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Evaluation of 19,460 Wheat Accessions Conserved in the Indian National Genebank to Identify New Sources of Resistance to Rust and Spot Blotch Diseases

机译:对印度国家种质库中保藏的19,460份小麦种质进行鉴定,以确定抗锈斑病的新来源

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摘要

A comprehensive germplasm evaluation study of wheat accessions conserved in the Indian National Genebank was conducted to identify sources of rust and spot blotch resistance. Genebank accessions comprising three species of wheat–Triticum aestivum, T. durum and T. dicoccum were screened sequentially at multiple disease hotspots, during the 2011–14 crop seasons, carrying only resistant accessions to the next step of evaluation. Wheat accessions which were found to be resistant in the field were then assayed for seedling resistance and profiled using molecular markers. In the primary evaluation, 19,460 accessions were screened at Wellington (Tamil Nadu), a hotspot for wheat rusts. We identified 4925 accessions to be resistant and these were further evaluated at Gurdaspur (Punjab), a hotspot for stripe rust and at Cooch Behar (West Bengal), a hotspot for spot blotch. The second round evaluation identified 498 accessions potentially resistant to multiple rusts and 868 accessions potentially resistant to spot blotch. Evaluation of rust resistant accessions for seedling resistance against seven virulent pathotypes of three rusts under artificial epiphytotic conditions identified 137 accessions potentially resistant to multiple rusts. Molecular analysis to identify different combinations of genetic loci imparting resistance to leaf rust, stem rust, stripe rust and spot blotch using linked molecular markers, identified 45 wheat accessions containing known resistance genes against all three rusts as well as a QTL for spot blotch resistance. The resistant germplasm accessions, particularly against stripe rust, identified in this study can be excellent potential candidates to be employed for breeding resistance into the background of high yielding wheat cultivars through conventional or molecular breeding approaches, and are expected to contribute toward food security at national and global levels.
机译:对印度国家种质库中保存的小麦种质进行了全面的种质评价研究,以鉴定铁锈和斑斑抗性的来源。在2011–14作物季节期间,在多个疾病热点依次筛选了由三种小麦(普通小麦,硬粒小麦和二齿小麦)组成的种质库种质,仅携带抗性种质进行下一步评估。然后测定在田间具有抗性的小麦种质的幼苗抗性,并使用分子标记进行分析。在初步评估中,在小麦锈病的热点惠灵顿(泰米尔纳德邦)筛选了19,460个种质。我们确定了4925种抗性,并且在条锈病热点Gurdaspur(旁遮普省)和斑点斑热点Cooch Behar(西孟加拉邦)进行了进一步评估。第二轮评估确定了498个可能抗多种锈病的材料和868个可能抗斑点锈病的材料。在人工附生条件下评估抗锈病材料对三种锈病的七种致病病原体的幼苗抗性后,鉴定出137种抗多种锈病材料。使用链接的分子标记物进行分子分析以鉴定赋予叶锈病,茎锈病,条锈病和斑点斑点抗性的遗传基因座的不同组合,鉴定了45个包含已知的针对所有三种锈病的抗性基因的小麦种质,以及QTL的斑点斑点抗性。在这项研究中确定的抗性种质材料,特别是抗条锈病,可能是极好的潜在候选物,可通过常规或分子育种方法在高产小麦品种的背景下进行抗性育种,并有望为国家粮食安全做出贡献和全球层面。

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