首页> 外文期刊>Molecular Breeding >Introgression of homeologous quantitative trait loci (QTLs) for resistance to the root-knot nematode [ Meloidogyne arenaria (Neal) Chitwood] in an advanced backcross-QTL population of peanut ( Arachis hypogaea L.).
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Introgression of homeologous quantitative trait loci (QTLs) for resistance to the root-knot nematode [ Meloidogyne arenaria (Neal) Chitwood] in an advanced backcross-QTL population of peanut ( Arachis hypogaea L.).

机译:同源定量数量性状基因座(QTLs)对花生(Arachis hypogaea L.)的回交QTL群体的根结线虫(Meloidogyne arenaria(Neal)Chitwood)的抗性进行了渗入。

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摘要

Resistance to root-knot nematodes [ Meloidogyne arenaria (Neal) Chitwood] is needed for cultivation of peanut in major peanut-growing areas, but significant resistance is lacking in the cultivated species ( Arachis hypogaea L.). Markers to two closely-linked genes introgressed from wild relatives of peanut have been identified previously, but phenotypic evidence for the presence of additional genes in wild species and introgression lines has eluded quantitative trait locus (QTL) identification. Here, to improve sensitivity to small-effect QTLs, an advanced backcross population from a cross between a Florunner component line and the synthetic amphidiploid TxAG-6 [ Arachis batizocoi * ( A. cardenasii * A. diogoi)] 4* was screened for response to root-knot nematode infection. Composite interval mapping results suggested a total of seven QTLs plus three putative QTLs. These included the known major resistance gene plus a second QTL on LG1, and a potentially homeologous B-genome QTL on LG11. Additional potential homeologs were identified on linkage group (LG) 8 and LG18, plus a QTL on LG9.2 and putative QTLs on LG9.1 and 19. A QTL on LG15 had no inferred resistance-associated homeolog. Contrary to expectation, two introgressed QTLs were associated with susceptibility, and QTLs at some homeologous loci were found to confer opposite phenotypic responses. Long-term functional conservation accompanied by rapid generation of functionally divergent alleles may be a singular feature of NBS-LRR resistance gene clusters, contributing to the richness of resistance alleles available in wild relatives of crops. The significance for peanut evolution and breeding is discussed.
机译:在主要的花生种植区种植花生需要对根结线虫(Meloidogyne arenaria(Neal)Chitwood)的抗性,但是在栽培的物种(花生)中缺乏明显的抗性。先前已经确定了从野生花生亲缘基因渗入的两个紧密连锁基因的标记,但是表型证据表明野生物种和渗入系中存在其他基因,因此无法进行定量性状基因座(QTL)鉴定。在这里,为了提高对小效应QTL的敏感性,筛选了一个Florunner成分系和合成的两性类TxAG-6 [Arachis batizocoi *(A. cardenasii * A. diogoi)] 4 *之间的杂交后代,以进行回交。根结线虫感染。复合区间映射结果表明总共有七个QTL加三个假定的QTL。这些包括已知的主要抗性基因加上LG1的第二个QTL,以及LG11的潜在同源B基因组QTL。在连锁群(LG)8和LG18上鉴定了其他潜在的同源物,在LG9.2上鉴定了一个QTL,在LG9.1和19上鉴定了假定的QTL。在LG15上的一个QTL没有与抗性相关的同源物。与预期相反,两个渗入的QTL与易感性相关,并且发现某些同源位点的QTL赋予相反的表型反应。长期功能保守并伴有功能分歧等位基因的快速生成可能是NBS-LRR抗性基因簇的独特特征,有助于农作物野生近缘种中可用的抗性等位基因丰富。讨论了花生进化和育种的意义。

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