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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Identification of Quantitative Trait loci and Environmental Interactions for Accumulation and Remobilization of Water-Soluble Carbohydrates in Wheat (Triticum aestivum L.) Stems
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Identification of Quantitative Trait loci and Environmental Interactions for Accumulation and Remobilization of Water-Soluble Carbohydrates in Wheat (Triticum aestivum L.) Stems

机译:小麦(Triticum aestivum L.)茎中水溶性碳水化合物积累和迁移的数量性状位点和环境相互作用的鉴定

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摘要

Genetic analyses of nine traits associated with stem water-soluble carbohydrate (SWSC) accumulation and remobilization at grain-filling period under drought stress (DS) and well-watered (WW) conditions were undertaken using doubled haploid lines (DHLs) derived from two Chinese common wheat cultivars. Some significantly and very significantly positive correlation was observed among nine traits associated with SWSC. Higher phenotypic values for most traits were detected under DS. Broad sense heritabilities (atchmode documentclass[fleqn,10pt,legalpaper]{article} usepackage{amssymb} usepackage{amsfonts} usepackage{amsmath} pagestyle{empty} egin{document} (h_{mathrm{B}}^{2}) end{document}) of the traits showed wide fluctuations between two water treatments. A total of 48 additive and 62 pairs of epistatic QTL for nine traits were identified as distributing on all 21 chromosomes. A majority of QTL involved significant additive and epistatic effects with interactions of QTL and environments (QEIs). Two additive and two pairs of epistatic loci involved only QEIs without corresponding significant additive or epistatic effects. The contributions of the additive QEIs were two- to fourfolds higher than those of their corresponding additive QTL. Most of the additive QEIs for traits associated with SWSC interacted with DS. In addition, some QTL for the grain-filling efficiencies and thousand-grain weight were colocated in the same or adjacent chromosome intervals with QTL for accumulation and remobilization efficiency of SWSC before 14 days after flowering.
机译:利用来自两个中国人的双单倍体系(DHLs),对与干旱胁迫(DS)和水分充足(WW)条件下的灌浆期干水溶性碳水化合物(SWSC)积累和迁移相关的九个性状进行了遗传分析。普通小麦品种。在与SWSC相关的9个性状之间观察到一些显着且非常显着的正相关。在DS下检测到大多数性状的较高的表型值。广义遗传(atchmode documentclass [fleqn,10pt,legalpaper] {article} usepackage {amssymb} usepackage {amsfonts} usepackage {amsmath} pagestyle {empty} egin {document}(h_ {mathrm {B}} ^ {2})结尾{document}的性状表明两种水处理之间的波动很大。共有48个累加性和62对上位QTL对9个性状的鉴定被分布在所有21条染色体上。大多数QTL涉及大量的加性和上位性效应,以及QTL与环境(QEI)的相互作用。两个加性和两对上位基因座仅涉及QEI,而没有相应的显着加性或上位性作用。附加QEI的贡献比其相应附加QTL的贡献高出两倍到四倍。与SWSC相关的性状的大多数加性QEI与DS相互作用。另外,在开花后14天前,将与灌浆效率和千粒重相关的一些QTL与QTL并置在相同或相邻的染色体区间内,以提高SWSC的积累和迁移效率。

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