The Transcriptional Regulator Hbx1 Affects the Expression of Thousands of Genes in the Aflatoxin-Producing FungusAspergillus flavus

分生孢子 生物 黄曲霉 基因 调节基因 黄曲霉毒素 转录组 遗传学 巢状曲霉 粗脉脉孢菌 基因表达调控 基因表达 突变体 微生物学 生物技术
作者
Jeffrey W. Cary,Sarah Entwistle,Timothy Satterlee,Brian M. Mack,Matthew K. Gilbert,Perng‐Kuang Chang,Leslie L. Scharfenstein,Yanbin Yin,Ana M. Calvo
出处
期刊:G3: Genes, Genomes, Genetics [Genetics Society of America]
卷期号:9 (1): 167-178 被引量:17
标识
DOI:10.1534/g3.118.200870
摘要

Abstract In filamentous fungi, homeobox proteins are conserved transcriptional regulators described to control conidiogenesis and fruiting body formation. Eight homeobox (hbx) genes are found in the genome of the aflatoxin-producing ascomycete, Aspergillus flavus. While loss-of-function of seven of the eight genes had little to no effect on fungal growth and development, disruption of hbx1, resulted in aconidial colonies and lack of sclerotial production. Furthermore, the hbx1 mutant was unable to produce aflatoxins B1 and B2, cyclopiazonic acid and aflatrem. In the present study, hbx1 transcriptome analysis revealed that hbx1 has a broad effect on A. flavus gene expression, and the effect of hbx1 increases overtime, impacting more than five thousand protein-coding genes. Among the affected genes, those in the category of secondary metabolism (SM), followed by that of cellular transport, were the most affected. Specifically, regarding the effect of hbx1 on SM, we found that genes in 44 SM gene clusters where upregulated while 49 were downregulated in the absence of hbx1, including genes in the SM clusters responsible for the synthesis of asparasone, piperazine and aflavarin, all known to be associated with sclerotia. In addition, our study revealed that hbx1 affects the expression of other transcription factor genes involved in development, including the conidiation central regulatory pathway and flb genes.

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