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利用下一代测序技术快速开发分子标记,并与一个赋予羽扇豆( Lupinus angustifolius L.)抗茎点枯病的基因相关联,用于羽扇豆育种中的标记辅助选择。

Rapid development of molecular markers by next-generation sequencing linked to a gene conferring phomopsis stem blight disease resistance for marker-assisted selection in lupin (Lupinus angustifolius L.) breeding.

机构信息

Department of Agriculture and Food, Western Australia, 3 Baron-Hay Court, South Perth, WA 6151, Australia.

出版信息

Theor Appl Genet. 2013 Feb;126(2):511-22. doi: 10.1007/s00122-012-1997-1. Epub 2012 Oct 20.

Abstract

Selection for phomopsis stem blight disease (PSB) resistance is one of the key objectives in lupin (Lupinus angustifolius L.) breeding programs. A cross was made between cultivar Tanjil (resistant to PSB) and Unicrop (susceptible). The progeny was advanced into F(8) recombinant inbred lines (RILs). The RIL population was phenotyped for PSB disease resistance. Twenty plants from the RIL population representing disease resistance and susceptibility was subjected to next-generation sequencing (NGS)-based restriction site-associated DNA sequencing on the NGS platform Solexa HiSeq2000, which generated 7,241 single nucleotide polymorphisms (SNPs). Thirty-three SNP markers showed the correlation between the marker genotypes and the PSB disease phenotype on the 20 representative plants, which were considered as candidate markers linked to a putative R gene for PSB resistance. Seven candidate markers were converted into sequence-specific PCR markers, which were designated as PhtjM1, PhtjM2, PhtjM3, PhtjM4, PhtjM5, PhtjM6 and PhtjM7. Linkage analysis of the disease phenotyping data and marker genotyping data on a F(8) population containing 187 RILs confirmed that all the seven converted markers were associated with the putative R gene within the genetic distance of 2.1 CentiMorgan (cM). One of the PCR markers, PhtjM3, co-segregated with the R gene. The seven established PCR markers were tested in the 26 historical and current commercial cultivars released in Australia. The numbers of "false positives" (showing the resistance marker allele band but lack of the putative R gene) for each of the seven PCR markers ranged from nil to eight. Markers PhtjM4 and PhtjM7 are recommended in marker-assisted selection for PSB resistance in the Australian national lupin breeding program due to its wide applicability on breeding germplasm and close linkage to the putative R gene. The results demonstrated that application of NGS technology is a rapid and cost-effective approach in development of markers for molecular plant breeding.

摘要

选择对茎点霉病(PSB)的抗性是羽扇豆( Lupinus angustifolius L.)育种计划的主要目标之一。通过栽培品种 Tanjil(抗 PSB)和 Unicrop(感病)杂交,将其后代培育成 F8 重组自交系(RIL)。对 RIL 群体进行 PSB 抗病性表型分析。从 RIL 群体中选择 20 株代表抗病性和感病性的植株,在 NGS 平台 Solexa HiSeq2000 上进行基于下一代测序(NGS)的限制性位点相关 DNA 测序,共产生了 7241 个单核苷酸多态性(SNP)。在 20 个代表性植株上,33 个 SNP 标记与 PSB 抗病表型相关,被认为是与 PSB 抗性假定 R 基因相关的候选标记。将 7 个候选标记转化为序列特异性 PCR 标记,分别命名为 PhtjM1、PhtjM2、PhtjM3、PhtjM4、PhtjM5、PhtjM6 和 PhtjM7。在包含 187 个 RIL 的 F8 群体中,对疾病表型数据和标记基因型数据的连锁分析证实,这 7 个转化标记均与遗传距离为 2.1 厘摩尔(cM)内的假定 R 基因相关。其中一个 PCR 标记 PhtjM3 与 R 基因共分离。对在澳大利亚发布的 26 个历史和当前商业品种进行了这 7 个建立的 PCR 标记的检测。这 7 个 PCR 标记中的每一个的“假阳性”(显示抗性标记等位基因带,但缺乏假定的 R 基因)数量从 0 到 8 不等。由于其在育种种质中的广泛适用性和与假定的 R 基因的紧密连锁,标记 PhtjM4 和 PhtjM7 推荐用于澳大利亚国家羽扇豆育种计划的 PSB 抗性辅助选择。结果表明,应用 NGS 技术是开发分子植物育种标记的快速、经济有效的方法。

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