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假定转录因子 MYT2 调节子囊菌禾谷镰孢的子囊壳大小。

A putative transcription factor MYT2 regulates perithecium size in the ascomycete Gibberella zeae.

机构信息

Department of Agricultural Biotechnology and the Center for Fungal Pathogenesis, Seoul National University, Seoul, Republic of Korea.

出版信息

PLoS One. 2012;7(5):e37859. doi: 10.1371/journal.pone.0037859. Epub 2012 May 23.

Abstract

The homothallic ascomycete fungus Gibberella zeae is a plant pathogen that is found worldwide, causing Fusarium head blight (FHB) in cereal crops and ear rot of maize. Ascospores formed in fruiting bodies (i.e., perithecia) are hypothesized to be the primary inocula for FHB disease. Perithecium development is a complex cellular differentiation process controlled by many developmentally regulated genes. In this study, we selected a previously reported putative transcription factor containing the Myb DNA-binding domain MYT2 for an in-depth study on sexual development. The deletion of MYT2 resulted in a larger perithecium, while its overexpression resulted in a smaller perithecium when compared to the wild-type strain. These data suggest that MYT2 regulates perithecium size differentiation. MYT2 overexpression affected pleiotropic phenotypes including vegetative growth, conidia production, virulence, and mycotoxin production. Nuclear localization of the MYT2 protein supports its role as a transcriptional regulator. Transcriptional analyses of trichothecene synthetic genes suggest that MYT2 additionally functions as a suppressor for trichothecene production. This is the first study characterizing a transcription factor required for perithecium size differentiation in G. zeae, and it provides a novel angle for understanding sexual development in filamentous fungi.

摘要

同质结合的子囊菌禾谷镰刀菌是一种植物病原体,分布于世界各地,可引起谷类作物的赤霉病(FHB)和玉米穗腐。产孢结构(即子囊壳)中形成的分生孢子被认为是 FHB 疾病的主要接种体。子囊壳的发育是一个复杂的细胞分化过程,由许多发育调控基因控制。在这项研究中,我们选择了先前报道的一个含有 Myb DNA 结合域 MYT2 的假定转录因子,对其进行了深入研究。与野生型菌株相比,myt2 缺失导致子囊壳更大,而过表达则导致子囊壳更小。这些数据表明,MYT2 调节子囊壳大小的分化。MYT2 的过表达影响了多种表型,包括营养生长、分生孢子的产生、毒力和产毒素。MYT2 蛋白的核定位支持其作为转录调节因子的作用。对三萜合成基因的转录分析表明,MYT2 还可以作为三萜产生的抑制剂。这是首次描述禾谷镰刀菌中一个参与子囊壳大小分化的转录因子,为理解丝状真菌的有性发育提供了一个新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5daa/3359310/dc8efc6d31c3/pone.0037859.g001.jpg

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