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Revealing Genetic Relationship and Prospecting of Novel Donors Among Upland Rice Genotypes Using qDTY-Linked SSR Markers

机译:使用qDTY连锁SSR标记揭示水稻基因型间的遗传关系并寻找新的供体

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A total of 17 simple sequence repeat (SSR) markers linked to QTLs (qDTYs) governing grain yield under reproductive stage (RS) drought stress were used to assess the genetic relationship and prospecting new donors for qDTYs among 32 popular upland rice genotypes. These SSR markers generated a total of 36 alleles with an average allele count of 2.1 per locus. Polymorphic information content value of the markers ranged from 0.376 to 0.662 with an average value of 0.484. The expected heterozyogosity ranged from 0.381 to 0.632. STRUCTURE analysis divided the 32 genotypes into three sub-populations. Subsequent phenotyping revealed that all the tolerant genotypes were grouped into one sub-population, whereas the moderately tolerant and susceptible genotypes were grouped into separate sub-populations. Phylogenetic tree constructed by the unweighted neighbour-joining method also divided the genotypes into three clusters. The grouping pattern of genotypes into the clusters was similar to that into the STRUCTURE analysis, on the basis of drought tolerance level. The average value of genetic dissimilarity coefficient among the genotypes was observed to be 0.486. Furthermore, by combining genotyping data with phenotyping data, 16 new donors for 6 qDTYs were identified.
机译:共有17个与QTL(qDTYs)相关的简单序列重复(SSR)标记与控制生育期(RS)干旱胁迫下的粮食产量的QTL(qDTYs)用于评估遗传关系并在32种流行的旱稻基因型中寻找qDTYs的新供体。这些SSR标记生成了总共36个等位基因,每个位点的平均等位基因计数为2.1。标记的多态信息含量值范围为0.376至0.662,平均值为0.484。预期杂合度为0.381至0.632。结构分析将32个基因型分为三个亚群。随后的表型分析表明,所有耐受基因型都被归为一个亚群,而中等耐受和易感基因型则被归为单独的亚群。用非加权邻居结合法构建的系统发育树也将基因型分为三个簇。在耐旱水平的基础上,基因型到聚类的分组模式与结构分析中的分组模式相似。基因型之间的遗传相似系数的平均值为0.486。此外,通过将基因分型数据与表型数据结合,确定了6个qDTY的16个新供体。

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