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MPG1是一个编码稻瘟病菌丝状真菌疏水蛋白的基因,参与表面识别。

MPG1, a gene encoding a fungal hydrophobin of Magnaporthe grisea, is involved in surface recognition.

作者信息

Beckerman J L, Ebbole D J

机构信息

Department of Plant Pathology and Microbiology, Texas A&M University, College Station 77843, USA.

出版信息

Mol Plant Microbe Interact. 1996 Aug;9(6):450-6. doi: 10.1094/mpmi-9-0450.

Abstract

Upon encountering a leaf surface, emergent germ tubes from conidia of the rice blast fungus, Magnaporthe grisea, form infection structures called appressoria that allow direct penetration of plant cells. The MPG1 gene encodes a fungal hydrophobin of M. grisea that is expressed during development of aerial hyphae, conidia, and appressoria. Deletion of MPG1 reduces the efficiency of appressorium formation. We found that yeast extract repressed MPG1 expression in vitro and inhibited appressorium development of the rice pathogen, strain Guy11. Appressorium formation of mpg1 mutants is rescued in trans by coinoculation with wild-type cells. MPG1 is required for efficient induction of appressoria in response to a host surface or highly hydrophobic artificial substrates. However, we identified several artificial substrates that can support efficient appressorium formation of mpg1 strains. This finding suggests that Mpg1p is not specifically required for appressorium formation, but is involved in the interaction with, and recognition of, the host surface. Additionally, a time window of competence to form appressoria was identified; the decision to form appressoria occurs approximately 6 to 8 h following conidial germination. After this critical time, cells are no longer able to form appressoria in response to inductive cues. These studies indicate that MPG1 hydrophobin is required for host recognition and that it acts as a morphogenetic signal for cellular differentiation.

摘要

当遇到叶片表面时,稻瘟病菌(Magnaporthe grisea)分生孢子萌发的芽管会形成称为附着胞的侵染结构,从而直接穿透植物细胞。MPG1基因编码稻瘟病菌的一种疏水蛋白,该蛋白在气生菌丝、分生孢子和附着胞的发育过程中表达。缺失MPG1会降低附着胞形成的效率。我们发现酵母提取物在体外抑制MPG1的表达,并抑制水稻病原菌Guy11菌株的附着胞发育。通过与野生型细胞共接种,mpg1突变体的附着胞形成得以挽救。MPG1是响应宿主表面或高度疏水的人工底物高效诱导附着胞形成所必需的。然而,我们鉴定出了几种能够支持mpg1菌株高效形成附着胞的人工底物。这一发现表明,Mpg1p并非附着胞形成所特需,但参与与宿主表面的相互作用和识别。此外,还确定了一个形成附着胞的感受态时间窗口;形成附着胞的决定大约在分生孢子萌发后6至8小时做出。在此关键时间之后,细胞不再能够响应诱导信号形成附着胞。这些研究表明,MPG1疏水蛋白是宿主识别所必需的,并且它作为细胞分化的形态发生信号发挥作用。

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