-cis],24-diene(3β-hydroxy-protosta-17(20)[16,21-cis],24 diene) and a related triterpene alcohol, Tetrahedron Lett.
13:.Hermansen, K., Frisvad, J. C., Emborg, C., and Hansen, J., 1984, Cyclopiazonic acid production by submerged cultures of Penicillium and Aspergillus strains, FEMS Microbiol. Lett.
21:253–261.Hikino, H., Nabetani, S., and Takemoto, T., 1973, Structure and biosynthesis of chrysogine, a metabolite of Penicillium chrysogenum, Yakugaku Zasshi
93:619–623.Hind, H. G., 1940a, The colouring matters of Penicillium carminoviolaceum Biourge, with a note on the production of ergosterol by this mould, Biochem. J.
34:67–72.Hind, H. G., 1940b, The constitution of carviolin: A colouring matter of Penicillium carmino-violaceum Biourge, Biochem. J.
34:577–579.Hodges, F. A., Zust, J. R., Smith, H. R., Nelson, A. A., Armbrecht, B. H., and Campbell, A. D., 1964, Mycotoxins: Aflatoxin isolated from Penicillium puberulum, Science
145:1439.Hofle, G., and Roser, K., 1978, Structure of xanthomegnin and related pigments: Rein-vestigation by 13C nuclear magnetic resonance spectroscopy, J. Chem. Soc. Chem. Commun. 611-612.Holker, J. S. E., Ross, W. J., Staunton, J., and Whalley, W. B., 1962, The chemistry of fungi. 40. Further evidence for the structure of sclerotiorin, J. Chem. Soc. .Holker, J. S. E., Staunton, J., and Whalley, W. B., 1964, The biosynthesis of fungal metabolites. 1. Two different pathways to β-ketide chains in rotiorin, J. Chem. Soc. 16-22.Holzapfel, C. W., 1968, The isolation and structure of cyclopiazonic acid, a toxic metabolite of Penicillium cyclopium Westling, Tetrahedron
24:.Holzapfel, C. W., and Marsh, J. J., 1977, Isolation and structure of viridamine, a new nitrogenous metabolite of Penicillium viridicatum Westling, S. Afr. J. Chem.
30:197–204.Holzapfel, C. W., Hutchison, R. D., and Wilkins, D. C., 1970, The isolation and structure of two new indole derivatives from Penicillium cyclopium Westling, Tetrahedron
26:.Hossain, M. B., Eng-Wilmot, D. L., Loghry, R. A., and Van der Helm, D., 1980, Circular dichroism, crystal structure and absolute configuration of the siderophore ferric N,N,N-triacetylfusarinine, FeC39H57N6O15, J. Am. Chem. Soc.
102:5766.Howard, B. H., and Raistrick, H., 1950, Studies in the biochemistry of microorganisms. 81. The colouring matters of Penicillium islandicum Sopp. 2. Chrysophanic acid, 4,5-dihydroxy-2-methylanthraquinone, Biochem. J.
46:49–53.Howard, C. C., Johnstone, R. A. W., King, T. J., and Lessinger, L., 1976, Fungal metabolites. VI. Crystal and molecular structure of secalonic acid A, J. Chem. Soc. Perkin Trans 1 .Hutchison, R. D., Steyn, P. S., and Thompson, D. L., 1971, The isolation and structure of 4-hydroxyochratoxin A and 7-carboxy-3,4-dihydro-8-hydroxy-3-methylisocoumarin from Penicillium viridicatum, Tetrahedron Lett. .Isogai, A., Washizu, M., Murakoshi, S., and Suzuki, A., 1985, A new shikimate derivative, methyl 5-lactyl shikimate lactone, rom Penicillium sp., Agric. Biol. Chem.
49:167–169.Japanese patent, 1984, Oxathinecarboxylic acid and its derivatives, Chem. Abstr. 100:4785.Japanese patent, 1985, Production of the anti-cholesteremic agent ML-236b, Chem. Abstr. 102:77,263.Johnson, J. R., Kidwai, A. R., and Warner, J. S., 1953, Gliotoxin. XI. A related antibiotic from Penicillium terlikowski: Gliotoxin monoacetate, J. Am. Chem. Soc.
75:.Kaczka, E. A., Gitterman, C. O., Dulaney, E. L., and Folkers, K., 1962, Hadacidin, a new growth-inhibitory substance in human tumor systems, Biochemistry
1:340–343.Kalle, G. P., and Deo, Y. M., 1983, Effect of calcium on synthesis of dipicolinic acid in Penicillium citreoviride and its feedback resistant mutant, J. Biosci.
5:321–330.Kamal, A., Husain, S. A., Murtaza, N., Noorani, R., Qureshi, I. H., and Qureshi, A. A., 1970a, Studies in the biochemistry of microorganisms. 9. Structure of amudane, amudene and amujane, metabolic products of Penicillium martensii, Pak. J. Sci. Ind. Res.
13:240–243.Kamal, A., Jarboe, C. H., Qureshi, I. H., Husain, S. A., Murtaza, N., Noorani, R., and Qureshi, A. A., 1970b, Studies in the biochemistry of microorganisms. VIII. Isolation and characterisation of Penicillium martensii Biourge metabolic products: The structure of amudol, Pak. J. Sci. Ind. Res.
13:236–239.Kimura, Y., Suzuki, A., and Tamura, S., 1980, 13C-NMR spectra of pestalotin and its analogues, Agric. Biol. Chem.
44:451–452.King, G. S., Waight, E. S., Mantle, P. G., and Szczyrbak, C. A., 1977, The structure of clavicipitic acid, an azepinoindole derivative from Claviceps fusiformis, J. Chem. Soc. Perkin Trans. 1 .King, T. J., Roberts, J. C., and Thompson, D. J., 1973, Studies in mycological chemistry. XXX. Isolation and structure of purpuride, a metabolite of Penicillium purpurogenum Stoll, J. Chem. Soc. Perkin Trans. 1 78-80.Kobayashi, K., and Ui, T., 1975, Isolation of phytotoxic substances produced by Cephalosporium gregatum Allington and Chamberlain, Tetrahedron Lett.
47:.Kobayashi, K., and Ui, T., 1977, Graminin A, a new toxic metabolite from Cephalosporium gramineum Nisikado and Ikata, J. Chem. Soc. Chem. Commun. 774.Kobayashi, N., Iitaka, Y., Sankawa, U., Ogihara, Y., and Shibata, S., 1968, The crystal and molecular structure of a bromination product of tetrahydrorugulosin, Tetrahedron Lett.
58:.Kozlovskii, A. G., and Reshetilova, T. A., 1984, Roquefortine biosynthesis in Penicillium culture, Mikrobiologiya
53:81–84.Kozlovskii, A. G., Soloveva, T. F., Reshetilova, T. A., and Skryabin, G. K., 1981a, Biosynthesis of roquefortine and 3,12-dihydroroquefortine by the culture of Penicillium farinosum, Experientia
37:472–473.Kozlovskii, A. G., Soloveva, T. F., Sakharovskii, V. G., and Actanin, V. M., 1981b, Biosynthesis of unusual ergot alkaloids by the mold Penicillium aurantiovirens, Dokl. Akad. Nauk SSSR
260:230–233.Kozlovskii, A. G., Stefanova-Avramova, L., Reshetilova, T. A., Sakharovskii, V. G., and Actanin, V. M., 1981c, Clavine ergoalkaloids—metabolites of Penicillium gorlenkoanum, Prikl. Biokhim. Mikrobiol.
17:806–812.Kozlovskii, A. G., Soloveva, T. F., Sakharovskii, V. G., and Actanin, V. M., 1982, Ergoalkaloids of agroclavine and epoxyagroclavine, metabolites of Penicillium corylophilum, Prikl. Biokhim. Mikrobiol.
18:535–541.Kriegler, A. B., and Thomas, R., 1971, The biosynthetic interrelationships of fungal phenalenones, Chem. Commun. 738-739.Kuhr, I., Fuska, J., Sedmera, P., Podojil, M., Vokoun, J., and Vanek, Z., 1973, Antitumor antibiotic produced by Penicillium stipitatum: Its identity with duclauxin, J. Antibiot.
26:535–536.Kurobane, I., Hutchinson, C. R., and Vining, L. C., 1981, The biosynthesis of fulvic acid, a fungal metabolite of heptaketide origin, Tetrahedron Lett.
22:493–496.Lafont, P., Debeaupuis, J.-P., Gaillardin, M., and Payen, J., 1979, Production of mycophenolic acid by Penicillium roqueforti strains, Appl. Environ. Microbiol.
37:365–368.Lanigan, G. W., Payne, A. L., and Cockrum, P. A., 1979, Production of tremorgenic toxins by Penicillium janthinellum Biourge: A possible aetiological factor in ryegrass staggers, Aust. J. Exp. Biol. Med. Sci.
57:31–37.Latch, G. C. M., Christensen, M. J., and Samuels, G. J., 1984, Five endophytes of Lolium and Festuca in New Zealand, Mycotaxon
20:535–550.Laws, I., 1985, Biosynthesis and metabolism of indolic fungal metabolites, Ph.D. thesis, University of London.Laws, I., and Mantle, P. G., 1985, Nigrifortine, a diketopiperazine metabolite of Penicillium nigricans, Phytochemistry
24:.Leistner, L., and Pitt, J. I., 1977, Miscellaneous Penicillium toxins in: Mycotoxins in Human and Animal Health (J. V. Rodricks, C. W. Hesseltine, and M. A. Mehlman, eds.), Pathotox, Illinois, pp. 645–649.Ljungcrantz, I., and Mosbach, K., 1964, Synthesis of four ethyl-dimethyl-benzenetriols in relation to a new phenolic metabolite of Penicillium baarnense, Acta Chem. Scand.
18:638–642.Locci, R., Merlini, L., Hasini, G., and Locci, J. R., 1967, Mitorubrinic acid and related compounds from a strain of Penicillium funiculosum Thorn, G. Microbiol.
15:93–102.Lowe, G., Taylor, A., and Vining, L. C., 1966, Sporidesmins. IV. Isolation and structure of dehydrogliotoxin, a metabolite of Penicillium terlikowskii, J. Chem. Soc. C
1799-1803.Luckner, M., 1967, Zur Bildung von Chinolinalkaloiden in Pflanzen. 2. Die fermentative Umwandlung der Penicillium-Alkaloide Cyclopenin und Cyclopenol in Viridicatin und Viridicatol, Eur. J. Biochem.
2:74–78.Lybing, S., and Reio, L., 1958, Degradation of 14C-labelled carolic and carlosic acids from Penicillium charlesii G. Smith, Acta Chem. Scand.
12:.Mabelis, R. P., Ratcliffe, A. H., Ackland, M. J., Hanson, J. R., and Hitchcock, P. B., 1981, Structure of thiobiscephalosporide-A, a macrolide from Cephalosporium aphidicola, J. Chem. Soc. Chem. Commun. .MacMillan, J., 1953, Griseofulvin. 7. Dechlorogriseofulvin, J. Chem. Soc. .MacMillan, J., 1954, Griseofulvin. 9. Isolation of the bromo-analogue from Penicillium griseofulvum and Penicillium nigricans, J. Chem. Soc. .MacMillan, J., Vanstone, A. E., and Yeboah, S. K., 1972, Fungal products. III. Structure of wortmannin and some hydrolysis products, J. Chem. Soc. Perkin Trans. 1
2898-2903.MacMillan, J. G., Springer, J. P., Clardy, J., Cole, R. J., and Kirksey, J. W., 1976, Structure and synthesis of verruculotoxin, a new mycotoxin from Penicillium verruculosum Peyronel, J. Am. Chem. Soc.
98:246–247.Mahmoodian, A., and Stickings, C. E., 1964, Studies in the biochemistry of micro-organisms. 115. Metabolites of Penicillium fréquentons Westling: Isolation of sulochrin, asterric acid, (+)-bisdechlorogeodin and two new substituted anthraquinones, questin and questinol, Biochem. J.
92:369–378.Mantle, P. G., Day, J. B., Haigh, C. R., and Penny, R. H. C., 1978, Tremorgenic mycotoxins and incoordination syndromes, Vet. Rec.
103:403.Mantle, P. G., Perera, K. P. W. C., Maishman, N.J., and Mundy, G. R., 1983, Biosynthesis of penitrems and roquefortine by Penicillium crustosum, Appl. Environ. Microbiol.
45:.Mantle, P. G., Laws, I., Tan, M. J. L., and Tizard, M., 1984, A novel process for the production of penitrem mycotoxins by submerged fermentation of Penicillium nigricans, J. Gen. Microbiol.
130:.Mantle, P. G., and Shipston, N. F., 1987, Temporal separation of steps in the biosynthesis of verruculogen, Biochem. Int. (in press).Marumo, S., 1959, Islanditoxin, a toxic metabolite produced by Penicillium islandicum Sopp, Bull. Agric. Chem. Soc. Jpn.
23:428–437.McCapra, F., Scott, A. I., Delmotte, P., Delmotte-Plaquée, J., and Bhacca, N. S., 1964, The constitution of monorden, an antibiotic with tranquilising action, Tetrahedron Lett.
15:869–875.McCorkindale, N. J., and Baxter, R. L., 1981, Brevigellin, a benzoylated cyclodepsipeptide from Penicillium brevicompactum, Tetrahedron
37:.McCorkindale, N.J., Wright, J. L. C., Brain, P. W., Clarke, S. M., and Hutchinson, S. A., 1968, Canadensolide—an antifungal metabolite of Penicillium canadense, Tetrahedron Lett.
6:727–730.McCorkindale, N. J., Roy, T. P., and Hutchinson, S. A., 1972, Isolation and synthesis of 3-chlorogentisyl alcohol—a metabolite of Penicillium canadense, Tetrahedron
28:.McCorkindale, N. J., Baxter, R. L., Roy, T. P., Shields, H. S., Stewart, R. M., and Hutchinson, S. A., 1978a, Synthesis and chemistry of N-benzoyl-o-[N′-benzoyl-l-phenylalanyl]-1-phenylalaninol, the major mycelial metabolite of Penicillium canadense, Tetrahedron
34:.McCorkindale, N. J., Blackstock, W. P., Johnston, G. A., Roy, T. P., and Troke, J. A., 1978b, The biosynthesis of canadensolide, ethisolide and related metabolites, in: 11th IUPAC International Symposium on Chemistry of Natural Products: Symposium Papers, Vol. 1 (R. Vlahov, ed.), Bulgarian Academy of Sciences, Bulgaria, pp. 151–154.McCorkindale, N. J., Calzadilla, C. H., and Baxter, R. L., 1981, Biosynthesis of pebrolide, Tetrahedron
37:.McGahren, W. J., Ellestad, G. A., Morton, G. O., Kunstmann, M. P., and Mullen, P., 1973, A new fungal lactone, LL-P880β, and a new pyrone, LL-P880γ, from a Penicillium sp., J. Org. Chem.
38:.McMaster, W. J., Scott, A. I., and Trippett, S., 1960, Metabolic products of Penicillium patulum, J. Chem. Soc. .Merlini, L., Nasini, G., and Selva, A., 1970, The structure of funicone, a new metabolite from Penicillium funiculosum Thorn, Tetrahedron
26:.Michel, K. H., Chaney, M. O., Jones, N. D., Hoehn, M. M., and Nagarajan, R., 1974, Epipolythiopiperazinedione antibiotics from Penicillium turbatum, J. Antibiot.
27:57–64.Michel, K. H., Demarco, P. V., and Nagarajan, R., 1977, The isolation and structure elucidation of macrocyclic lactone antibiotic A26771B, J. Antibiot.
30:571–575.Minato, S., 1979, Isolation of anthglutin, an inhibitor of γ-glutamyl transpeptidase from Penicillium oxalicum, Arch. Biochem. Biophys.
192:235–240.Miyao, K., 1960, The structure of fungisporin, Bull. Agric. Chem. Soc. Jpn.
24:23–30.Mizuno, K., Tsujino, M., Takada, M., Hayashi, M., Atsumi, K., Asano, K., and Matsuda, T., 1974, Studies on bredinin. I. Isolation, characterisation and biological properties, J. Antibiot. (Tokyo)
27:775–782.Mohammed, Y. S., and Luckner, M., 1963, The structure of cyclopenin and cyclopenol, metabolic products from Penicillium cyclopium Westling and Penicillium viridicatum Westling, Tetrahedron Lett.
28:.Moore, R. E., and Emery, T., 1976, N-Acetylfusarinines: Isolation, characterisation and properties, Biochemistry
15:.Moreau, S., Biguet, J., Lablache-Combier, A., Baert, F., Foulon, M., and Delfosse, C., 1980, Structures et stéréochimie des sesquiterpenes de Penicillium roqueforti, PR toxine et eremefortines A, B, C, D, E, Tetrahedron
36:.Mosbach, K., 1960, Die Biosynthese der Orsellins?ure und Penicillins?ure, Acta Chem. Scand.
14:457–464.Moss, M. O., Wood, A. B., and Robinson, F. V., 1969, The structure of rubratoxin A, a toxic metabolite of Penicillium rubrum, Tetrahedron Lett.
5:367–370.Mull, R. P., Townley, R. W., and Scholz, C. R., 1945, Production of gliotoxin and a second active isolate by Penicillium obscurum Biourge, J. Am. Chem. Soc.
67:.Murphy, G., and Lynen, F., 1975, Patulin biosynthesis: The metabolism of m-hydroxybenzyl alcohol and m-hydroxybenzaldehyde, Eur. J. Biochem.
58:467–475.Murphy, G., Vogel, G., Krippahl, G., and Lynen, F., 1974, Patulin biosynthesis: The role of mixed function oxidases in the hydroxylation of m-cresol, Eur. J. Biochem.
49:443–455.Nagel, D. W., Steyn, P. S., and Scott, D. B., 1972, Production of citreoviridin by Penicillium pulvillorum, Phytochemistry
11:627–630.Nagel, D. W., Pachler, K. G. R., Steyn, P. S., Vleggaar, R., and Wessels, P. L., 1976, The chemistry and 13C NMR assignments of oxaline, a novel alkaloid from Penicillium oxalicum, Tetrahedron
32:2625.Nakajima, S., and Nozawa, K., 1979, Isolation in high yield of citrinin from Penicillium odoratum and of mycophenolic acid from Penicillium brunneo-stoloniferum, J. Nat. Prod.
42:423–426.Nakakita, Y., Shima, S., and Sakai, H., 1984a, Isolation of curvulic acid as an antimicrobial substance from Penicillium janthinellum C-268, Agric. Biol. Chem.
48:.Nakakita, Y., Yomosa, K., Hirota, A., and Sakai, H., 1984b, Isolation of a novel phenolic compound from Penicillium janthinellum Biourge, Agric. Biol. Chem.
48:239–240.Narasimhachari, N., and Vining, L. C., 1963, Studies on the pigments of Penicillium herquei, Can. J. Chem.
41:641–648.Narasimhachari, N., Gopalkrishnan, K. S., Haskins, R. H., and Vining, L. C., 1963, The production of the antibiotic atrovenetin by a strain of Penicillium herquei, Can. J. Microbiol.
9:134–136.Niwa, M., Ogiso, S., Endo, T., Furukawa, H., and Yamamura, S., 1980, Isolation and structure of citreopyrone, a metabolite of Penicillium citreo-viride Biourge, Tetrahedron Lett.
21:.Niwa, M., Endo, T., Ogiso, S., Furukawa, H., and Yamamura, S., 1981, Two new pyrones, metabolites of Penicillium citreoviride Biourge, Chem. Lett. .Nozawa, K., and Nakajima, S., 1979, Isolation of radicicol from Penicillium luteo-aurantium, and meleagrin, a new metabolite, from Penicillium meleagrinum, J. Nat. Prod.
42:374–377.Nozoe, S., Morisaki, M., Tsuda, K., Iitaka, Y., Takahashi, N., Tamura, S., Ishibashi, K., and Shirasaka, M., 1965, The structure of ophiobolin, a C25 terpenoid having a novel skeleton, J. Am. Chem. Soc.
87:.Ogihara, Y., Kobayashi, N., and Shibata, S., 1968, Further studies on the bianthraquinones of Penicillium islandicum Sopp, Tetrahedron Lett.
15:.Ohmomo, S., Sato, T., Utagawa, T., and Abe, M., 1975, Isolation of festuclavine and three new indole alkaloids, roquefortine A, B, and C., from the cultures of Penicillium roqueforti, Agric. Biol. Chem.
39:.Ohmomo, S., Miyazaki, K., Ohashi, T., and Abe, M., 1977, On the mechanism for the formation of indole alkaloids in Penicillium concavo-rugulosum, Agric. Biol. Chem.
41:.Ohmomo, S., Oguma, K., Ohashi, T., and Abe, M., 1978, Isolation of a new indole alkaloid, roquefortine D, from cultures of Penicillium roqueforti, Agric. Biol. Chem.
42:.Ohmomo, S., Oshashi, T., and Abe, M., 1980, Isolation of biogenetically correlated four alkaloids from the cultures of Penicillium corymbiferum, Agric. Biol. Chem.
44:.Okuda, S., Iwasaki, S., Tsuda, K., Sano, Y., Hata, T., Udagawa, S., Nakayama, Y., and Yamaguchi, H., 1964, The structure of helvolic acid, Chem. Pharm. Bull. (Tokyo)
12:121–124.Okuda, S., Nakyama, Y., and Tsuda, K., 1966, Studies on microbial products I: Helvolic acid and related compounds. I. 7-Desacetoxyhelvolic acid and helvolinic acid, Chem. Pharm. Bull. (Tokyo)
14:436–441.Okuda, S., Sato, Y., Hattori, T., and Igarashi, H., 1968a, Isolation of 3β-hydroxy-4β-hydroxymethylfusida-17(20),[16,21-cis],24-diene, Tetrahedron Lett.
47:.Okuda, S., Sato, Y., Hattori, T., and Wakabayashi, M., 1968b, Isolation and structural elucidation of 3-oxo-16β-acetoxyfusida-l,17(20)[16,21-cis],24-trien-21-oic acid, Tetrahedron Lett.
47:.Okuda, T., Yokose, K., Furumai, T., and Maruyama, H. B., 1984, Penitricin, a new class of antibiotic produced by Penicillium aculeatum. II. Isolation and characterisation, J. Antibiot. 37:718–722.Okuyama, E., Yamazaki, M., Kobayashi, K., and Sakurai, T., 1983, Paraherquonin, a new meroterpenoid from Penicillium paraherquei, Tetrahedron Lett.
24:.Olivigni, F. J., and Bullerman, L. B., 1978, Production of penicillic acid and patulin by an atypical Penicillium roqueforti isolate, Appl. Environ. Microbiol.
35:435–438.Omura, S., Nakagawa, A., Sekikawa, K., Otani, M., and Hata, T., 1969, Studies on cerulenin. VI. Some spectroscopic features of cerulenin, Chem. Pharm. Bull.
17:.Ooyama, J., Nakamura, N., and Tanabe, O., 1960, Biosynthesis of dipicolinic acid by a Penicillium sp., Bull. Agric. Chem. Soc. Jpn.
24:743–744.Oxford, A. E., and Raistrick, H., 1933, Studies in the biochemistry of microorganisms XXX: The molecular constitution of the metabolic products of Penicillium brevi-compactum and related species. I. The acids C10H10O5, C10H10O6 and C10H10O7, Biochem. J.
27:634–653.Oxford, A. E., and Raistrick, H., 1948, Studies in the biochemistry of microorganisms. 76. Mycelianamide, C22H28O5N2, a metabolic product of Penicillium griseofulvum Dierckx. I. Preparation, properties and breakdown products, Biochem. J.
42:323–329.Oyama, H., Sassa, T., and Ikeda, M., 1978, Structures of new plant growth inhibitors, trans-and cis-resorcylide, Agric. Biol. Chem.
42:.Patterson, D. S. P., Roberts, B. A., Shreeve, B. J., McDonald, S. M., and Hayes, A. W., 1979, Tremorgenic toxins produced by soil fungi, Appl. Environ. Microbiol.
37:172–173.Patterson, D. S. P., Shreeve, B. J., Roberts, B. A., and MacDonald, S. M., 1981, Verruculogen produced by soil fungi in England and Wales, Appl. Environ. Microbiol.
42:916–917.Pettersson, G., 1965a, Biosynthesis of spinulosin in Penicillium spinulosum, Acta Chem. Scand.
19:.Pettersson, G., 1965b, The biosynthesis of flavipin. II. Incorporation of aromatic precursors, Acta Chem. Scand.
19:.Pfeifer, S., Bar, H., and Zarnack, J., 1972, Uber Stoffwechselprodukte der Xanthocillin bildenden Mutante von Penicillium notatum Westl., Pharmazie
27:536–542.Pitt, J. I., 1979a, The Genus Penicillium and Its Teleomorphic States Eupenicillium and Talaromyces, Academic Press, London.Pitt, J. I., 1979b, Penicillium crustosum and P. simplicissimum, the correct names for two common species producing tremorgenic mycotoxins, Mycologia
71:.Polonsky, J., Merrien, M.-A., Prange, T., Pascard, C., and Moreau, S., 1980, Isolation and structure (X-ray analysis) of marcfortine A, a new alkaloid from Penicillium roqueforti, J. Chem. Soc. Chem. Commun. 601-602.Posternak, T., 1940, Recherches sur la biochemie des champignons inférieurs. 4. Sur le pigment de Penicillium roseopurpureum, Helv. Chim. Acta
23:.Prange, T., Billion, M.-A., Vuilhorgne, M., Pascard, C., and Polonsky, J., 1981, Structures of marcfortine B and C (X-ray analysis), alkaloids from Penicillium roqueforti, Tetrahedron Lett.
22:.Price, M. J., and Worth, G. K., 1974, The occurrence of ergosta-4,6,8(14),22-tetraen-3-one in several fungi, Aust. J. Chem.
27:.Probst, A., and Tamm, C., 1981, Biosynthesis of cytochalasin: Biosynthetic studies on chaetoglobosin A and 19-O-acetylchaetoglobosin A, Helv. Chim. Acta
64:.Quick, A., Thomas, R., and Williams, D. J., 1980, X-ray crystal structure and absolute configuration of the fungal phenalenone herqueinone, J. Chenu Soc. Chem. Commun. .Qureshi, I. H., Begum, T., and Murtaza, N., 1980, Isolation and identification of the metabolic products of Penicillium funiculosum Thorn. The chemistry of funiculosic acid, Pak. J. Sci. Ind. Res.
23:16–20.Raistrick, H., and Rice, F. A. H., -Dihydro-3,6-dihydroxy-2-methyl-4-pyrone and cur-vularin from Penicillium gilmanii, J. Chem. Soc. C .Raistrick, H., and Ross, D. J., 1952, Studies in the biochemistry of micro-organisms. 87. Dihydrogladiolic acid, a metabolic product of Penicillium gladioli Machacek, Biochem. J.
50:635–647.Raistrick, H., and Stossl, A., 1958, Studies in the biochemistry of micro-organisms. 104. Metabolites of Penicillium atrovenetum G. Smith: β-Nitropropionic acid, a major metabolite, Biochem. J.
68:647–653.Raju, M. S., Wu, G.-S., Gard, A., and Rosazza, J. P., 1982, Microbial transformations of natural antitumor agents. 20. Glucosylation of viridicatum toxin, J. Nat. Prod.
45:321–327.Rebstock, M. C., 1964, A new metabolite of patulin-producing Penicillia, Arch. Biochem. Biophys.
104:156–159.Rebuffat, S., Davoust, D., Molho, L., and Molho, D., 1980, La citreomontanine, nouvelle α-pyrone polyéthylénique isolée de Penicillium pedemontanum, Photochemistry
19:427–431.Rebuffat, S., Davoust, D., and Molho, D., 1981, Biosynthesis of citreomontanin in Penicillium pedemontanum, Phytochemistry
20:.Renauld, F., Moreau, S., and Lablache-Combier, A., 1984, Biosynthese de la botryodiplodine, mycotoxine de Penicillium roqueforti: Incorporations d’acetate [1-13C], [2-13C], [1-2-13C] et d’acide orsellinique [2-13C-carboxyle 13C], [3-413C], Tetrahedron
40:.Rhodes, A., Boothroyd, B., McGonagle, M. P., and Somerfield, G. A., 1961, Biosynthesis of griseofulvin: The methylated benzophenone intermediates, Biochem. J.
81:28–37.Rice, F. A. H., 1971, The structure of leucogenol, J. Chem. Soc. C .Robbers, J. E., Straus, J. W., and Tuite, J., 1975, The isolation of brevianamide A from Penicillium ochraceum, Lloydia
38:355–366.Roberts, J. C., and Thompson, D. J., 1971, Studies in mycological chemistry. 27. Rein-vestigation of the structure of purpurogenone, a metabolite of Penicillium purpurogenum Stoll, J. Chem. Soc. C .Rowan, D. D., Hunt, M. B., and Gaynor, D. L., 1986, Peramine, a novel insect feeding deterrent from ryegrass infected with the endophyte Acremonium loliae, J. Chem. Soc. Chem. Commun. 935-936.Sakabe, N., Goto, T., and Hirata, Y., 1977, Structure of citreoviridin, a mycotoxin produced by Penicillium citreoviride molded on rice, Tetrahedron
33:.Sankawa, U., Taguchi, H., Ogihara, Y., and Shibata, S., 1966, Biosynthesis of duclauxin, Tetrahedron Lett.
25:.Sankawa, U., Shimada, H., Sato, T., Kinoshita, T., and Yamasaki, K., 1977, Biosynthesis of scytalone, Tetrahedron Lett.
5:483–486.Sassa, T., Takemura, T., Ikeda, M., and Miura, Y., 1973, Structure of radiclonic acid, a new plant growth-regulator produced by a fungus, Tetrahedron Lett.
26:.Sassa, T., Niwa, G., Unno, H., Ikeda, M., and Miura, Y., 1974, Structure of penicillide, a new metabolite produced by a Penicillium sp., Tetrahedron Lett.
45:.Sassa, T., Nakano, K., and Miura, Y., 1975, Isolation and identification of O-acetyl and 12-hydroxyradiclonic acids, Agric. Biol. Chem.
39:.Scott, A. I., and Beadling, L., 1974, Biosynthesis of patulin: Dehydrogenase and dioxygenase enzymes of Penicillium patulum, Bioorg. Chem.
3:281–301.Scott, A. I., Phillips, G. T., and Kircheis, U., 1971, Biosynthesis of polyketides: Synthesis of 6-methylsalicyclic acid and triacetic acid lactone in Penicillium patulum, Bioorg. Chem.
1:380–399.Scott, A. I., Zamir, L., Phillips, G. T., and Yalpani, M., 1973, Biosynthesis of patulin, Bioorg. Chem.
2:124–139.Scott, P. M., 1977, Penicillium mycotoxins, in: Mycotoxic Fungi, Mycotoxins, Mycotoxicoses, Vol. I (T. D. Wyllie and L. G. Morehouse, eds.), Marcel Dekker, New York, pp. 283–356.Scott, P. M., Kennedy, B., and Van Walbeek, W., 1972, Desoxypatulinic acid from a patulin-producing strain of Penicillium patulum, Experientia
28:1252.Scott, P. M., Kennedy, B. P. C., Harwig, J., and Chen, Y. K., 1974, Formation of diketopiperazines by Penicillium italicum isolated from oranges, Appl. Microbiol.
28:892.Scott, P. M., Merrien, M.-A., and Polonsky, J., 1976, Roquefortine and isofumigaclavine A, metabolites of Penicillium roqueforti, Experientia
32:140–142.Sedmera, P., Podojil, M., Cokown, J., Bellina, V., and Memec, P., ′-Dimethoxy-4a,4a′-dehydrorugulosin (rugulin), Folia Microbiol. (Prague)
23:64–67.Segal, W., 1959, Stipitatonic acid: A new mould tropolone from Penicillium stipitatum Thorn, J. Chem. Soc. .Sekiguchi, J., and Gaucher, G. M., 1979a, Isoepoxydon, a new metabolite of the patulin pathway in Penicillium urticae, Biochem. J.
182:445–453.Sekiguchi, J., and Gaucher, G. M., 1979b, Patulin biosynthesis: The metabolism of phyllostine and isoepoxydon by cell-free preparations from Penicillium urticae, Can. J. Microbiol.
25:881–887.Sekiguchi, J., Gaucher, G. M., and Yamada, Y., 1979, Biosynthesis of patulin in Penicillium urticae: Identification of isopatulin as a new intermediate, Tetrahedron Lett.
1:41–42.Sekiguchi, J., Shimamato, T., Yamada, Y., and Gaucher, G. M., 1983, Patulin biosynthesis: Enzymatic and nonenzymatic transformations of the mycotoxin (E)-ascladiol, Appl. Environ. Microbiol.
45:.Sekiguchi, J., Kuroda, H., Yamada, Y., and Okada, H., 1985, Structure of patulolide A, a new metabolite from Penicillium urticae mutants, Tetrahedron Lett.
26:.Seo, S., Sankawa, U., Ogihara, Y., Iitaka, Y., and Shibata, S., 1973, Studies on fungal metabolites. 32. A renewed investigation on flavoskyrin and its analogues, Tetrahedron
29:.Seto, H., and Tanabe, M., 1974, Utilization of 13C-13C coupling in structural and biosynthetic studies: Ochrephilone—a new fungal metabolite, Tetrahedron Lett.
8:651–654.Shibata, S., and Udagawa, S., 1963, Metabolic products of fungi. 19. Isolation of rugulosin from Penicillium brunneum, Chem. Pharm. Bull.
11:402–403.Shibata, S., Sankawa, U., Taguchi, H., and Yamasaki, K., 1966, Biosynthesis of natural products. 3. Biosynthesis of erythroskyrin, a coloring matter of Penicillium islandicum Sopp., Chem. Pharm. Bull.
14:474–478.Shizuri, Y., Niwa, M., Furukawa, H., and Yamamura, S., 1983, Isolation and structure of citreothiolactone, a novel metabolite of Penicillium citreoviride, Tetrahedron Lett.
24:.Shizuri, Y., Kosemura, S., Yamamura, S., Furukawa, H., Kawai, K., and Okada, N., 1984a, Biosynthesis of citreothiolactone, citreopyrone and pyrenocine B, Tetrahedron Lett.
25:.Shizuri, Y., Nishiyama, S., Imai, D., Yamamura, S., Furukawa, H., Kawai, K., and Okada, N., 1984b, Isolation and stereostructures of citreoviral, citreodiol and epicitreodiol, Tetrahedron Lett. 25:.Sigg, H. P., 1963, Die Konstitution von Frequentin, Helv. Chim. Acta
46:.Sigg, H. P., 1964, Die Konstitution von Brefeldin A, Helv. Chim. Acta
47:.Simonart, P., and Wiaux, A., 1959, Biochemical study of Penicillium griseofulvum. I. Presence of o-, m-, and p-hydroxybenzoic acids, Bull. Soc. Chim. Biol.
41:537–540.Simpson, T. J., 1979, Carbon-13 nuclear magnetic resonance structural and biosynthetic studies on deoxyherqueinone and herqueichrysin, phenolenone metabolites of Penicillium herquei, J. Chem. Soc. Perkin Trans. 1 .Simpson, T. J., Lunnon, M. W., and MacMillan, J., 1979, Fungal products. 21. Biosynthesis of the fungal metabolite, wortmannin, from [l,213G2]-acetate, J. Chem. Soc. Perkin Trans 1 931-934.Simpson, T. J., Stenzel, D. J., Bartlett, A. J., O’Brien, E., and Holker, J. S. E., 1982, Studies on fungal metabolites. 3. 13C NMR spectral and structural studies on austin and new related meroterpenoids from Aspergillus ustus, Aspergillus variecolor and Penicillium diversum, J. Chem. Soc. Perkin Trans. 1 .Singleton, V. L., Bohonos, N., and Ullstrup, A. J., 1958, Decumbin, a new compound from a species of Penicillium, Nature (London)
181:.Springer, J. P., Clardy, J., Wells, J. M., Cole, R. J., and Kirksey, J. W., 1975, The structure of paxilline, a tremorgenic metabolite of Penicillium paxilli, Tetrahedron Lett.
30:.Stack, M. E., and Mislivec, P. B., 1978, Production of xanthomegnin and viomellein by isolates of Aspergillus ochraceous, Penicillium cyclopium and Penicillium viridicatum, Appl. Environ. Microbiol.
36:552–554.Stack, M. E., Eppley, R. M., Dreifuss, P. A., and Pohland, A. E., 1977, Isolation and identification of xanthomegnin, viomellein, rubrosulphin and viopurpurin as metabolites of Penicillium viridicatum, Appl. Environ. Microbiol.
33:351–355.Stack, M. E., Mazzola, E. P., and Eppley, R. M., 1979, Structures of xanthoviridicatin D and xanthoviridicatin G, metabolites of Penicillium viridicatum: Application of proton and carbon-13 NMR spectroscopy, Tetrahedron Lett.
52:.Steiner, E., Kalamar, J., Charollais, E., and Posternak, T., 1974, Recherches sur la biochemie des champignons inférieurs. IX. Synthèse de précurseurs marqués et biosynthèse de la phoenicine et de l’oosporeine, Helv. Chim. Acta
57:.Stevens, R. L., and Emery, T. F., 1966, The biosynthesis of hadacidin, Biochemistry
5:74–81.Steyn, P. S., and Vleggaar, R., 1983, Roquefortine, an intermediate in the biosynthesis of oxaline in cultures of Penicillium oxalicum, J. Chem. Soc. Chem. Commun. 560-561.Steyn, P. S., Vleggaar, R., Wessels, P. L., and Woudenberg, M., 1982, Biosynthesis of citreoviridin: A carbon-13 NMR study, J. Chem. Soc. Perkin Trans. 1 .Studer, R. O., 1969, Synthesis and structure of fungisporin, Experientia
25:899.Sumiki, Y., and Miyao, K., 1952, Studies on fungisporin. I, J. Agric. Chem. Soc. Jpn.
26:27–31.Sunagawa, M., Ohta, T., and Nozoe, S., 1979, Isolation and structure of brefeldin C., Heterocycles
13:267–270.Suter, P. J., and Turner, W. B., 1967, 2-Pyruvoylaminobenzamide, a metabolite of Penicillium chrysogenum, J. Chem. Soc. C .Tabuchi, T., Nakamura, L, and Kobayashi, T., 1977, Accumulation of the open-ring acid of spiculisporic acid by Penicillium spiculisporum, J. Ferment. Technol.
55:37–49.Takeda, N., Seo, S., Ogihara, Y., Sankawa, U., Iitaka, Y., Kitagawa, I., and Shibata, S., 1973, Studies on fungal metabolites. 31. Anthraquinoid colouring matters of Penicillium islandicum Sopp and some other fungi, luteoskyrin, rubroskyrin, rugulosin and their related compounds, Tetrahedron
29:.Tanenbaum, S. W., and Bassett, E. W., 1959, The biosynthesis of patulin. III. Evidence for a molecular rearrangement of the aromatic ring, J. Biol. Chem.
234:.Tanenbaum, S. W., and Nakajima, S., 1969, The biosynthesis of pulvilloric acid, Biochemistry
8:.Tatsuno, T., Kobayashi, N., Okubo, K., and Tsunoda, H., 1975, Recherches toxicologiques sur les substances toxiques de Penicillium tardum. 1. Isolement et identification des substances cytotoxiques, Chem. Pharm. Bull.
23:351–354.Tertzakian, G., Haskins, R. H., Slater, G. P., and Nesbitt, L. R., 1964, The structure of cephalochromin, Proc. Chem. Soc. 195-196.Thomas, R., 1961, Studies in the biosynthesis of fungal metabolites. 3. The biosynthesis of fungal perinaphthenones, Biochem. J.
78:807–813.Tony Lam, Y. K., Gullo, U. P., Goegelman, R. T., Jorn, D., Huang, L., De Riso, C., Monaghan, R. L., and Putter, L, 1981, Dihydrocompactin, a new potent inhibitor of 3-hydroxy-3-methylglutaryl coenzyme A reductase from Penicillium citrinum, J. Antibiot.
34:614–616.Turner, W. B., 1971, Fungal Metabolites, Academic Press, London.Turner, W. B., 1978, The isolation and structures of the fungal metabolites lapidosin and diver-sonol, J. Chem. Soc. Perkin Trans. 1
1621.Turner, W. B., and Aldridge, D. C., 1983, Fungal Metabolites II, Academic Press, New York.Udagawa, S., 1963, Sclerotiorin, a major metabolite of Penicillium hirayamae, Chem. Pharm. Bull.
11:366–367.Uramoto, M., Tanabe, M., Hirotsu, K., and Clardy, J., 1982, A new tremorgenic metabolite related to verruculogen from Penicillium verruculosum, Heterocycles
17:349–354.Van der Merwe, K.J., Steyn, P. S., and Fourie, L., 1965, The constitutions of ochratoxins A, B, and C., metabolites of Aspergillus ochraceous Wilh., J. Chem. Soc. .Van Eijk, G. W., 1973, Anthraquinone in the fungus Talaromyces stipitatus, Experientia
29:522–523.Van Walbeek, W., Scott, P. M., Harwig, J., and Lawrence, J. W., 1969, Penicillium viridicatum Westling: A new source of ochratoxin A, Can. J. Microbiol.
15:.Verachten, H., and Hanssens, L., 1975, Isolation and identification of phenolic substances from the fungus Penicillium spinulosum, Ann. Microbiol. (Inst. Pasteur)
126A:143–149.Vesonder, R. F., 1979, Xanthocillin, a metabolite of Eupenicillium egyptiacum NRRL 1022, J. Nat. Prod.
42:232–233.Vesonder, R. F., Stodola, F. H., Wickerham, L. J., Ellis, J. J., and Rohwedder, W. K., 1971, 11-Hydroxy-trans-9-dodecanoic acid lactone, a 12-membered-ring compound from a fungus, Can. J. Chem.
49:.Vesonder, R. F., Stodola, F. H., and Rohwedder, W. K., 1972, Formation of the δ-lactone of 3,5-dihydroxydecanoic acid by the fungus Cephalosporium recifei, Can. J. Biochem.
50:363–365.Vesonder, R. F., Ciegler, A., Fennell, D., Tjarks, L. W., and Jensen, A. H., 1976, Curvularin from Penicillium baradicum Baghdadi NRRL 3754, and biological effects, J. Environ. Sci. Health B11:289–297.Vesonder, R. F., Tjarks, L., Rohwedder, W. K., and Kieswetter, D. O., 1980, Indole metabolites of Penicillium cyclopium NRRL 6093, Experientia
36:1308.Vining, L. C., McInnes, A. G., Smith, D. G., Wright, J. L. C., and Taber, W. A., 1982, Dimeric clavine alkaloids produced by Penicillium citreo-viride, FEMS Symp.
13:243–251.Vleggaar, R., and Wessels, P. L., 1980, Stereochemistry of the dehydrogenation of (2S)-histidine in the biosynthesis of roquefortine and oxaline, J. Chem. Soc. Chem. Commun. 160.Wagener, R. E., Davis, N. D., and Diener, U. L., 1980, Penitrem A and roquefortine production by Penicillium commune, Appl. Environ. Microbiol.
39:882–887.Weedon, C. M., and Mantle, P. G., 1987, Paxilline biosynthesis by Acremonium loliae; a step towards defining the origin of lolitrem neurotoxins. Phytochemistry
26:969–971.Weete, J. D., and Laseter, J. L., 1974, Distribution of sterols in fungi. I. Fungal spores, Lipids
9:575–581.Wei, R.-D., Schnoes, H. K., Hart, P. A., and Strong, F. M., 1975, The structure of PR toxin, a mycotoxin from Penicillium roqueforti, Tetrahedron
31:109–114.White, J. D., and Taylor, S. I., 1970, Biosynthesis of ergosta-4,6,8(14),22-tetraen-3-one: In vivo incorporation of a 1,4-dioxide, J. Am. Chem. Soc.
92:.White, J. D., Perkins, D. W., and Taylor, S. I., 1973, Biosynthesis of ergosta-4,6,8(14),22-tetraen-3-one: A novel oxygenative pathway, Bio-org. Chem.
2:163–175.Wijkman, N., 1931, Uber einige neue, durch Schimmelpilze gebildete Substanzen, Ann. Chim.
485:61–73.Willingale, J., Atwell, S. M., and Mantle, P. G., 1983a, Unusual ergot alkaloid biosynthesis in sclerotia of a Claviceps purpurea mutant, J. Gen. Microbiol.
129:.Willingale, J., Perera, K. P. W. C., and Mantle, P. G., 1983b, An intermediary role for the tremorgenic mycotoxin TR-2 in the biosynthesis of verruculogen, Biochem. J.
214:991–993.Wilson, B. J., Wilson, C. H., and Hayes, A. W., 1968, Tremorgenic toxin from Penicillium cyclopium grown on food materials, Nature (London)
220:77–78.Wilson, B. J., Yang, D. T. C., and Harris, T. M., 1973, Production, isolation and preliminary toxicity studies of brevianamide A from cultures of Penicillium viridicatum, Appl. Microbiol.
26:633–635.Yamamoto, I., Mizuta, E., Henmi, T., Yamono, T., and Yamatodani, S., 1973, Epoformin, a new antibiotic produced by Penicillium claviforme, Takeda Kenkynsho Ho
32:532–538.Yamatodani, S., Asahi, Y., Matsukura, A., Ohmomo, S., and Abe, M., 1970, Structure of rugulovasine A, B and their derivatives, Agric. Biol. Chem.
34:485–487.Yamazaki, M., Fujimoto, H., and Miyaki, K., 1972, Metabolites of some strains of Penicillium isolated from foods, Yakugaku Zasshi
91:101–104.Yamazaki, M., Okuyama, E., Kobayashi, M., and Inoue, H., 1981, The structure of paraher-quamide, a toxic metabolite from Penicillium paraherquei, Tetrahedron Let

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