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果皮细胞长度的增加是六倍体小麦粒重的一个主要数量性状位点的基础。

Increased pericarp cell length underlies a major quantitative trait locus for grain weight in hexaploid wheat.

机构信息

John Innes Centre, Norwich Research Park, Norwich, NR4 7UH, UK.

出版信息

New Phytol. 2017 Aug;215(3):1026-1038. doi: 10.1111/nph.14624. Epub 2017 Jun 2.

Abstract

Crop yields must increase to address food insecurity. Grain weight, determined by grain length and width, is an important yield component, but our understanding of the underlying genes and mechanisms is limited. We used genetic mapping and near isogenic lines (NILs) to identify, validate and fine-map a major quantitative trait locus (QTL) on wheat chromosome 5A associated with grain weight. Detailed phenotypic characterisation of developing and mature grains from the NILs was performed. We identified a stable and robust QTL associated with a 6.9% increase in grain weight. The positive interval leads to 4.0% longer grains, with differences first visible 12 d after fertilization. This grain length effect was fine-mapped to a 4.3 cM interval. The locus also has a pleiotropic effect on grain width (1.5%) during late grain development that determines the relative magnitude of the grain weight increase. Positive NILs have increased maternal pericarp cell length, an effect which is independent of absolute grain length. These results provide direct genetic evidence that pericarp cell length affects final grain size and weight in polyploid wheat. We propose that combining genes that control distinct biological mechanisms, such as cell expansion and proliferation, will enhance crop yields.

摘要

为了解决粮食不安全问题,作物产量必须提高。粒重是产量的一个重要组成部分,由粒长和粒宽决定,但我们对其潜在基因和机制的了解还很有限。我们利用遗传图谱和近等基因系(NILs),鉴定、验证并精细定位了与粒重相关的小麦 5A 染色体上的一个主要数量性状位点(QTL)。我们对 NILs 发育中和成熟中的籽粒进行了详细的表型特征分析。我们发现了一个与粒重增加 6.9%相关的稳定而强大的 QTL。该正区间导致粒长增加 4.0%,在受精后 12 天就可以看到差异。该粒长效应被精细定位到 4.3cM 的区间。该基因座在后期粒发育过程中对粒宽(1.5%)也有一个多效性影响,决定了粒重增加的相对幅度。正 NIL 增加了母本果皮细胞的长度,这种效应与绝对粒长无关。这些结果提供了直接的遗传证据,表明果皮细胞长度影响多倍体小麦的最终籽粒大小和重量。我们提出,结合控制不同生物学机制的基因,如细胞扩张和增殖,将提高作物产量。

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