Integrating toxin gene expression, growth and fumonisin B1 and B2 production by a strain of Fusarium verticillioides under different environmental factors

被引:50
作者
Medina, Angel [1 ]
Schmidt-Heydt, Markus [2 ]
Cardenas-Chavez, Diana L. [3 ]
Parra, Roberto [3 ]
Geisen, Rolf [2 ]
Magan, Naresh [1 ]
机构
[1] Cranfield Univ, Cranfield Hlth, Appl Mycol Grp, ALCS, Cranfield MK43 0AL, Beds, England
[2] MaxRubner Inst, D-76131 Karlsruhe, Germany
[3] Inst Tecnol Monterrey, Ctr Agua Amer Latina & Caribe CAALCA, Campus Monterrey 64849, NL, Mexico
关键词
fumonisin genes; systems biology; water activity; temperature; predictive modelling; ternary relationships; ASPERGILLUS-FLAVUS; WATER ACTIVITY; AFLATOXIN PRODUCTION; TEMPERATURE; MYCOTOXINS; STRESS; FUM1; CONTAMINATION; BIOSYNTHESIS; PROLIFERATUM;
D O I
10.1098/rsif.2013.0320
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The objective of this study was to integrate data on the effect of water activity (a(w); 0.995-0.93) and temperature (20-35 degrees C) on activation of the biosynthetic FUM genes, growth and the mycotoxins fumonisin (FB1, FB2) by Fusarium verticillioides in vitro. The relative expression of nine biosynthetic cluster genes (FUM1, FUM7, FUM10, FUM11, FUM12, FUM13, FUM14, FUM16 and FUM19) in relation to the environmental factors was determined using a microarray analysis. The expression was related to growth and phenotypic FB1 and FB2 production. These data were used to develop a mixed-growth-associated product formation model and link this to a linear combination of the expression data for the nine genes. The model was then validated by examining datasets outside the model fitting conditions used (35 degrees C). The relationship between the key gene (FUM1) and other genes in the cluster (FUM11, FUM13, FUM9, FUM14) were examined in relation to a(w), temperature, FB1 and FB2 production by developing ternary diagrams of relative expression. This model is important in developing an integrated systems approach to develop prevention strategies to control fumonisin biosynthesis in staple food commodities and could also be used to predict the potential impact that climate change factors may have on toxin production.
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页数:12
相关论文
共 39 条
[1]   A systems approach to model the relationship between aflatoxin gene cluster expression, environmental factors, growth and toxin production by Aspergillus flavus [J].
Abdel-Hadi, Ahmed ;
Schmidt-Heydt, Markus ;
Parra, Roberto ;
Geisen, Rolf ;
Magan, Naresh .
JOURNAL OF THE ROYAL SOCIETY INTERFACE, 2012, 9 (69) :757-767
[2]   Control of Aflatoxin Production of Aspergillus flavus and Aspergillus parasiticus Using RNA Silencing Technology by Targeting aflD (nor-1) Gene [J].
Abdel-Hadi, Ahmed M. ;
Caley, Daniel P. ;
Carter, David R. F. ;
Magan, Naresh .
TOXINS, 2011, 3 (06) :647-659
[3]   FUMONISIN PRODUCTION IN CORN BY TOXIGENIC STRAINS OF FUSARIUM-MONILIFORME AND FUSARIUM-PROLIFERATUM [J].
BACON, CW ;
NELSON, PE .
JOURNAL OF FOOD PROTECTION, 1994, 57 (06) :514-521
[4]  
Bailly JD, 2005, REV MED VET-TOULOUSE, V156, P547
[5]   Dynamic of water activity in maize hybrids is crucial for fumonisin contamination in kernels [J].
Battilani, Paola ;
Formenti, Silvia ;
Ramponi, Cesare ;
Rossi, Vittorio .
JOURNAL OF CEREAL SCIENCE, 2011, 54 (03) :467-472
[7]   The Fusarium verticillioides FUM gene cluster encodes a Zn(II)2Cys6 protein that affects FUM gene expression and fumonisin production [J].
Brown, Daren W. ;
Butchko, Robert A. E. ;
Busman, Mark ;
Proctor, Robert H. .
EUKARYOTIC CELL, 2007, 6 (07) :1210-1218
[8]   Molecular biology of Fusarium mycotoxins [J].
Desjardins, A. E. ;
Proctor, R. H. .
INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY, 2007, 119 (1-2) :47-50
[9]   CONTROL OF GROWTH AND AFLATOXIN PRODUCTION OF ASPERGILLUS-FLAVUS UNDER MODIFIED ATMOSPHERE PACKAGING (MAP) CONDITIONS [J].
ELLIS, WO ;
SMITH, JP ;
SIMPSON, BK ;
KHANIZADEH, S ;
OLDHAM, JH .
FOOD MICROBIOLOGY, 1993, 10 (01) :9-21
[10]  
Formenti S, 2012, PHYTOPATHOL MEDITERR, V51, P247