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染色体 3B 和 4D 与软质白春小麦(Triticum aestivum L.)群体中的几个研磨和烘焙品质性状相关。

Chromosomes 3B and 4D are associated with several milling and baking quality traits in a soft white spring wheat (Triticum aestivum L.) population.

机构信息

Department of Crop and Soil Sciences, Washington State University, Pullman, WA 99164-6420, USA.

出版信息

Theor Appl Genet. 2012 Apr;124(6):1079-96. doi: 10.1007/s00122-011-1770-x. Epub 2011 Dec 21.

Abstract

Wheat is marketed based on end-use quality characteristics and better knowledge of the underlying genetics of specific quality parameters is essential to enhance the breeding process. A set of 188 recombinant inbred lines from a 'Louise' by 'Penawawa' mapping population was grown in two crop years at two locations in the Pacific Northwest region of the United States and data were collected on 17 end-use quality traits using established quality analysis protocols. Using an established genetic linkage map, composite interval mapping was used to identify QTL associated with 16 of the 17 quality traits. QTL were found on 13 of the 21 wheat chromosomes. A large number of QTL were located on chromosomes 3B and 4D and coincided with traits for milling quality and starch functionality. Chromosome 3B contained 10 QTL, which were localized to a 26.2 cM region. Chromosome 4D contained 7 QTL, all of which were located on an 18.8 cM region of this chromosome. The majority of the alleles for superior end-use quality were associated with the cultivar Louise. The identified QTL detected remained highly significant independent of grain yield and protein quantity. The identification of these QTL for end-use quality gives key insight into the relationship and complexity of end-use quality traits. It also improves our understanding of these relationships, thereby allowing plant breeders to make valuable gains from selection for these important traits.

摘要

小麦是根据最终用途的质量特征进行销售的,因此,更好地了解特定质量参数的潜在遗传基础对于增强育种过程至关重要。利用‘Louise’与‘Penawawa’的作图群体,共获得了 188 个重组自交系,在美国太平洋西北地区的两个地点,在两个作物生长年份种植这些重组自交系,并采用既定的质量分析方案,收集了 17 个最终用途质量性状的数据。利用既定的遗传连锁图谱,采用复合区间作图法,鉴定了与 17 个质量性状相关的 QTL。在 21 条小麦染色体中的 13 条染色体上发现了 QTL。大量的 QTL 位于 3B 和 4D 染色体上,与磨粉质量和淀粉功能相关的性状一致。3B 染色体含有 10 个 QTL,定位于 26.2 cM 区域。4D 染色体含有 7 个 QTL,全部位于该染色体的 18.8 cM 区域。大多数优质最终用途的等位基因与品种 Louise 有关。鉴定出的 QTL 即使在谷物产量和蛋白质含量不变的情况下,仍然高度显著。这些最终用途质量 QTL 的鉴定,深入了解了最终用途质量性状的关系和复杂性。它还提高了我们对这些关系的理解,从而使植物育种家能够通过对这些重要性状的选择,获得有价值的进展。

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