首页> 外文期刊>Annual Review of Phytopathology >MOLECULAR INTERACTIONS BETWEEN TOMATO AND THE LEAF MOLD PATHOGEN CLADOSPORIUM FULVUM
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MOLECULAR INTERACTIONS BETWEEN TOMATO AND THE LEAF MOLD PATHOGEN CLADOSPORIUM FULVUM

机译:番茄与叶霉病致病性番茄鳞茎之间的分子相互作用

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摘要

The interaction between tomato and the leaf mold pathogen Cladosporium fulvum is controlled in a gene-for-gene manner. This interaction has provided useful insights to the molecular basis of recognition specificity in plant disease resistance (R) proteins, disease resistance (R) gene evolution, R-protein mediated signaling, and cellular responses to pathogen attack. Tomato Cf genes encode type I membrane-associated receptor-like proteins (RLPs) comprised predominantly of extracellular leucine-rich repeats (eLRRs) and which are anchored in the plasma membrane. Cf proteins recognize fungal avirulence (Avr) peptides secreted into the leaf apoplast during infection. A direct interaction of Cf proteins with their cognate Avr proteins has not been demonstrated and the molecular mechanism of Avr protein perception is not known. Following ligand perception Cf proteins trigger a hypersensitive response (HR) and the arrest of pathogen development. Cf proteins lack an obvious signaling domain, suggesting that defense response activation is mediated through interactions with other partners. Avr protein perception results in the rapid accumulation of active oxygen species (AOS), changes in cellular ion fluxes, activation of protein kinase cascades, changes in gene expression and, possibly, targeted protein degradation. Here we review our current understanding of Cf-mediated responses in resistance to C. fulvum.
机译:番茄与叶霉病原体枝叶烟草之间的相互作用以基因对基因的方式控制。这种相互作用为植物抗病(R)蛋白,抗病(R)基因进化,R蛋白介导的信号传导以及对病原体侵袭的细胞应答的识别特异性的分子基础提供了有用的见识。番茄Cf基因编码I型膜相关受体样蛋白(RLP),主要由富含细胞亮氨酸的重复序列(eLRR)组成,并锚定在质膜中。 Cf蛋白识别感染过程中分泌到叶片质外体中的真菌无毒力(Avr)肽。 Cf蛋白与其相关的Avr蛋白之间没有直接的相互作用,Avr蛋白感知的分子机制尚不清楚。配体感知后,Cf蛋白触发过敏反应(HR)和病原体发育的停止。 Cf蛋白缺乏明显的信号结构域,表明防御反应激活是通过与其他伴侣的相互作用介导的。 Avr蛋白的感知导致活性氧(AOS)的快速积累,细胞离子通量的变化,蛋白激酶级联的激活,基因表达的变化以及可能的目标蛋白降解。在这里,我们回顾我们目前对Cf介导的抗黄腐病的反应的理解。

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