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利用 35K SNP 阵列对节节麦衍生的叶锈病和条锈病抗性基因进行作图。

Mapping of Aegilops speltoides derived leaf rust and stripe rust resistance genes using 35K SNP array.

机构信息

School of Agricultural Biotechnology, Punjab Agricultural University, Ludhiana, 141004, India.

University of Idaho, Moscow, USA.

出版信息

BMC Genom Data. 2024 Jul 15;25(1):69. doi: 10.1186/s12863-024-01247-5.

Abstract

Wheat is an essential food commodity cultivated throughout the world. However, this crop faces continuous threats from fungal pathogens, leaf rust (LR) and stripe rust (YR). To continue feeding the growing population, these major destructors of wheat must be effectively countered by enhancing the genetic diversity of cultivated germplasm. In this study, an introgression line with hexaploid background (IL) carrying resistance against Pt pathotypes 77-5 (121R63-1), 77-9 (121R60-1) and Pst pathotypes 46S119 (46E159), 110S119 (110E159), 238S119 (238E159) was developed from donor wheat wild progenitor, Aegilops speltoides acc pau 3603. To understand the genetic basis of resistance and map these genes (named Lr and Yr), inheritance studies were carried out in F and F mapping population, developed by crossing IL with LR and YR susceptible cultivar WL711, which revealed a monogenic (single gene) inheritance pattern for each of these traits. Bulk segregant analysis combined with 35 K Axiom SNP array genotyping mapped both genes as separate entities on the short arm of chromosome 6B. A genetic linkage map, comprising five markers, 1 SNP, 1 PLUG and three gene based SSRs, covered a genetic distance of 12.65 cM. Lr was flanked by markers Tag-SSR14 (located proximally at 2.42 cM) and SNP AX-94542331 (at 3.28 cM) while Yr was mapped at one end closest to AX-94542331 at 6.62 cM distance. Functional annotation of Lr target region (∼ 1 Mbp) revealed 10 gene IDs associated with disease resistance mechanisms including three encoding typical R gene domains.

摘要

小麦是全球广泛种植的重要粮食作物。然而,这种作物不断受到真菌病原体的威胁,其中包括叶锈病(LR)和条锈病(YR)。为了养活不断增长的人口,必须通过增强栽培种质的遗传多样性来有效应对这些小麦的主要破坏者。在这项研究中,通过向携带对 Pt 生理小种 77-5(121R63-1)、77-9(121R60-1)和 Pst 生理小种 46S119(46E159)、110S119(110E159)、238S119(238E159)的供体小麦野生近缘种 Ae. speltoides acc pau 3603 导入六倍体背景的导入系(IL),开发了对这些生理小种具有抗性的小麦。为了了解抗性的遗传基础并对这些基因(命名为 Lr 和 Yr)进行作图,在与 LR 和 YR 敏感品种 WL711 杂交产生的 F 和 F 作图群体中进行了遗传研究,结果表明这些性状均为单基因(单个基因)遗传模式。基于群体的分离分析与 35K Axiom SNP 芯片基因分型相结合,将这两个基因分别定位在 6B 染色体的短臂上。包含 5 个标记、1 个 SNP、1 个 PLUG 和 3 个基于基因的 SSR 的遗传连锁图谱,覆盖了 12.65 cM 的遗传距离。Lr 被标记 Tag-SSR14(位于近端 2.42 cM)和 SNP AX-94542331(位于 3.28 cM)所包围,而 Yr 被定位在最靠近 AX-94542331 的一端,距离为 6.62 cM。Lr 目标区域(约 1 Mbp)的功能注释揭示了 10 个与抗病机制相关的基因 ID,其中包括三个编码典型 R 基因结构域的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d77d/11247808/4e4ef61a9fac/12863_2024_1247_Fig1_HTML.jpg

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