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QTL analysis of kernel size and shape in two hexaploid wheat mapping populations.

机译:两个六倍体小麦作图群体中籽粒大小和形状的QTL分析。

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Kernel size and shape in wheat are important because of their relationship with yield and milling quality. This paper reports QTL analyses of kernel morphology in two hexaploid wheat mapping populations, grown in NY and CA. Kernel morphology was evaluated through a new and improved method, combining measurements from two orthogonal pictures. Single marker regression showed that several genomic positions, scattered through the genome, were related to kernel size and shape, in both populations. The direction of allele effects was consistent between environments, although the LOD scores varied considerably. Composite interval mapping revealed QTLs on all seven homoeologous groups, considering both populations. For the QTLs detected through this method, the signal and magnitude of additive effects were similar between environments, indicating small QTL x environment interaction. In the population W7984 x Opata 85, the strongest signal was detected on the chromosome 5B, for kernel length. In the population AC Reed x Grandin, the most important QTLs were detected on chromosome 2D, affecting the lateral dimensions of the kernel. This study agreed with previous reports that the genetic control of kernel length and width are largely independent. Additionally, it was shown that QTLs detected on different mapping populations, with identical evaluation methods, can be very distinct..
机译:小麦的籽粒大小和形状非常重要,因为它们与产量和制粉质量有关。本文报告了在纽约州和加利福尼亚州生长的两个六倍体小麦作图群体中籽粒形态的QTL分析。通过结合两种正交图片的测量结果,通过一种新的改进方法对内核形态进行了评估。单标记回归表明,在两个种群中,分散在基因组中的几个基因组位置与籽粒大小和形状有关。尽管LOD得分差异很大,但等位基因效应的方向在环境之间是一致的。考虑到两个种群,复合区间作图揭示了所有七个同源群的QTL。对于通过此方法检测到的QTL,环境之间的加性效应信号和强度相似,表明QTL x环境相互作用较小。在群体W7984 x Opata 85中,在5B号染色体上检测到最强的信号,显示了籽粒长度。在AC Reed x Grandin种群中,在2D染色体上检测到最重要的QTL,影响了籽粒的侧向尺寸。这项研究与以前的报道一致,即籽粒长度和宽度的遗传控制在很大程度上是独立的。此外,结果显示,使用相同的评估方法,在不同的作图群体中检测到的QTL可能非常不同。

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