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Different requirements for EDS1 and NDR1 by disease resistance genes define at least two R gene-mediated signaling pathways in Arabidopsis

机译:抗病基因对EDS1和NDR1的不同要求定义了拟南芥中至少两个R基因介导的信号通路

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摘要

The Arabidopsis genes EDS1 and NDR1 were shown previously by mutational analysis to encode essential components of race-specific disease resistance. Here, we examined the relative requirements for EDS1 and NDR1 by a broad spectrum of Resistance (R) genes present in three Arabidopsis accessions (Columbia, Landsberg-erecta, and Wassilewskija). We show that there is a strong requirement for EDS1 by a subset of R loci (RPP2, RPP4, RPP5, RPP21, and RPS4), conferring resistance to the biotrophic oomycete Peronospora parasitica, and to Pseudomonas bacteria expressing the avirulence gene avrRps4. The requirement for NDR1 by these EDS1-dependent R loci is either weak or not measurable. Conversely, three NDR1-dependent R loci, RPS2, RPM1, and RPS5, operate independently of EDS1. Another RPP locus, RPP8, exhibits no strong exclusive requirement for EDS1 or NDR1 in isolate-specific resistance to P. parasitica, although resistance is compromised weakly by eds1. Similarly, resistance conditioned by two EDS1-dependent RPP genes, RPP4 and RPP5, is impaired partially by ndr1, implicating a degree of pathway cross-talk. Our results provide compelling evidence for the preferential utilization of either signaling component by particular R genes and thus define at least two disease resistance pathways. The data also suggest that strong dependence on EDS1 or NDR1 is governed by R protein structural type rather than pathogen class.
机译:先前通过突变分析显示了拟南芥基因EDS1和NDR1,以编码种族特异性疾病抗性的基本成分。在这里,我们通过存在于三个拟南芥属(哥伦比亚,Landsberg-erecta和Wassilewskija)中的广谱抗性(R)基因检查了EDS1和NDR1的相对要求。我们显示,R基因的一个子集(RPP2,RPP4,RPP5,RPP21和RPS4)对EDS1的需求很高,从而赋予了对生营养性卵菌性寄生虫(Peronospora parasitica)的耐药性,并表达了 Pseudomonas 细菌。无毒基因 avrRps4 。这些依赖于 EDS1 R 基因座对 NDR1 的需求微弱或无法衡量。相反,三个依赖 NDR1 R 位点, RPS2 RPM1 RPS5 ,独立于 EDS1 操作。另一个 RPP 基因座 RPP8 EDS1 NDR1 的分离株特异性抗性没有强烈的排他性要求。 em> P。寄生虫,尽管 eds1 对抵抗力的影响很小。同样, RPS4 RPP5 这两个依赖于 EDS1 RPP 基因引起的抗性会部分受到的损害。 > ndr1 ,暗示一定程度的通路串扰。我们的研究结果为特定的 R 基因优先利用任一信号成分提供了令人信服的证据,从而确定了至少两种抗病途径。数据还表明,对 EDS1 NDR1 的强烈依赖性是由R蛋白的结构类型而非病原体类别决定的。

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