首页> 美国卫生研究院文献>PLoS Pathogens >The Lectin Receptor Kinase LecRK-I.9 Is a Novel Phytophthora Resistance Component and a Potential Host Target for a RXLR Effector
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The Lectin Receptor Kinase LecRK-I.9 Is a Novel Phytophthora Resistance Component and a Potential Host Target for a RXLR Effector

机译:凝集素受体激酶LecRK-I.9是一种新型的疫霉菌抗性成分和RXLR效应器的潜在宿主目标。

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摘要

In plants, an active defense against biotrophic pathogens is dependent on a functional continuum between the cell wall (CW) and the plasma membrane (PM). It is thus anticipated that proteins maintaining this continuum also function in defense. The legume-like lectin receptor kinase LecRK-I.9 is a putative mediator of CW-PM adhesions in Arabidopsis and is known to bind in vitro to the Phytophthora infestans RXLR-dEER effector IPI-O via a RGD cell attachment motif present in IPI-O. Here we show that LecRK-I.9 is associated with the plasma membrane, and that two T-DNA insertions lines deficient in LecRK-I.9 (lecrk-I.9) have a ‘gain-of-susceptibility’ phenotype specifically towards the oomycete Phytophthora brassicae. Accordingly, overexpression of LecRK-I.9 leads to enhanced resistance to P. brassicae. A similar ‘gain-of-susceptibility’ phenotype was observed in transgenic Arabidopsis lines expressing ipiO (35S-ipiO1). This phenocopy behavior was also observed with respect to other defense-related functions; lecrk-I.9 and 35S-ipiO1 were both disturbed in pathogen- and MAMP-triggered callose deposition. By site-directed mutagenesis, we demonstrated that the RGD cell attachment motif in IPI-O is not only essential for disrupting the CW-PM adhesions, but also for disease suppression. These results suggest that destabilizing the CW-PM continuum is one of the tactics used by Phytophthora to promote infection. As countermeasure the host may want to strengthen CW-PM adhesions and the novel Phytophthora resistance component LecRK-I.9 seems to function in this process.
机译:在植物中,对生物营养性病原体的主动防御取决于细胞壁(CW)和质膜(PM)之间的功能连续性。因此可以预见,维持该连续性的蛋白质也可以在防御中起作用。豆科植物样凝集素受体激酶LecRK-1.9是拟南芥中CW-PM粘附的推定介体,并且已知通过IPI中存在的RGD细胞附着基序在体外与疫霉菌RXLR-dEER效应物IPI-0结合。 -O。在这里,我们显示LecRK-I.9与质膜相关,并且有两个LecRK-I.9(lecrk-I.9)缺陷的T-DNA插入系具有“易感性”表型,具体针对卵菌疫霉。因此,LecRK-1.9的过度表达导致对芸苔假单胞菌的抗性增强。在表达ipiO(35S-ipiO1)的转基因拟南芥品系中观察到了相似的“易感性”表型。还观察到了与其他防御相关功能有关的这种表型行为。 lecrk-I.9和35S-ipiO1在病原体和MAMP触发的ose糖沉积中均受到干扰。通过定点诱变,我们证明IPI-O中的RGD细胞附着基序不仅对于破坏CW-PM粘附至关重要,而且对于疾病抑制也至关重要。这些结果表明破坏CW-PM连续体的稳定性是疫霉菌促进感染的策略之一。作为对策,宿主可能希望加强CW-PM的粘附力,而新型的疫霉菌抗性成分LecRK-1.9似乎在此过程中起作用。

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