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首页> 外文期刊>Journal of Applied Genetics >Considering causal genes in the genetic dissection of kernel traits in common wheat
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Considering causal genes in the genetic dissection of kernel traits in common wheat

机译:在普通小麦籽粒性状遗传解剖中考虑因果基因

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Genetic factors controlling thousand-kernel weight (TKW) were characterized for their association with other seed traits, including kernel width, kernel length, ratio of kernel width to kernel length (KW/KL), kernel area, and spike number per m(2) (SN). For this purpose, a genetic map was established utilizing a doubled haploid population derived from a cross between German winter wheat cultivars Pamier and Format. Association studies in a diversity panel of elite cultivars supplemented genetic analysis of kernel traits. In both populations, genomic signatures of 13 candidate genes for TKW and kernel size were analyzed. Major quantitative trait loci (QTL) for TKW were identified on chromosomes 1B, 2A, 2D, and 4D, and their locations coincided with major QTL for kernel size traits, supporting the common belief that TKW is a function of other kernel traits. The QTL on chromosome 2A was associated with TKW candidate gene TaCwi-A1 and the QTL on chromosome 4D was associated with dwarfing gene Rht-D1. A minor QTL for TKW on chromosome 6B coincided with TaGW2-6B. The QTL for kernel dimensions that did not affect TKW were detected on eight chromosomes. A major QTL for KW/KL located at the distal tip of chromosome arm 5AS is being reported for the first time. TaSus1-7A and TaSAP-A1, closely linked to each other on chromosome 7A, could be related to a minor QTL for KW/KL. Genetic analysis of SN confirmed its negative correlation with TKW in this cross. In the diversity panel, TaSus1-7A was associated with TKW. Compared to the Pamier/Format bi-parental population where TaCwi-A1a was associated with higher TKW, the same allele reduced grain yield in the diversity panel, suggesting opposite effects of TaCwi-A1 on these two traits.
机译:控制千粒重(TKW)的遗传因素的特征在于它们与其他种子性状的关联,包括籽粒宽度,籽粒长度,籽粒宽度与籽粒长度的比率(KW / KL),籽粒面积和每m的穗数(2) )(SN)。为了这个目的,利用来自德国冬小麦品种Pamier和Format之间杂交的双倍单倍体种群建立了遗传图谱。精英品种多样性小组中的关联研究补充了内核性状的遗传分析。在这两个种群中,分析了13个候选基因的KWK和籽粒大小的基因组特征。在染色体1B,2A,2D和4D上鉴定了TKW的主要数量性状基因座(QTL),它们的位置与籽粒大小性状的主要QTL相符,这支持了人们普遍认为TKW是其他籽粒性状的函数。染色体2A上的QTL与TKW候选基因TaCwi-A1相关,染色体4D上的QTL与矮化基因Rht-D1相关。染色体6B上TKW的次要QTL与TaGW2-6B一致。在八个染色体上检测到不影响TKW的籽粒尺寸的QTL。首次报道了位于5AS染色体末端的KW / KL的主要QTL。在染色体7A上彼此紧密相连的TaSus1-7A和TaSAP-A1可能与KW / KL的次要QTL有关。 SN的遗传分析证实了其与TKW的负相关。在多样性小组中,TaSus1-7A与TKW相关。与TaCwi-A1a与较高的TKW相关的Pamier / Format双亲种群相比,相同等位基因降低了多样性面板中的谷物产量,这表明TaCwi-A1对这两个性状的相反影响。

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