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Vernalization requirement duration in winter wheat is controlled by TaVRN-A1 at the protein level

机译:TaVRN-A1在蛋白质水平上控制冬小麦的春化要求持续时间

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摘要

Winter wheat requires a period of low temperatures to accelerate flowering (vernalization). This requirement could make winter wheat more vulnerable to elevated global temperature via insufficient vernalization. All known vernalization genes are cloned according to qualitative variation in vernalization requirement between spring and winter wheat, but the genes controlling quantitative variation for more or less vernalization requirement among winter wheat cultivars remain unknown. We report here that the gene for the vernalization requirement duration in winter wheat was cloned using a BC1F2:3 population that segregated in a 3:1 ratio of early-flowering plants and late-flowering plants after vernalization for 3 weeks. The positional cloning of the gene for vernalization requirement duration demonstrated that this trait is controlled by TaVRN-A1 at the protein level. The Ala180 in vrn-A1a, encoded by the dominant allele for 3–week vernalization, was mutated to Val180 in vrn-A1b, encoded by the recessive allele for 6–week vernalization. Further studies with in vitro protein pull-down assays and immunoprecipitation analyses indicated that the mutated Val180 in vrn-A1b protein decreased the ability to bind with TaHOX1 (the first homeobox protein in Triticum aestivum). The direct binding of TaVRN-A1 and TaHOX1 proteins was confirmed in the nucleus of living plant cells by bimolecular fluorescence complementation (BiFC) analyses. The TaHOX1 gene was found to be upregulated by low temperatures, and to have a significant genetic effect on heading date, suggesting that TaHOX1 functions in the flowering pathway in winter wheat.
机译:冬小麦需要一段低温才能加速开花(春化)。此要求可能会由于春化不足而使冬小麦更容易受到全球气温升高的影响。根据春小麦和冬小麦的春化需求量的定性变异,克隆了所有已知的春化基因,但控制冬小麦品种或多或少春化需求量变化的基因仍然未知。我们在这里报告,使用BC1F2:3群体克隆了冬小麦春化要求持续时间的基因,该群体在春化后3周以早花和晚花的3:1比例隔离。春化要求持续时间的基因的位置克隆表明,该性状在蛋白质水平上受TaVRN-A1控制。由优势等位基因编码的vla-sAla中的Ala 180 进行3周的春化,由隐性等位基因编码的vrn-A1b中的Val 180 突变为6 –周春化。进一步的体外蛋白下拉试验和免疫沉淀分析研究表明,vrn-A1b蛋白中突变的Val 180 降低了与TaHOX1(普通小麦中的第一个同源盒蛋白)结合的能力。 TaVRN-A1和TaHOX1蛋白的直接结合通过双分子荧光互补(BiFC)分析在活植物细胞核中得以证实。发现TaHOX1基因在低温下被上调,并且对抽穗期具有显着的遗传效应,这表明TaHOX1基因在冬小麦的开花途径中起作用。

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