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首页> 外文期刊>Phytopathologia Mediterranea >Genetic diversity of microsatellite alleles located at quantitative resistance loci for Ascochyta blight resistance in a global collection of chickpea germplasm
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Genetic diversity of microsatellite alleles located at quantitative resistance loci for Ascochyta blight resistance in a global collection of chickpea germplasm

机译:鹰嘴豆种质全球种质中位于抗灰纹夜蛾定量抗性位点的微卫星等位基因的遗传多样性

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A global collection of 43 chickpea (Cicer arietinum L.) genotypes, resistant and susceptible to Ascochyta blight caused by Ascochyta rabiei was evaluated for the disease under controlled conditions. In this study three known pathotypes (P-I, P-II, and P-III) were used to evaluate the reactions of this collection. The chickpea genotypes were also characterized using 14 microsatellite markers flanking the genomic regions associated with Ascochyta blight resistance quantitative trait loci (QTLs). Phenotyping results indicated that 27 genotypes were resistant to P-I, 14 to P-II, and five to P-III, revealing the possible erosion of resistance through the evolution of virulent pathogen pathotypes. The genetic diversity analysis revealed 67 alleles at 14 microsatellite loci with an average of 4.8 alleles per locus among the genotypes tested. Genetic similarity estimates differentiated four sub-clusters (A, B, C, and D) of the genotypes. However, none of sub-clusters were separated into resistant genotypes for a specific pathotype. The genetic diversity ranged from 0.48 to 0.80 which indicated that there is considerable variation in QTL regions associated with Ascochyta blight resistance among the collections of chickpea genotypes studied, as assessed using the hyper-variable microsatellite markers.
机译:在受控条件下,评估了全球43种鹰嘴豆(Cicer arietinum L.)基因型的耐药性和易感性,这些基因型对狂犬病菌引起的枯萎病很敏感。在这项研究中,使用三种已知的病理类型(P-I,P-II和P-III)来评估该集合的反应。鹰嘴豆的基因型还使用14个微卫星标记进行了表征,这些标记位于与Ascochyta枯萎病抗性定量性状基因座(QTL)相关的基因组区域的侧面。表型分析结果表明,有27种基因型对P-1,P-II和14-PIII具有抗性,这揭示了通过病原体致病性强毒株的进化可能会削弱抗性。遗传多样性分析显示,在14个微卫星基因座上有67个等位基因,在每个基因型中平均每个位点有4.8个等位基因。遗传相似性估计值区分了该基因型的四个亚群(A,B,C和D)。但是,没有一个亚群被分离为针对特定病态的抗性基因型。遗传多样性范围从0.48到0.80,这表明在研究的鹰嘴豆基因型集合中,与耐草枯病相关的QTL区域存在相当大的变化,这是使用超变微卫星标记进行评估的。

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