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首页> 外文期刊>The New Phytologist >A wheat 1-FEH w3 variant underlies enzyme activity for stem WSC remobilization to grain under drought
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A wheat 1-FEH w3 variant underlies enzyme activity for stem WSC remobilization to grain under drought

机译:小麦1-FEH w3变体是干旱下茎WSC转运至谷物的酶活性基础

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In wheat stems, the levels of fructan-dominated water-soluble carbohydrates (WSC) do not always correlate well with grain yield. Field drought experiments were carried out to further explain this lack of correlation. Wheat (Triticum aestivum) varieties, Westonia, Kauz and c. 20 genetically diverse double haploid (DH) lines derived from them were investigated. Substantial genotypic differences in fructan remobilization were found and the 1-FEH w3 gene was shown to be the major contributor in the stem fructan remobilization process based on enzyme activity and gene expression results. A single nucleotide polymorphism (SNP) was detected in an auxin response element in the 1-FEH w3 promoter region, therefore we speculated that the mutated Westonia allele might affect gene expression and enzyme activity levels. A cleaved amplified polymorphic (CAP) marker was generated from the SNP. The harvested results showed that the mutated Westonia 1-FEH w3 allele was associated with a higher thousand grain weight (TGW) under drought conditions in 2011 and 2012. These results indicated that higher gene expression of 1-FEH w3 and 1-FEH w3 mediated enzyme activities that favoured stem WSC remobilization to the grains. The CAP marker residing in the 1-FEH w3 promoter region may facilitate wheat breeding by selecting lines with high stem fructan remobilization capacity under terminal drought.
机译:在小麦茎中,以果聚糖为主的水溶性碳水化合物(WSC)的水平并不总是与谷物产量良好相关。进行了野外干旱实验以进一步解释这种缺乏相关性。小麦(Triticum aestivum)品种,Westonia,Kauz和c。研究了从它们衍生的20个遗传多样性双单倍体(DH)系。基于酶活性和基因表达结果,发现在果聚糖固定化过程中存在明显的基因型差异,并且1-FEH w3基因被证明是果聚糖固定化过程的主要贡献者。在1-FEH w3启动子区域的生长素应答元件中检测到单核苷酸多态性(SNP),因此我们推测突变的Westonia等位基因可能影响基因表达和酶活性水平。从SNP产生切割的扩增多态性(CAP)标记。收获的结果表明,在干旱条件下,2011和2012年,Westonia 1-FEH w3等位基因突变与较高的千粒重(TGW)相关。这些结果表明1-FEH w3和1-FEH w3的基因表达较高有利于茎WSC转运至谷物的酶活性。处于1-FEH w3启动子区域的CAP标记可以通过选择在极端干旱条件下具有高茎果聚糖动员能力的品系来促进小麦育种。

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