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Characterization of some bread wheat genotypes using molecular markers for drought tolerance

机译:使用分子标记对某些面包小麦基因型进行抗旱鉴定

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摘要

Because of its wide geographical adaptation and importance in human nutrition, wheat is one of the most important crops in the world. However, wheat yield has reduced due to drought stress posing threat to sustainability and world food security in agricultural production. The first stage of drought tolerant variety breeding occurs on the molecular and biochemical characterization and classification of wheat genotypes. The aim of the present study is characterization of widely grown bread wheat cultivars and breeding lines for drought tolerance so as to be adapted to different regions in Turkey. The genotypes were screened with molecular markers for the presence of QTLs mapped to different chromosomes. Results of the molecular studies identified and detected 15 polymorphic SSR markers which gave the clearest PCR bands among the control genotypes. At the end of the research, bread wheat genotypes which were classified for tolerance or sensitivity to drought and the genetic similarity within control varieties were determined by molecular markers. According to SSR based dendrogram, two main groups were obtained for drought tolerance. At end of the molecular screening with SSR primers, genetic similarity coefficients were obtained that ranged from 0.14 to 0.71. The ones numbered 8 and 11 were the closest genotypes to drought tolerant cultivar Gerek 79 and the furthest genotypes from this cultivar were number 16 and to drought sensitive cultivar Sultan 95. The genotypes as drought tolerance due to their SSR markers scores are expected to provide useful information for drought related molecular breeding studies.
机译:由于其广泛的地理适应性和对人类营养的重要性,小麦是世界上最重要的农作物之一。但是,由于干旱压力,小麦单产下降,对农业生产中的可持续性和世界粮食安全构成威胁。耐旱品种育种的第一阶段发生在小麦基因型的分子和生化特征以及分类上。本研究的目的是表征广泛种植的面包小麦品种和育种系的耐旱性,以适应土耳其的不同地区。用分子标记筛选基因型,以确定是否存在映射到不同染色体的QTL。分子研究的结果确定并检测到了15个多态性SSR标记,这些标记在对照基因型中提供了最清晰的PCR条带。在研究结束时,通过分子标记确定了被分类为对干旱的耐受性或敏感性以及对照品种内的遗传相似性的面包小麦基因型。根据基于SSR的树状图,获得了两个主要的耐旱性组。在用SSR引物进行的分子筛选结束时,获得的遗传相似系数在0.14至0.71之间。编号8和11是最接近耐旱品种Gerek 79的基因型,该品种最远的基因型是16和干旱敏感品种Sultan 95的基因型。由于其SSR标记得分,作为耐旱性的基因型有望提供有用的基因型。干旱相关分子育种研究的信息。

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