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首页> 外文期刊>TAG Theoretical and Applied Genetics >A robust molecular marker for the detection of shortened introgressed segment carrying the stem rust resistance gene Sr22 in common wheat
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A robust molecular marker for the detection of shortened introgressed segment carrying the stem rust resistance gene Sr22 in common wheat

机译:用于检测普通小麦中带有茎锈病抗性基因Sr22的短渗入片段的强大分子标记

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Stem rust resistance gene Sr22 transferred to common wheat from Triticum boeoticum and T. monococcum remains effective against commercially prevalent pathotypes of Puccinia graminis f. sp. tritici, including Ug99 and its derivatives. Sr22 was previously located on the long arm of chromosome 7A. Several backcross derivatives (hexaploid) possessing variable sized Sr22-carrying segments were used in this study to identify a closely linked DNA marker. Expressed sequenced tags belonging to the deletion bin 7AL-0.74–0.86, corresponding to the genomic location of Sr22 were screened for polymorphism. In addition, RFLP markers that mapped to this region were targeted. Initial screening was performed on the resistant and susceptible DNA bulks obtained from backcross derivatives carrying Sr22 in three genetic backgrounds with short T. boeoticum segments. A cloned wheat genomic fragment, csIH81, that detected RFLPs between the resistant and susceptible bulks, was converted into a sequence tagged site (STS) marker, named cssu22. Validation was performed on Sr22 carrying backcross-derivatives in fourteen genetic backgrounds and other genotypes used for marker development. Marker cssu22 distinguished all backcross-derivatives from their respective recurrent parents and co-segregated with Sr22 in a Schomburgk (+Sr22)/Yarralinka (−Sr22)-derived recombinant inbred line (RIL) population. Sr22 was also validated in a second population, Sr22TB/Lakin-derived F4 selected families, containing shortened introgressed segments that showed recombination with previously reported flanking microsatellite markers.
机译:从小麦(Triticum boeoticum)和单球菌(T. monococcum)转移到普通小麦的茎锈病抗性基因Sr22仍然对商业流行的Puccinia graminis f致病型有效。 sp。 tritici,包括Ug99及其衍生物。 Sr22先前位于7A号染色体的长臂上。在这项研究中,使用了几个具有可变大小的Sr22携带片段的回交衍生物(六倍体)来鉴定紧密相连的DNA标记。筛选出与Sr22基因组位置相对应的,属于缺失区7AL-0.74-0.86的表达序列标签。另外,靶向映射到该区域的RFLP标记。最初的筛选是在具有短T. boeoticum片段的三个遗传背景下,对从携带Sr22的回交衍生物获得的抗性和易感DNA本体进行的。在抗性和易感体之间检测到RFLP的克隆的小麦基因组片段csIH81被转换为名为cssu22的序列标记位点(STS)标记。对在十四个遗传背景和用于标记开发的其他基因型中携带回交衍生物的Sr22进行了验证。标记cssu22区分了所有回交衍生物与其各自的亲本,并与Sr22共分离于Schomburgk(+ Sr22)/ Yarralinka(-Sr22)衍生的重组近交系(RIL)群体中。 Sr22还通过第二个种群Sr22TB / Lakin衍生的F 4 家族进行了验证,该家族包含缩短的渐渗区段,显示与先前报道的侧翼微卫星标记重组。

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