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首页> 外文期刊>Crop science >Identification of Molecular Markers Associated with Adult Plant Resistance to Powdery Mildew in Common Wheat Cultivar Massey
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Identification of Molecular Markers Associated with Adult Plant Resistance to Powdery Mildew in Common Wheat Cultivar Massey

机译:普通小麦品种梅西与成年植物对白粉病抗性相关的分子标记的鉴定

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摘要

Powdery mildew, caused by Blumeria graminis (DC.) E.O. Speer f. sp. tritici Em. Marchal (syn. Erysiphe graminis f. sp. tritici), is one of the major diseases of wheat (Triticum aestivum L.) worldwide. Race-specific resistance has been extensively used in wheat breeding programs, even though it is ephemeral. Adult plant resistance (APR) to powdery mildew is more durable than race-specific resistance. The APR to powdery mildew in winter wheat cultivar Massey has remained effective since its release in 1981. A cross was made between Massey and a powdery mildew susceptible cultivar Becker. Powdery mildew severity on F-2 leaves (the second leaf below the flag leaf) of 180 F2:3 lines was rated under natural disease pressure in the field. Among 213 RFLP and 139 microsatellite markers surveyed, 88 (41%) and 90 (65%) markers, respectively, detected polymorphism between Becker and Massey. Bulked segregant analysis (BSA) was used to facilitate the identification of molecular markers associated with APR to powdery mildew. Three quantitative trait loci (QTLs), designated as QPm.vt-1B, QPm.vt-2A, and QPm.vt-2B, were identified with interval mapping. They are located on wheat chromosomes 1B, 2A, and 2B, and, respectively, explained 17, 29, and 11% of the total variation of F2:3 lines for powdery mildew resistance. The three QTLs associated with APR to powdery mildew were derived from Massey, and displayed additive gene action. QPm.vt-2B also fits a recessive model for APR to powdery mildew. In a multi-QTL model, the three QTLs explained 50% of the total variation of F2:3 lines for APR to powdery mildew. The presence of the three QTLs was confirmed with 97 recombinant inbred (RI) lines, tested for APR to powdery mildew under natural powdery mildew pressure over 3 yr (F5:6a€“F7:8 generation). The molecular markers identified in this study have potential for use in marker-assisted selection and pyramiding of genes for resistance to powdery mildew.
机译:由Blumeria graminis(DC。)E.O.引起的白粉病斯佩尔f。 sp。 Tritici Em。 Marchal(Erysiphe graminis f。sp。tritici)是全世界小麦的主要病害之一(Triticum aestivum L.)。尽管是短暂的,但针对种族的抗性已在小麦育种计划中广泛使用。成年植物对白粉病的抗性比种族特异性抗性更持久。自1981年发布以来,冬小麦品种梅西的白粉病APR一直有效。梅西与易感白粉病的贝克尔杂交。在田间自然病害压力下,对180个F2:3品系的F-2叶(旗叶下的第二片叶)上的白粉病严重程度进行了评估。在调查的213个RFLP和139个微卫星标记中,分别有88个(41%)和90个(65%)标记检测到Becker和Massey之间的多态性。散装分离剂分析(BSA)用于促进与白粉病APR相关的分子标记的鉴定。通过间隔映射鉴定了三个定量性状基因座(QTL),分别命名为QPm.vt-1B,QPm.vt-2A和QPm.vt-2B。它们位于小麦染色体1B,2A和2B上,分别解释了抗白粉病的F2:3系总变异的17%,29%和11%。与APR引起的白粉病相关的三个QTL来自梅西,并表现出加性基因作用。 QPm.vt-2B还适合白粉病的隐性模型。在多QTL模型中,三个QTL解释了APR到白粉病F2:3品系总变异的50%。通过97个重组自交系(RI)证实了三个QTL的存在,并在3年​​的自然白粉病压力下(F5:6a→F7:8世代)对白粉病进行了APR测试。在这项研究中鉴定出的分子标记物具有用于标记辅助选择和对白粉病抗性基因进行金字塔化的潜力。

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