Aspergillus flavus grown in peptone as the carbon source exhibits spore density- and peptone concentration-dependent aflatoxin biosynthesis

被引:31
作者
Yan, Shijuan [1 ,2 ]
Liang, Yating [2 ,3 ]
Zhang, Jindan [1 ]
Liu, Chun-Ming [1 ]
机构
[1] Chinese Acad Sci, Inst Bot, Key Lab Plant Mol Physiol, Beijing 100093, Peoples R China
[2] Gansu Agr Univ, Practaculture Coll, Lanzhou 730070, Peoples R China
[3] Soochow Univ, Sch Biol & Basic Med Sci, Suzhou 215000, Peoples R China
关键词
A; flavus; parasiticus; nomius; Peptone; Aflatoxin biosynthesis; Density effect; MYCOTOXIN PRODUCTION; SECONDARY METABOLISM; IDENTIFYING DIFFERENCES; GENE-EXPRESSION; MAIZE KERNELS; SECTION FLAVI; PARASITICUS; GLUCOSE; TEMPERATURE; INDUCTION;
D O I
10.1186/1471-2180-12-106
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Background: Aflatoxins (AFs) are highly carcinogenic compounds produced by Aspergillus species in seeds with high lipid and protein contents. It has been known for over 30 years that peptone is not conducive for AF productions, although reasons for this remain unknown. Results: In this study, we showed that when Aspergillus flavus was grown in peptone-containing media, higher initial spore densities inhibited AF biosynthesis, but promoted mycelial growth; while in glucose-containing media, more AFs were produced when initial spore densities were increased. This phenomenon was also observed in other AF-producing strains including A. parasiticus and A. nomius. Higher peptone concentrations led to inhibited AF production, even in culture with a low spore density. High peptone concentrations did however promote mycelial growth. Spent medium experiments showed that the inhibited AF production in peptone media was regulated in a cell-autonomous manner. mRNA expression analyses showed that both regulatory and AF biosynthesis genes were repressed in mycelia cultured with high initial spore densities. Metabolomic studies revealed that, in addition to inhibited AF biosynthesis, mycelia grown in peptone media with a high initial spore density showed suppressed fatty acid biosynthesis, reduced tricarboxylic acid (TCA) cycle intermediates, and increased pentose phosphate pathway products. Additions of TCA cycle intermediates had no effect on AF biosynthesis, suggesting the inhibited AF biosynthesis was not caused by depleted TCA cycle intermediates. Conclusions: We here demonstrate that Aspergillus species grown in media with peptone as the sole carbon source are able to sense their own population densities and peptone concentrations to switch between rapid growth and AF production. This switching ability may offer Aspergillus species a competition advantage in natural ecosystems, producing AFs only when self-population is low and food is scarce.
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页数:14
相关论文
共 67 条
[1]   REGULATION OF AFLATOXIN BIOSYNTHESIS - INDUCTION OF AFLATOXIN PRODUCTION BY VARIOUS CARBOHYDRATES [J].
ABDOLLAHI, A ;
BUCHANAN, RL .
JOURNAL OF FOOD SCIENCE, 1981, 46 (02) :633-635
[2]   REGULATION OF AFLATOXIN BIOSYNTHESIS - CHARACTERIZATION OF GLUCOSE AS APPARENT INDUCER OF AFLATOXIN PRODUCTION [J].
ABDOLLAHI, A ;
BUCHANAN, RL .
JOURNAL OF FOOD SCIENCE, 1981, 46 (01) :143-146
[3]   INCORPORATION OF LABELLED COMPOUNDS INTO AFLATOXINS [J].
ADYE, J ;
MATELES, RI .
BIOCHIMICA ET BIOPHYSICA ACTA, 1964, 86 (02) :418-&
[4]   Distinct Roles for VeA and LaeA in Development and Pathogenesis of Aspergillus flavus [J].
Amaike, Saori ;
Keller, Nancy P. .
EUKARYOTIC CELL, 2009, 8 (07) :1051-1060
[5]  
Aziz NH, 1997, NAHRUNG, V41, P150, DOI 10.1002/food.19970410307
[6]   VelB/VeA/LaeA complex coordinates light signal with fungal development and secondary metabolism [J].
Bayram, Oezguer ;
Krappmann, Sven ;
Ni, Min ;
Bok, Jin Woo ;
Helmstaedt, Kerstin ;
Valerius, Oliver ;
Braus-Stromeyer, Susanna ;
Kwon, Nak-Jung ;
Keller, Nancy P. ;
Yu, Jae-Hyuk ;
Braus, Gerhard H. .
SCIENCE, 2008, 320 (5882) :1504-1506
[7]   ENZYMES OF SECONDARY METABOLISM IN MICROORGANISMS [J].
BEHAL, V .
TRENDS IN BIOCHEMICAL SCIENCES, 1986, 11 (02) :88-91
[8]   Mycotoxins [J].
Bennett, JW ;
Klich, M .
CLINICAL MICROBIOLOGY REVIEWS, 2003, 16 (03) :497-+
[9]   Molecular genetic analysis and regulation of aflatoxin biosynthesis [J].
Bhatnagar, D ;
Ehrlich, KC ;
Cleveland, TE .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2003, 61 (02) :83-93
[10]   LIVING MAIZE EMBRYO INFLUENCES ACCUMULATION OF AFLATOXIN IN MAIZE KERNELS [J].
BROWN, RL ;
COTTY, PJ ;
CLEVELAND, TE ;
WIDSTROM, NW .
JOURNAL OF FOOD PROTECTION, 1993, 56 (11) :967-971