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鉴定春小麦有效分蘖数的数量性状位点及其与农艺性状的关系。

Identification of quantitative trait loci for productive tiller number and its relationship to agronomic traits in spring wheat.

机构信息

Plant Sciences and Plant Pathology Department, Montana State University, Bozeman, MT 59717, USA.

出版信息

Theor Appl Genet. 2011 Oct;123(6):1043-53. doi: 10.1007/s00122-011-1646-0. Epub 2011 Jul 13.

Abstract

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.

摘要

有效分蘖数(PTN)定义为产生穗和种子的分蘖数,是小麦籽粒产量的一个关键组成部分。北美大平原北部的春小麦品种在 PTN 上存在差异。本研究的目的是:(1)利用在不同环境下种植的 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;(2)鉴定并验证与高 PTN 相关的数量性状基因座(QTL)。基于多年的组合平均值,PTN 与小区产量的相关性在各群体中为 r=0.4-0.6,在所有杂交种的每个环境中均为正相关(P<0.05)。为 Reeder/Conan RIL 生成的遗传图谱允许鉴定出一个在环境中一致的、位于 6B 染色体上的 PTN QTL。6B 染色体上的 QTL(QTn.mst-6B)解释了 PTN 变异的 9-17%,并与 Reeder/Conan RIL 中的产量 QTL 共分离。QTn.mst-6B 通过 McNeal/Thatcher RIL、McNeal/Reeder RIL 以及一组针对 QTn.mst-6B 开发的近等基因系(NIL)中的单标记分析进行了验证。在 McNeal/Reeder RIL、McNeal/Thatcher RIL 和 Choteau/Reeder NIL 中,高 PTN 的等位基因分别使 PTN 显著增加了 8.7%、4%和 13%。高 PTN 的等位基因也对 McNeal/Reeder RIL 中的小区产量有显著的正影响。我们的研究结果表明,高 PTN 在很大程度上受到 QTn.mst-6B 的控制,有助于在一系列环境条件下提高产量潜力。QTn.mst-6B 可能对北美大平原北部和类似环境下的春小麦改良有用。

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