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大豆品种 V94-5152 中的一个抗菜豆黄花叶病毒基因被定位到 Rsv4 位点,该基因赋予了大豆对菜豆黄花叶病毒的抗性。

A bean common mosaic virus-resistance gene in the soybean variant V94-5152 was mapped to the Rsv4 locus conferring resistance to soybean mosaic virus.

机构信息

School of Life Sciences, Nanjing University, 163 XianLin Avenue, Nanjing, 210023, China.

出版信息

Theor Appl Genet. 2021 Aug;134(8):2367-2377. doi: 10.1007/s00122-021-03829-8. Epub 2021 May 16.

DOI:10.1007/s00122-021-03829-8
PMID:33997918
Abstract

In the soybean variant V94-5152, a BCMV-resistance gene was mapped near to the region of SMV-resistance Rsv4 locus, raising a possibility that V94-5152 may rely on Rsv4 locus to resist against both SMV and BCMV. Both Soybean mosaic virus (SMV) and Bean common mosaic virus (BCMV) can induce soybean mosaic diseases, but few studies have explored soybean resistance against BCMV so far. In this study, V94-5152, a soybean variant resistant to BCMV and SMV, was crossed with a susceptible cultivar, Williams 82 to map the resistance gene. By inoculating 292 F individuals with a BCMV isolate HZZB011, a segregation ratio of 3 resistant: 1 susceptible was observed, suggesting that V94-5152 possesses a single-dominant resistance gene against BCMV-HZZB011. Bulk segregation analysis (BSA) then revealed that the resistance gene is closely linked to BARCSOYSSR_02_0617, a simple sequence repeat (SSR) marker on chromosome 2. Genotyping neighboring SSR markers among the 292 F individuals enabled us to draw a genetic linkage map, which indicated that the BCMV-resistance gene is located 0.2 cM downstream of BARCSOYSSR_02_0617. Amplification and sequencing ten candidate genes (Glyma02g121300 to Glyma02g122200) around this marker then revealed four genes containing nonsynonymous changes or indels. Also, this location is near to the recently cloned SMV-resistance Rsv4 locus from the cultivar Peking. By obtaining ten more sequences of Rsv4 locus from cultivated and wild soybean materials, we further investigated the variation and evolutionary patterns of this virus-resistance locus. It was evident that positive selections had been acting on this locus, with one critical amino acid change (R55P) shared by all resistance soybeans tested.

摘要

在大豆变异体 V94-5152 中,一个 BCMV 抗性基因被定位在 SMV 抗性基因 Rsv4 位点附近,这增加了 V94-5152 可能依赖 Rsv4 位点来抵抗 SMV 和 BCMV 的可能性。大豆花叶病毒(SMV)和豆科普通花叶病毒(BCMV)都可以引起大豆花叶病,但到目前为止,很少有研究探索大豆对 BCMV 的抗性。在这项研究中,抗 BCMV 和 SMV 的大豆变异体 V94-5152 与易感品种 Williams 82 杂交,以定位抗性基因。通过用 BCMV 分离物 HZZB011 接种 292 个 F 个体,观察到 3 个抗性:1 个敏感的分离比,表明 V94-5152 对 BCMV-HZZB011 具有单显性抗性基因。随后的 bulk segregation analysis (BSA) 显示,该抗性基因与位于第 2 号染色体上的 BARCSOYSSR_02_0617 紧密连锁,这是一个简单序列重复(SSR)标记。在 292 个 F 个体中对邻近 SSR 标记进行基因分型,使我们能够绘制遗传连锁图谱,该图谱表明 BCMV 抗性基因位于 BARCSOYSSR_02_0617 的下游 0.2 cM 处。扩增和测序该标记周围的十个候选基因(Glyma02g121300 到 Glyma02g122200),发现四个基因包含非同义变化或插入缺失。此外,该位置靠近从品种 Peking 克隆的最近的 SMV 抗性基因 Rsv4。从栽培和野生大豆材料中获得十个更多的 Rsv4 基因座序列,我们进一步研究了这个病毒抗性基因座的变异和进化模式。显然,该基因座受到了正选择的作用,所有抗性大豆品种都共享一个关键的氨基酸变化(R55P)。

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