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精细定位豇豆(Vigna unguiculata)中新的锈病抗性基因 Ruv2 到富含 NBS 型基因的 193kb 区域。

Fine mapping Ruv2, a new rust resistance gene in cowpea (Vigna unguiculata), to a 193-kb region enriched with NBS-type genes.

机构信息

Institute of Vegetables, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, People's Republic of China.

State Key Laboratory Breeding Base for Sustainable Control of Plant Pest and Disease, Zhejiang Academy of Agricultural Sciences, Hangzhou, 310021, People's Republic of China.

出版信息

Theor Appl Genet. 2018 Dec;131(12):2709-2718. doi: 10.1007/s00122-018-3185-4. Epub 2018 Sep 17.

Abstract

A new rust resistance gene Ruv2 was fine-mapped in cowpea to a 193-kb region on chromosome 2, which harboured 23 predicted gene models enriched with NBS-type genes. ZN016 is a landrace vegetable cowpea highly resistant to rust. Two previous studies using mixed-spores inoculation suggested different modes of inheritance of rust resistance in ZN016. In this study, we initially developed a detached leaf assay with a purified single-rust isolate (Auv-LS). Using this approach, we assessed the inheritance of rust resistance in a recombinant inbred line (RIL) population and an F population, both derived from the cross of "ZN016" and the susceptible cultivar "Zhijiang282." A single dominant gene mode against Auv-LS was revealed in both populations. QTL mapping showed that this gene was coincident with the Ruv2 locus on LG7, one of the three resistance QTLs previously mapped based on mixed-spores inoculation data. Therefore, Ruv2 was considered as specifically against the rust isolate Auv-LS. Through an analysis of the RIL recombinants at Ruv2, we fine-mapped the gene to an ~ 0.45-cM interval between SNP markers 2_09656 and 2_00973, which corresponded to an ~ 193-kb region on chromosome 2 that harboured 23 predicted gene models enriched with NBS-type genes. Re-sequencing of the two parents revealed polymorphisms in four genes predictively to cause substantial protein structural changes, rendering them valuable candidate genes for future validation. Cross-species syntenic analysis indicated that Ruv2 may represent a novel rust resistance gene in food legumes. A cleaved amplified polymorphic sequences marker tightly linked to Ruv2 was developed to facilitate breeding. This work establishes a basis for map-based cloning of Ruv2 and breeding for rust resistance in cowpea and other legume crops.

摘要

一个新的锈病抗性基因 Ruv2 被精细定位到豇豆 2 号染色体上的 193-kb 区域,该区域包含 23 个预测的基因模型,富含 NBS 型基因。ZN016 是一种高度抗锈的陆地蔬菜豇豆品种。之前有两项利用混合孢子接种的研究表明,ZN016 中锈病抗性的遗传方式不同。在这项研究中,我们最初开发了一种带有纯化单锈分离物(Auv-LS)的离体叶片测定方法。使用这种方法,我们评估了重组自交系(RIL)群体和 F1 群体中锈病抗性的遗传,这两个群体都是由“ZN016”和易感品种“Zhijiang282”杂交产生的。在这两个群体中,均揭示了一种针对 Auv-LS 的单显性基因模式。QTL 作图表明,该基因与 LG7 上的 Ruv2 位点重合,这是之前基于混合孢子接种数据映射的三个抗性 QTL 之一。因此,Ruv2 被认为是专门针对锈菌分离物 Auv-LS 的。通过对 Ruv2 处的 RIL 重组体进行分析,我们将该基因精细定位到 SNP 标记 2_09656 和 2_00973 之间的约 0.45-cM 区间内,该区间对应于 2 号染色体上的约 193-kb 区域,该区域包含 23 个预测的基因模型,富含 NBS 型基因。对两个亲本的重测序揭示了四个预测会引起大量蛋白质结构变化的基因的多态性,使它们成为未来验证的有价值的候选基因。种间同源分析表明,Ruv2 可能是豆科作物中一个新的锈病抗性基因。开发了一个与 Ruv2 紧密连锁的Cleaved amplified polymorphic sequences 标记,以方便育种。这项工作为 Ruv2 的图谱克隆和豇豆及其他豆科作物的锈病抗性育种奠定了基础。

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