ISOLATION AND CHARACTERIZATION OF SEXUAL SPORE PIGMENTS FROM ASPERGILLUS-NIDULANS

被引:38
作者
BROWN, DW
SALVO, JJ
机构
[1] GE CO,CORP RES & DEV,ENVIRONM RES LAB,SCHENECTADY,NY 12301
[2] ALBANY MED COLL,DEPT MICROBIOL IMMUNOL & MOLEC GENET,ALBANY,NY 12208
关键词
D O I
10.1128/AEM.60.3.979-983.1994
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The homothallic ascomycete Aspergillus nidulans produces two types of pigmented spores: conidia and ascospores. The synthesis and localization of the spore pigments is developmentally regulated and occurs in specialized cell types. On the basis of spectroscopic evidence, we propose that the major ascospore pigment of A. nidulans (ascoquinone A) is a novel dimeric hydroxylated anthraquinone. The structure of ascoquinone A, as well as a comparison to model compounds, suggests that it is the product of a polyketide synthase. Previous studies have revealed that the conidial pigments from A. nidulans and a related Aspergillus species (A. parasiticus) also appear to be produced via polymerization of polyketide precursors (D. W. Brown, F. M. Hauser, R. Tommasi, S. Corlett, and J. J. Salve, Tetrahedron Lett. 34:419-422, 1993; M. E. Mayorga and W. E. Timberlake, Mel. Gen. Genet. 235:205-212, 1992). The structural similarity between the ascospore pigment and the toxic anthraquinone norsolorinic acid, the first stable intermediate in the aflatoxin pathway, suggests an evolutionary relationship between the respective polyketide synthase systems.
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页码:979 / 983
页数:5
相关论文
共 47 条
[1]   BIOSYNTHETIC-STUDIES ON TAJIXANTHONE AND SHAMIXANTHONE, POLYKETIDE HEMITERPENOID METABOLITES OF ASPERGILLUS-VARIECOLOR [J].
AHMED, SA ;
BARDSHIRI, E ;
MCINTYRE, CR ;
SIMPSON, TJ .
AUSTRALIAN JOURNAL OF CHEMISTRY, 1992, 45 (01) :249-274
[2]   FORMAL AND PHYSIOLOGICAL GENETICS OF ASCOSPORE COLOUR IN ASPERGILLUS NIDULANS [J].
APIRION, D .
GENETICAL RESEARCH, 1963, 4 (02) :276-&
[3]   XANTHONE STUDIES .4. HYDROXYL PROTON CHEMICAL-SHIFTS IN STRUCTURAL INVESTIGATION OF XANTHONES [J].
ARENDS, P ;
HELBOE, P .
ACTA CHEMICA SCANDINAVICA, 1972, 26 (10) :4180-4182
[4]  
AUCAMP PJ, 1970, J S AFR CHEM I, V23, P40
[5]   BIOSYNTHESIS AND FUNCTIONS OF FUNGAL MELANINS [J].
BELL, AA ;
WHEELER, MH .
ANNUAL REVIEW OF PHYTOPATHOLOGY, 1986, 24 :411-451
[6]   IDENTIFICATION OF AVERANTIN AS AN AFLATOXIN-B1 PRECURSOR - PLACEMENT IN THE BIOSYNTHETIC-PATHWAY [J].
BENNETT, JW ;
LEE, LS ;
SHOSS, SM ;
BOUDREAUX, GH .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1980, 39 (04) :835-839
[7]   STERIGMATOCYSTIN PRODUCTION ON COMPLEX AND DEFINED SUBSTRATES [J].
BENNETT, JW ;
HENDERBERG, A ;
GROSSMAN, K .
MYCOPATHOLOGIA, 1989, 105 (01) :35-38
[8]  
BERGER Y, 1980, PHYTOCHEMISTRY, V19, P2279
[9]  
Bhatnagar D., 1992, Handbook of applied mycology. Volume 5: Mycotoxins in ecological systems., P255
[10]  
Breitmaier E., 1987, CARBON 13 NMR SPECTR, V3, P515