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稻瘟病菌菌丝体发育、分生孢子形成和附着胞形成过程中PMK1-MAPK途径的作用复杂性及调控

Complexity of roles and regulation of the PMK1-MAPK pathway in mycelium development, conidiation and appressorium formation in Magnaporthe oryzae.

作者信息

Jin Qingchao, Li Chanyuan, Li Youzhi, Shang Jinjie, Li Debao, Chen Baoshan, Dong Haitao

机构信息

Institute of Biotechnology, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.

出版信息

Gene Expr Patterns. 2013 Jun-Jul;13(5-6):133-41. doi: 10.1016/j.gep.2013.02.003. Epub 2013 Feb 27.

Abstract

MST50, MST11, MST7, PMK1 and GAS1/GAS2 genes are the important components in the PMK1-MAPK signal transduction pathway in fungi. Mutants with deletion of these five genes of Magnaporthe oryzae, a pathogen of the rice blast, were constructed. A cDNA array containing 4108 unique genes of M. oryzae was developed and used to analyze the gene expression profiles of these mutants against the wild type to dissect the gene expression regulation networks responsible for conidiation and appressorium formation. With this approach, differentially regulated genes by these five components were identified. The vast majority of the regulated genes were mutant-specific, while only a small proportion were in common for all of the mutants, suggesting that each of these genes has its own regulon. Functional groups and expression patterns of the regulated genes showed that (1) gene members in the PMK1-MAPK pathway are associated with multiple signaling pathways; (2) the regulation of PMK1-mediated signaling pathways is very complex and likely involved in other signaling networks; (3) glucose metabolism and signals are required in mycelium development; and (4) appressorium formation likely shares the mechanisms responsible for sexual conjugation and meiosis, which is affected by carbohydrate metabolism.

摘要

MST50、MST11、MST7、PMK1和GAS1/GAS2基因是真菌中PMK1-MAPK信号转导途径的重要组成部分。构建了稻瘟病菌这一水稻稻瘟病病原体的这五个基因缺失的突变体。开发了一种包含稻瘟病菌4108个独特基因的cDNA阵列,并用于分析这些突变体相对于野生型的基因表达谱,以剖析负责分生孢子形成和附着胞形成的基因表达调控网络。通过这种方法,鉴定出了受这五个组分差异调控的基因。绝大多数受调控的基因是突变体特异性的,而所有突变体共有的只有一小部分,这表明这些基因中的每一个都有其自己的调控子。受调控基因的功能组和表达模式表明:(1)PMK1-MAPK途径中的基因成员与多个信号通路相关;(2)PMK1介导的信号通路的调控非常复杂,可能涉及其他信号网络;(3)葡萄糖代谢和信号在菌丝体发育中是必需的;(4)附着胞形成可能与负责有性接合和减数分裂的机制相同,而这受碳水化合物代谢影响。

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