Saskatoon Research Centre, Agriculture and Agri-Food Canada, Saskatoon, SK, Canada.
Plant Biotechnol J. 2015 Sep;13(7):983-92. doi: 10.1111/pbi.12341. Epub 2015 Feb 3.
Leucine-rich repeat receptor-like proteins (LRR-RLPs) are highly adaptable parts of the signalling apparatus for extracellular detection of plant pathogens. Resistance to blackleg disease of Brassica spp. caused by Leptosphaeria maculans is largely governed by host race-specific R-genes, including the LRR-RLP gene LepR3. The blackleg resistance gene Rlm2 was previously mapped to the same genetic interval as LepR3. In this study, the LepR3 locus of the Rlm2 Brassica napus line 'Glacier DH24287' was cloned, and B. napus transformants were analysed for recovery of the Rlm2 phenotype. Multiple B. napus, B. rapa and B. juncea lines were assessed for sequence variation at the locus. Rlm2 was found to be an allelic variant of the LepR3 LRR-RLP locus, conveying race-specific resistance to L. maculans isolates harbouring AvrLm2. Several defence-related LRR-RLPs have previously been shown to associate with the RLK SOBIR1 to facilitate defence signalling. Bimolecular fluorescence complementation (BiFC) and co-immunoprecipitation of RLM2-SOBIR1 studies revealed that RLM2 interacts with SOBIR1 of Arabidopsis thaliana when co-expressed in Nicotiana benthamiana. The interaction of RLM2 with AtSOBIR1 is suggestive of a conserved defence signalling pathway between B. napus and its close relative A. thaliana.
富含亮氨酸重复受体样蛋白(LRR-RLPs)是植物病原体细胞外检测信号装置的高度适应性部分。对黑胫病的抗性 Brassica spp. 由 Leptosphaeria maculans 引起,主要由宿主种特异性 R 基因控制,包括 LRR-RLP 基因 LepR3。黑胫病抗性基因 Rlm2 先前被映射到与 LepR3 相同的遗传区间。在这项研究中,克隆了 Rlm2 Brassica napus 系 'Glacier DH24287' 的 LepR3 基因座,并分析了 B. napus 转化体对 Rlm2 表型的恢复情况。对多个 B. napus、B. rapa 和 B. juncea 系在该基因座的序列变异进行了评估。发现 Rlm2 是 LepR3 LRR-RLP 基因座的等位变异体,赋予对携带 AvrLm2 的 L. maculans 分离物的特异性抗性。先前已经表明,几种与 RLK SOBIR1 相关的防御相关 LRR-RLPs 有助于防御信号传导。BiFC 和 RLM2-SOBIR1 的共免疫沉淀研究表明,当在 Nicotiana benthamiana 中共表达时,RLM2 与拟南芥的 SOBIR1 相互作用。RLM2 与 AtSOBIR1 的相互作用表明,B. napus 与其近缘种拟南芥之间存在保守的防御信号通路。