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气候变化对黄曲霉和黄曲霉毒素 B1 产生的影响。

Effect of climate change on Aspergillus flavus and aflatoxin B1 production.

机构信息

Applied Mycology Group, Cranfield Soil and AgriFood Institute, Cranfield University Cranfield, Bedford, UK.

出版信息

Front Microbiol. 2014 Jul 22;5:348. doi: 10.3389/fmicb.2014.00348. eCollection 2014.

Abstract

This review considers the available information on the potential impact of key environmental factors and their interactions on the molecular ecology, growth and aflatoxin production by Aspergillus flavus in vitro and in maize grain. The recent studies which have been carried out to examine the impact of water activity × temperature on aflatoxin biosynthesis and phenotypic aflatoxin production are examined. These have shown that there is a direct relationship between the relative expression of key regulatory and structural genes under different environmental conditions which correlate directly with aflatoxin B1 production. A model has been developed to integrate the relative expression of 10 biosynthetic genes in the pathway, growth and aflatoxin B1 (AFB1) production which was validated under elevated temperature and water stress conditions. The effect of interacting conditions of aw × temperature × elevated CO2 (2 × and 3 × existing levels) are detailed for the first time. This suggests that while such interacting environmental conditions have little effect on growth they do have a significant impact on aflatoxin biosynthetic gene expression (structural aflD and regulatory aflR genes) and can significantly stimulate the production of AFB1. While the individual factors alone have an impact, it is the combined effect of these three abiotic factors which have an impact on mycotoxin production. This approach provides data which is necessary to help predict the real impacts of climate change on mycotoxigenic fungi.

摘要

这篇综述考虑了环境因素及其相互作用对黄曲霉体外分子生态学、生长和黄曲霉毒素产生的潜在影响的现有信息,以及对玉米籽粒中黄曲霉毒素产生的潜在影响。审查了最近为研究水分活度×温度对黄曲霉生物合成和表型黄曲霉毒素产生的影响而进行的研究。这些研究表明,在不同环境条件下,关键调控和结构基因的相对表达之间存在直接关系,这与黄曲霉毒素 B1 的产生直接相关。已经开发了一种模型来整合该途径中 10 个生物合成基因的相对表达、生长和黄曲霉毒素 B1(AFB1)的产生,该模型在高温和水分胁迫条件下得到了验证。首次详细研究了 aw×温度×升高的 CO2(现有水平的 2 倍和 3 倍)相互作用条件的影响。这表明,虽然这些相互作用的环境条件对生长影响不大,但它们对黄曲霉生物合成基因表达(结构 aflD 和调控 aflR 基因)有显著影响,并能显著刺激 AFB1 的产生。虽然单独的因素有影响,但正是这三个非生物因素的综合影响对霉菌毒素的产生有影响。这种方法提供了必要的数据,可以帮助预测气候变化对产毒真菌的实际影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4676/4106010/60522134fe0c/fmicb-05-00348-g0001.jpg

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