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拟南芥霜霉病抗性基因RPP13-Nd的功能独立于NDR1和EDS1,且不需要水杨酸的积累。

The Arabidopsis downy mildew resistance gene, RPP13-Nd, functions independently of NDR1 and EDS1 and does not require the accumulation of salicylic acid.

作者信息

Bittner-Eddy P D, Beynon J L

机构信息

Horticulture Research International, Wellesbourne, Warwick, UK.

出版信息

Mol Plant Microbe Interact. 2001 Mar;14(3):416-21. doi: 10.1094/MPMI.2001.14.3.416.

Abstract

RPP13-Nd-mediated resistance prevents parasitism by five isolates of Peronospora parasitica (At) in a transgenic Arabidopsis. Columbia background. We tested the effect of a number of known disease resistance mutations on the RPP13-Nd function and found that resistance remained unaltered in plants carrying mutations in either EDS1 or NDR1 and in double ndr1-1/eds1-2 mutant lines. Furthermore, we found that pbs2, pad4-1, npr1-1, and rps5-1, which compromise resistance to a number of P. parasitica (At) isolates, had no affect on RPP13-Nd function. In addition, RPP13-Nd-mediated resistance remained unchanged in a background of salicylic acid depletion (nahG). We conclude that RPP13-Nd is the first Arabidopsis R gene product reported to act via a novel signaling pathway that is independent of salicylic acid-mediated responses and is completely independent of NDR1 and EDS1.

摘要

RPP13-Nd介导的抗性可防止寄生霜霉(拟南芥专化型)的五个分离株在转基因拟南芥(哥伦比亚生态型背景)中寄生。我们测试了一些已知的抗病突变对RPP13-Nd功能的影响,发现携带EDS1或NDR1突变的植物以及ndr1-1/eds1-2双突变体品系中的抗性保持不变。此外,我们发现,对多个寄生霜霉(拟南芥专化型)分离株的抗性有影响的pbs2、pad4-1、npr1-1和rps5-1对RPP13-Nd功能没有影响。另外,在水杨酸缺失(nahG)的背景下,RPP13-Nd介导的抗性保持不变。我们得出结论,RPP13-Nd是首个被报道通过一条独立于水杨酸介导的反应且完全独立于NDR1和EDS1的新信号通路发挥作用的拟南芥R基因产物。

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