首页> 外文期刊>Frontiers in Plant Science >Analysis of main effect QTL for thousand grain weight in European winter wheat ( Triticum aestivum L.) by genome-wide association mapping
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Analysis of main effect QTL for thousand grain weight in European winter wheat ( Triticum aestivum L.) by genome-wide association mapping

机译:全基因组关联映射分析欧洲冬小麦千粒重的主要效应QTL

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Grain weight, an essential yield component, is under strong genetic control and at the same time markedly influenced by the environment. Genetic analysis of the thousand grain weight (TGW) by genome-wide association study (GWAS) was performed with a panel of 358 European winter wheat ( Triticum aestivum L.) varieties and 14 spring wheat varieties using phenotypic data of field tests in eight environments. Wide phenotypic variations were indicated for the TGW with BLUEs (best linear unbiased estimations) values ranging from 35.9 to 58.2 g with a mean value of 45.4 g and a heritability of H~(2)= 0.89. A total of 12 candidate genes for plant height, photoperiodism and grain weight were genotyped on all varieties. Only three candidates, the photoperiodism gene Ppd-D1 , dwarfing gene Rht-B1 and the TaGW-6A gene were significant explaining up to 14.4, 2.3, and 3.4% of phenotypic variation, respectively. For a comprehensive genome-wide analysis of TGW-QTL genotyping data from 732 microsatellite markers and a set of 7769 mapped SNP-markers genotyped with the 90k iSELECT array were analyzed. In total, 342 significant (-log_(10)( P -value) ≥ 3.0) marker trait associations (MTAs) were detected for SSR-markers and 1195 MTAs (?log_(10)( P -value) ≥ 3.0) for SNP-markers in all single environments plus the BLUEs. After Bonferroni correction, 28 MTAs remained significant for SSR-markers (?log_(10)( P -value) ≥ 4.82) and 58 MTAs for SNP-markers (?log_(10)( P -value) ≥ 5.89). Apart from chromosomes 4B and 6B for SSR-markers and chromosomes 4D and 5D for SNP-markers, MTAs were detected on all chromosomes. The highest number of significant SNP-markers was found on chromosomes 3B and 1B, while for the SSRs most markers were significant on chromosomes 6D and 3D. Overall, TGW was determined by many markers with small effects. Only three SNP-markers had R~(2)values above 6%.
机译:谷物重量是必不可少的产量组成部分,受到强大的遗传控制,同时受到环境的显着影响。通过在八个环境中使用田间试验的表型数据,对358个欧洲冬小麦(Triticum aestivum L.)品种和14个春小麦品种进行了全基因组关联研究(GWAS)对千粒重(TGW)的遗传分析。 。 TGW的表型变化很大,其BLUE(最佳线性无偏估计)值在35.9至58.2 g之间,平均值为45.4 g,遗传力为H〜(2)= 0.89。在所有品种上对植物高度,光周期和粒重的总共12个候选基因进行了基因分型。仅三个候选物,光周期基因Ppd-D1,矮化基因Rht-B1和TaGW-6A基因是显着的,分别解释了高达14.4%,2.3%和3.4%的表型变异。为了对TGW-QTL基因分型进行全面的全基因组分析,分析了来自732个微卫星标记和以90k iSELECT基因型进行基因分型的一组7769个作图SNP标记。总共为SSR标记检测到342个显着(-log_(10)(P值)≥3.0)标记性状关联(MTAs),为SNP检测到1195个MTA(?log_(10)(P值)≥3.0)所有单一环境中的标记以及蓝色。 Bonferroni校正后,对于SSR标记(?log_(10)(P值)≥4.82)和28个MTA对于SSR标记(?log_(10)(P值)≥5.89)仍然显着。除了用于SSR标记的4B和6B染色体以及用于SNP标记的4D和5D染色体外,在所有染色体上均检测到MTA。在3B和1B染色体上发现了最高数量的重要SNP标记,而对于SSR,大多数标记在6D和3D染色体上是重要的。总体而言,TGW由许多影响较小的标志物确定。只有三个SNP标记的R〜(2)值高于6%。

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