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首页> 外文期刊>Molecular Breeding >Mapping of two loci conferring resistance to wheat stem rust pathogen races TTKSK (Ug99) and TRTTF in the elite hard red spring wheat line SD4279
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Mapping of two loci conferring resistance to wheat stem rust pathogen races TTKSK (Ug99) and TRTTF in the elite hard red spring wheat line SD4279

机译:精英硬红春小麦品系SD4279中两个赋予小麦茎锈病病原体TTKSK(Ug99)和TRTTF抗性的基因座的定位

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摘要

Since its identification in the late 1990s, the stem rust pathogen (Puccinia graminis. f. sp. tritici (Pgt)) strain Ug99 (race TTKSK) has represented a worldwide wheat production threat due to its ability to overcome most of the resistance genes present in commercial cultivars. In order to address this challenge, resistance genes in wheat cultivars as well as in wild relatives have been identified. However, stem rust resistance breeding is facing a new challenge with the recent discovery in Ethiopia of a new race of Pgt (TRTTF) capable of defeating Sr13, SrTmp, and Sr1R(Amigo) genes that conferred resistance to the Ug99 race group. As part of an ongoing screening process at USDA-ARS Cereal Disease Laboratory, SD4279, an elite line from the hard red spring wheat breeding program at South Dakota State University, was found to be resistant to both races TTKSK and TRTTF. The objectives posed in this research were (1) to characterize the genetics of resistance to stem rust in SD4279 and (2) to identify molecular markers linked to race TTKSK (Ug99) and TRTTF resistance in SD4279. A mapping population composed of 92 F-2:3 families was evaluated for resistance to TTKSK and TRTTF. A single-gene conferring resistance to TTKSK, likely Sr9h, was mapped on chromosome arm 2BL. Also, a single gene was located on chromosome arm 6AS conferring resistance to TRTTF. Based on the type of reaction and map location, we postulate that the 6AS resistance gene is Sr8a which has not been mapped previously using DNA markers.
机译:自1990年代后期鉴定以来,茎锈病病原体(Puccinia graminis。f。sp。tritici(Pgt))菌株Ug99(race TTKSK)代表了世界范围内的小麦生产威胁,因为它具有克服目前大多数抗性基因的能力在商业品种中。为了应对这一挑战,已经鉴定了小麦品种以及野生近缘种中的抗性基因。然而,随着最近在埃塞俄比亚发现一种新的Pgt(TRTTF)种族能够抗击赋予Ug99种族抗性的Sr13,SrTmp和Sr1R(Amigo)基因,抗茎锈病育种面临着新的挑战。作为USDA-ARS谷物疾病实验室正在进行的筛选过程的一部分,SD4279是南达科他州立大学硬红春小麦育种计划的优良品系,对TTKSK和TRTTF两个种族均具有抗性。本研究提出的目标是(1)表征SD4279中对茎锈病的抗性遗传学(2)鉴定与SD4279中的TTKSK(Ug99)种族和TRTTF抗性相关的分子标记。评估了由92个F-2:3家族组成的作图人群对TTKSK和TRTTF的抗性。赋予了对TTKSK抗性的单基因,可能为Sr9h,位于染色体2BL上。另外,单个基因位于6AS染色体臂上,赋予对TRTTF的抗性。根据反应类型和图谱位置,我们假设6AS抗性基因是Sr8a,之前尚未使用DNA标记对其进行图谱分析。

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