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FgHtf1 调控禾谷镰刀菌中空气菌丝和分生孢子梗形成的全局基因表达。

FgHtf1 Regulates Global Gene Expression towards Aerial Mycelium and Conidiophore Formation in the Cereal Fungal Pathogen Fusarium graminearum.

机构信息

State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Fujian Agriculture and Forestry University, Fuzhou, China.

Xiamen Greening Administration Center, Xiamen, China.

出版信息

Appl Environ Microbiol. 2020 Apr 17;86(9). doi: 10.1128/AEM.03024-19.

Abstract

The homeobox gene family of transcription factors (HTF) controls many developmental pathways and physiological processes in eukaryotes. We previously showed that a conserved HTF in the plant-pathogenic fungus , Htf1 (FgHtf1), regulates conidium morphology in that organism. This study investigated the mechanism of FgHtf1-mediated regulation and identified putative FgHtf1 target genes by a chromatin immunoprecipitation assay combined with parallel DNA sequencing (ChIP-seq) and RNA sequencing. A total of 186 potential binding peaks, including 142 genes directly regulated by FgHtf1, were identified. Subsequent motif prediction analysis identified two DNA-binding motifs, TAAT and CTTGT. Among the FgHtf1 target genes were itself and several important conidiation-related genes (e.g., ), the chitin synthase pathway genes, and the aurofusarin biosynthetic pathway genes. In addition, FgHtf1 may regulate the cAMP-protein kinase A (PKA)-Msn2/4 and Ca-calcineurin-Crz1 pathways. Taken together, these results suggest that, in addition to autoregulation, FgHtf1 also controls global gene expression and promotes a shift to aerial growth and conidiation in by activation of or other conidiation-related genes. The homeobox gene family of transcription factors is known to be involved in the development and conidiation of filamentous fungi. However, the regulatory mechanisms and downstream targets of homeobox genes remain unclear. FgHtf1 is a homeobox transcription factor that is required for phialide development and conidiogenesis in the plant pathogen In this study, we identified FgHtf1-controlled target genes and binding motifs. We found that, besides autoregulation, FgHtf1 also controls global gene expression and promotes conidiation in by activation of genes necessary for aerial growth, , and other conidiation-related genes.

摘要

转录因子的同源盒基因家族(HTF)控制真核生物的许多发育途径和生理过程。我们之前曾表明,植物病原真菌中的保守 HTF,Htf1(FgHtf1),调节该生物体分生孢子的形态。本研究通过染色质免疫沉淀测定(ChIP)结合平行 DNA 测序(ChIP-seq)和 RNA 测序,研究了 FgHtf1 介导的调节机制,并鉴定了可能的 FgHtf1 靶基因。总共鉴定出 186 个潜在的结合峰,包括 142 个直接受 FgHtf1 调控的基因。随后的基序预测分析鉴定出两个 DNA 结合基序,TAAT 和 CTTGT。在 FgHtf1 靶基因中,除了 FgHtf1 自身和几个重要的分生孢子相关基因(如)、几丁质合成途径基因和金核黄素生物合成途径基因外,还包括 FgHtf1 可能调节 cAMP-蛋白激酶 A(PKA)-Msn2/4 和 Ca-钙调神经磷酸酶-Crz1 途径。总之,这些结果表明,除了自身调控外,FgHtf1 还通过激活或其他分生孢子相关基因,控制的全局基因表达,并促进向气生生长和分生孢子形成的转变。转录因子的同源盒基因家族已知参与丝状真菌的发育和分生孢子形成。然而,同源盒基因的调控机制和下游靶标仍不清楚。FgHtf1 是一种同源盒转录因子,是植物病原体分生孢子发生和分生孢子形成所必需的。在本研究中,我们鉴定了 FgHtf1 控制的靶基因和结合基序。我们发现,除了自身调控外,FgHtf1 还通过激活对气生生长、必需的基因,以及其他与分生孢子形成相关的基因,控制的全局基因表达,并促进其分生孢子的形成。

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