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首页> 外文期刊>Crop Science >Identification of molecular markers associated with root-knot nematode resistance in upland cotton.
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Identification of molecular markers associated with root-knot nematode resistance in upland cotton.

机译:鉴定与陆地棉根结线虫抗性相关的分子标记。

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摘要

Cotton breeding for resistance to root-knot nematode (RKN) [Meloidogyne incognita (Kofoid and White) Chitwood] is hindered by the lack of convenient and reliable screening methods for resistant plants. The identification of molecular markers closely linked to RKN resistance will facilitate the development of RKN resistant cultivars through marker-assisted selection (MAS). Our objective was to identify and develop new DNA markers that are associated with RKN resistance in cotton. Using three pairs of near-isogenic (NIL) resistant (R) and susceptible (S) lines, two AFLP markers, two RAPD markers, and three RGA markers were identified to be polymorphic between the NIL-R and NIL-S lines. One RAPD marker was converted into a sequence-tagged site (STS) marker. In an F2 population of 'ST 474' x 'Auburn 634 RNR', the two RAPD markers and the STS marker were mapped to the same linkage group containing several markers that were previously reported to be linked with the RKN resistance gene rkn1 on chromosome 11 in 'Acala NemX'. All these markers were found to be associated with a major RKN resistance gene, presumably Mi2 in the resistant line Auburn 634 RNR, suggesting that rkn1 and Mi2 are either allelic or closely linked. In addition, no susceptible recombinants were found in a resistance screen of 200 F2 plants from the cross Acala NemX x Auburn 634 RNR. The utility of the two RAPD markers and the converted STS marker were evaluated using 23 R and 8 S germplasm lines. The RAPD and STS markers, along with other previously reported markers associated with RKN resistance will be useful in germplasm screening, MAS for RKN resistance, and map-based cloning for RKN resistance genes..
机译:棉花抗根结线虫(RKN)[Meloidogyne incognita(Kofoid and White)Chitwood]的育种因缺乏方便,可靠的抗性植物筛选方法而受阻。与RKN抗性紧密相关的分子标记的鉴定将通过标记辅助选择(MAS)促进RKN抗性品种的发展。我们的目标是鉴定和开发与棉花中RKN抗性相关的新DNA标记。使用三对近等基因(NIL)抗性(R)和易感(S)品系,鉴定出两个AFLP标记,两个RAPD标记和三个RGA标记在NIL-R和NIL-S品系之间是多态的。将一个RAPD标记转化为序列标记位点(STS)标记。在“ ST 474” x“ Auburn 634 RNR”的F2种群中,两个RAPD标记和STS标记被映射到包含多个标记的同一连锁组,这些标记先前据报道与11号染色体上的RKN抗性基因rkn1连锁在“ Acala NemX”中。发现所有这些标记都与一个主要的RKN抗性基因有关,大概是抗性系Auburn 634 RNR中的Mi2,这表明rkn1和Mi2是等位基因或紧密相连。另外,在来自杂交Acala NemX x Auburn 634 RNR的200株F2植物的抗性筛选中没有发现易感的重组体。使用23 R和8 S种质系评估了两个RAPD标记和转化的STS标记的效用。 RAPD和STS标记,以及其他先前报道的与RKN抗性相关的标记,将用于种质筛选,MAS进行RKN抗性以及基于图的RKN抗性基因克隆。

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