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控制植物根部感染马铃薯胞囊线虫的抗性基因Hero在番茄叶片中的功能。

Functionality of resistance gene Hero, which controls plant root-infecting potato cyst nematodes, in leaves of tomato.

作者信息

Poch H L Cabrera, López R H Manzanilla, Kanyuka K

机构信息

Plant-Pathogen Interactions Division, Rothamsted Research, Harpenden, Hertfordshire AL5 2JQ, UK.

出版信息

Plant Cell Environ. 2006 Jul;29(7):1372-8. doi: 10.1111/j.1365-3040.2006.01517.x.

Abstract

The expression of host genomes is modified locally by root endoparasitic nematode secretions to induce the development of complex cellular structures referred as feeding sites. In compatible interactions, the feeding sites provide the environment and nutrients for the completion of the nematode's life cycle, whereas in an incompatible (resistant) interaction, the host immune system triggers a plant cell death programme, often in the form of a hypersensitive reaction, which restricts nematode reproduction. These processes have been studied in great detail in organ tissues normally infected by these nematodes: the roots. Here we show that host leaves can support a similar set of programmed developmental events in the potato cyst nematode Globodera rostochiensis life cycle that are typical of the root-invading nematodes. We also show that a gene-for-gene type specific disease resistance that is effective against potato cyst nematodes (PCN) in roots also operates in leaves: the expression of the resistance (R) gene Hero and members of its gene family in leaves correlates with the elicitation of a hypersensitive response only during the incompatible interaction. These findings, and the ability to isolate RNA from relevant parasitic stages of the nematode, may have significant implications for the identification of nematode factors involved in incompatible interactions.

摘要

根内寄生线虫的分泌物会对宿主基因组的表达进行局部修饰,以诱导形成被称为取食位点的复杂细胞结构。在亲和互作中,取食位点为线虫完成生命周期提供环境和营养,而在不亲和(抗性)互作中,宿主免疫系统会触发植物细胞死亡程序,通常表现为过敏反应,从而限制线虫繁殖。这些过程在通常受这些线虫感染的器官组织——根中,已经得到了详细研究。在此,我们表明宿主叶片能够支持马铃薯金线虫(Globodera rostochiensis)生命周期中类似的一系列程序性发育事件,这些事件是典型的根侵入线虫所具有的。我们还表明,在根中对马铃薯金线虫(PCN)有效的基因对基因类型的特异性抗病性在叶片中也起作用:抗性(R)基因Hero及其基因家族成员在叶片中的表达仅在不亲和互作期间与过敏反应的引发相关。这些发现,以及从线虫相关寄生阶段分离RNA的能力,可能对鉴定参与不亲和互作的线虫因子具有重要意义。

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