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Combined linkage and association mapping reveal candidate loci for kernel size and weight in maize

机译:结合的连锁和关联映射揭示了玉米粒大小和重量的候选基因座

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摘要

Yield improvement is a top priority for maize breeding. Kernel size and weight are important determinants of maize grain yield. In this study, a recombinant inbred line (RIL) population and an association panel were used to identify quantitative trait loci (QTLs) for four maize kernel-related traits: kernel length, width, thickness and 100-kernel weight. Twenty-seven QTLs were identified for kernel-related traits across three environments and the best linear unbiased predictions (BLUPs) of each trait by linkage analysis, and four QTLs were stably detected in more than two environments. Additionally, 29 single nucleotide polymorphisms (SNPs) were identified as significantly associated with the four kernel-related traits and BLUPs by genome-wide association study, and two loci could be stably detected in both environments. In total, four QTLs/SNPs were co-associated with various traits in both populations. Using combined-linkage analysis and association mapping, PZE-101066560 on chromosome 1, associated with kernel width and with 100-kernel weight in the association panel, was co-localized within the QTL interval of qKW1-3 for kernel width in the RILs. Two annotated genes in the candidate region were considered as potential candidate genes. The QTLs and candidate genes identified here will facilitate molecular breeding for grain yield improvement in maize.
机译:提高产量是玉米育种的重中之重。籽粒大小和重量是玉米籽粒产量的重要决定因素。在这项研究中,使用重组自交系(RIL)群体和一个关联面板来确定四个玉米籽粒相关性状的定量性状位点(QTL):籽粒长度,宽度,厚度和100粒重。通过连锁分析确定了27个QTL,以分析三个环境中与内核相关的性状,并通过连锁分析确定了每个性状的最佳线性无偏预测(BLUP),并且在两个以上的环境中稳定地检测到四个QTL。此外,通过全基因组关联研究确定了29个单核苷酸多态性(SNP)与这四个核心相关性状和BLUP显着相关,并且在两种环境中都可以稳定地检测到两个基因座。总体而言,两个种群中有四个QTL / SNP与各种性状相互关联。使用组合链接分析和关联映射,将1号染色体上的PZE-101066560与内核宽度相关联并且在关联面板中具有100内核权重,共定位在RIL的qKW1-3的QTL区间内。候选区域中的两个带注释的基因被认为是潜在的候选基因。此处鉴定的QTL和候选基因将促进分子育种,提高玉米的籽粒产量。

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