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Interactions between water activity and temperature on the Aspergillus flavus transcriptome and aflatoxin B-1 production

机译:水活性与温度与曲霉素转录组和黄曲霉毒素B-1生产的相互作用

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摘要

Effects of Aspergillus flavus colonization of maize kernels under different water activities (a(w); 0.99 and 0.91) and temperatures (30, 37 degrees C) on (a) aflatoxin B-1 (AFB(1)) production and (b) the transcriptome using RNAseq were examined. There was no significant difference (p = 0.05) in AFB(1) production at 30 and 37 degrees C and 0.99 a(w). However, there was a significant (p = 0.05) increase in AFB(1) at 0.91 aw at 37 degrees C when compared with 30 degrees C/0.99 a(w). Environmental stress effects using gene ontology enrichment analysis of the RNA-seq results for increasing temperature at 0.99 and 0.91 a(w) showed differential expression of 2224 and 481 genes, respectively. With decreasing water availability, 4307 were affected at 30 degrees C and 702 genes at 37 degrees C. Increasing temperature from 30 to 37 degrees C at both a(w) levels resulted in 12 biological processes being upregulated and 9 significantly down regulated. Decreasing a(w) at both a(w) temperatures resulted in 22 biological processes significantly upregulated and 25 downregulated. The interacting environmental factors influenced functioning of the secondary metabolite gene clusters for aflatoxins and cyclopiazonic acid (CPA). An elevated number of genes were co-regulated by both a, and temperature. An interaction effect for 4 of the 25 AFB(1) genes, including regulatory and transcription activators occurred. For CPA, all 5 biosynthetic genes were affected by a(w) stress, regardless of temperature. The molecular regulation of A. flavus in maize is discussed.
机译:玉米籽粒在不同水中活性下玉米籽粒定子的影响(A(w); 0.99和0.91)和(a)黄曲霉毒素B-1(AFB(1))生产和(b)的温度(30,37℃)检查使用RNASEQ的转录组。在30和37摄氏度的AFB(1)产生中没有显着差异(p = 0.05)和0.99a(w)。然而,与30℃/ 0.99a(W)相比,在37摄氏度下在37摄氏度下,在0.91W时,在0.91W时,存在显着(p = 0.05)。利用基因本体学富集的环境应力效应RNA-SEQ的浓缩分析在0.99和0.91A(w)时的温度下降,分别显示出2224和481个基因的差异表达。随着水可用性的降低,4307在37℃下以30摄氏度和702个基因的影响。在(W)水平的30至37℃下,将温度提高12至37℃,导致12个生物过程上调,9种显着下降9。在(W)温度下减小(W)导致22个生物过程显着上调,25个下调。相互作用的环境因素影响二羟肽和环唑(CPA)的次生代谢物基因簇的功能。通过A和温度共调节升高的基因数。发生25个AFB(1)个基因的4种的相互作用效果,包括调节和转录激活剂。对于CPA,无论温度如何,所有5个生物合成基因受到(w)应激的影响。讨论了玉米的S分子调控。

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