首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of quantitative trait loci for productive tiller number and its relationship to agronomic traits in spring wheat.
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Identification of quantitative trait loci for productive tiller number and its relationship to agronomic traits in spring wheat.

机译:春小麦生产性分till数量性状位点的鉴定及其与农艺性状的关系。

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Productive tiller number (PTN), defined as the number of tillers that produce spikes and seeds, is a key component of grain yield in wheat. Spring wheat cultivars in the northern Great Plains of North America differ in PTN. The objectives of this study were (1) to determine the relationship of PTN to agronomic traits using recombinant inbred line (RIL) populations derived from crosses Reeder/Conan, McNeal/Thatcher and Reeder/McNeal grown under a range of environments, and (2) to identify and validate quantitative trait loci (QTL) associated with high PTN. Correlation between PTN and plot weight ranged from r=0.4-0.6 among the populations based on combined means over years, and was positive in every environment for all crosses (P<0.05). A genetic map generated for the Reeder/Conan RIL allowed identification of a QTL for PTN consistent over environments, located on chromosome 6B. The QTL on chromosome 6B (QTn.mst-6B) explained 9-17% of the variation of PTN and co-segregated with a QTL for yield in the Reeder/Conan RIL. QTn.mst-6B was validated by single marker analysis in the McNeal/Thatcher RIL, McNeal/Reeder RIL, and a set of near isogenic line (NIL) developed for QTn.mst-6B. The allele for high PTN significantly increased PTN by 8.7, 4, and 13% in the McNeal/Reeder RIL, McNeal/Thatcher RIL and Choteau/Reeder NIL, respectively. The allele for high PTN also had a significant positive effect on plot weight in the McNeal/Reeder RIL. Our results suggest that high PTN, controlled to a significant extent by QTn.mst-6B, contributed to increased yield potential over a range of environmental conditions. QTn.mst-6B may be useful for improving spring wheat in the northern Great Plains of North America and similar environments.
机译:生产分till数(PTN),定义为产生穗状花序和种子的分ers数,是小麦籽粒产量的关键组成部分。北美大平原北部的春小麦品种在PTN中有所不同。这项研究的目标是(1)使用在一定环境下生长的Reeder / Conan,McNeal / Thatcher和Reeder / McNeal杂交衍生的重组自交系(RIL)群体,确定PTN与农艺性状的关系,以及(2 )以识别和验证与高PTN相关的定量性状基因座(QTL)。基于多年来的平均数,在各人群中PTN与地块权重之间的相关性在 r = 0.4-0.6之间,并且在所有环境中的所有杂交均呈正相关( P <0.05 )。通过为Reeder / Conan RIL生成的遗传图谱,可以确定位于6B号染色体上的环境中PTN的QTL。染色体6B上的QTL( QTn.mst-6B )解释了PTN变异的9-17%,并与QTL共同分离,用于Reeder / Conan RIL。通过在McNeal / Thatcher RIL,McNeal / Reeder RIL中的单标记分析验证了 QTn.mst-6B ,并为 QTn.mst-6B开发了一套近等基因系(NIL) 。高PTN的等位基因分别在McNeal / Reeder RIL,McNeal / Thatcher RIL和Choteau / Reeder NIL中分别将8.7、4和13%的PTN分别提高了。高PTN的等位基因对McNeal / Reeder RIL中的地块重量也具有明显的积极影响。我们的结果表明, QTn.mst-6B 在很大程度上控制了较高的PTN,从而在一定范围的环境条件下提高了产量潜力。 QTn.mst-6B 可能对改善北美北部大平原和类似环境中的春小麦有用。

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