首页> 外文期刊>Genome Biology >Transcriptomic analysis reveals tomato genes whose expression is induced specifically during effector-triggered immunity and identifies the Epk1 protein kinase which is required for the host response to three bacterial effector proteins
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Transcriptomic analysis reveals tomato genes whose expression is induced specifically during effector-triggered immunity and identifies the Epk1 protein kinase which is required for the host response to three bacterial effector proteins

机译:转录组分析揭示了番茄基因,其表达在效应子触发的免疫过程中被特异性诱导,并鉴定了宿主对三种细菌效应蛋白的应答所必需的Epk1蛋白激酶

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摘要

Background: Plants have two related immune systems to defend themselves against pathogen attack. Initially, pattern-triggered immunity is activated upon recognition of microbe-associated molecular patterns by pattern recognition receptors. Pathogenic bacteria deliver effector proteins into the plant cell that interfere with this immune response and promote disease. However, some plants express resistance proteins that detect the presence of specific effectors leading to a robust defense response referred to as effector-triggered immunity. The interaction of tomato with Pseudomonas syringae pv. tomato is an established model system for understanding the molecular basis of these plant immune responses.
机译:背景:植物具有两个相关的免疫系统来防御病原体的侵袭。最初,通过模式识别受体识别与微生物相关的分子模式后,激活了模式触发的免疫力。致病细菌将效应蛋白传送到植物细胞中,从而干扰这种免疫反应并促进疾病。但是,一些植物表达的抗性蛋白会检测特定效应子的存在,从而导致产生强大的防御反应,称为效应子触发的免疫。番茄与丁香假单胞菌PV的相互作用。番茄是一个建立的模型系统,用于了解这些植物免疫反应的分子基础。

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