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Msp40 effector of root-knot nematode manipulates plant immunity to facilitate parasitism

机译:Msp40根结线虫效应子可操纵植物免疫力促进寄生

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摘要

Root-knot nematodes (RKNs) are obligate biotrophic parasites that invade plant roots and engage in prolonged and intimate relationships with their hosts. Nematode secretions, some of which have immunosuppressing activity, play essential roles in successful parasitism; however, their mechanisms of action remain largely unknown. Here, we show that the RKN-specific gene MiMsp40, cloned from Meloidogyne incognita, is expressed exclusively in subventral oesophageal gland cells and is strongly upregulated during early parasitic stages. Arabidopsis plants overexpressing MiMsp40 were more susceptible to nematode infection than were wild type plants. Conversely, the host-derived MiMsp40 RNAi suppressed nematode parasitism and/or reproduction. Moreover, overexpression of MiMsp40 in plants suppressed the deposition of callose and the expression of marker genes for bacterial elicitor elf18-triggered immunity. Transient expression of MiMsp40 prevented Bax-triggered defence-related programmed cell death. Co-agroinfiltration assays indicated that MiMsp40 also suppressed macroscopic cell death triggered by MAPK cascades or by the ETI cognate elicitors R3a/Avr3a. Together, these results demonstrate that MiMsp40 is a novel Meloidogyne-specific effector that is injected into plant cells by early parasitic stages of the nematode and that plays a role in suppressing PTI and/or ETI signals to facilitate RKN parasitism.
机译:根结线虫(RKN)是专性的生物营养性寄生虫,可入侵植物的根部并与其宿主保持长期密切的关系。线虫分泌物,其中一些具有免疫抑制活性,在成功的寄生虫中起着重要的作用。但是,它们的作用机理仍然未知。在这里,我们表明,从根结线虫(Meloidogyne incognita)克隆的RKN特异性基因MiMsp40仅在腹膜下食管腺细胞中表达,并且在寄生早期会强烈上调。与野生型植物相比,过量表达MiMsp40的拟南芥植物更容易受到线虫感染。相反,宿主来源的MiMsp40 RNAi可抑制线虫寄生虫和/或繁殖。此外,MiMsp40在植物中的过表达抑制了ose质的沉积和细菌激发子elf18触发的免疫的标记基因的表达。 MiMsp40的瞬时表达可防止Bax触发的与防御相关的程序性细胞死亡。农杆菌共渗试验表明,MiMsp40还抑制了由MAPK级联反应或ETI同源激发子R3a / Avr3a触发的宏观细胞死亡。总之,这些结果表明,MiMsp40是一种新型的根结线虫特异性效应物,其通过线虫的早期寄生虫阶段注入植物细胞,并在抑制PTI和/或ETI信号以促进RKN寄生中起作用。

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