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首页> 外文期刊>Molecular Breeding >QTL analysis of a cross between European and North American malting barleys reveals a putative candidate gene for β-glucan content on chromosome 1H
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QTL analysis of a cross between European and North American malting barleys reveals a putative candidate gene for β-glucan content on chromosome 1H

机译:对欧洲和北美麦芽大麦杂交的QTL分析揭示了1H染色体上β-葡聚糖含量的候选基因

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To determine the genetic factors influencing grain β-glucan content, that were effective in a population of two-row barley grown in very contrasting environments, 102 doubled haploid lines from the cross Beka × Logan were sown at two sites, Lleida (N.E. Spain) and Dundee (E. Scotland) in 2002. Following harvest, grain samples were assessed for total β-glucan content. Beka had lower β-glucan content than Logan at both sites but, while there was transgressive segregation among the DH lines, this was primarily amongst lines with higher β-glucan than Logan. In addition to differences between DH lines, there were differences between the sites and there was also genotype × site interaction. Three QTLs for β-glucan content were detected at both sites, but their contribution to β-glucan content was, in all cases, higher at Lleida compared to Dundee. One QTL was located in the distal end of the long arm of chromosome 1H, in the same region as a gene for UDP-glucose-4-epimerase, an enzyme known to be involved in the synthesis of cell wall polysaccharides, while another was located in the same area of chromosome 5H as a genetic factor shown previously, in the same cross, to influence grain protein content. The third was in the centromeric region of chromosome 7H, close to the gene for naked (hulless) grain. These findings will be important in designing crosses and devising selection strategies in breeding of both low β-glucan, malting barley and high β-glucan, hulless barley for human food use.
机译:为了确定影响谷物β-葡聚糖含量的遗传因素,这些因素在非常相反的环境中生长的两行大麦种群中是有效的,在两个地点Lleida(西班牙东北)播种了102倍来自Beka×Logan杂交的单倍体系。和Dundee(E. Scotland)在2002年。收获后,对谷物样品中的总β-葡聚糖含量进行了评估。 Beka在两个位点均具有比Logan低的β-葡聚糖含量,但是,尽管DH系之间存在过分的分离,但这主要是在具有比Logan高的β-葡聚糖的系中。除了DH系之间的差异外,位点之间也存在差异,并且基因型×位点相互作用也存在。在两个位点均检测到三个针对β-葡聚糖含量的QTL,但在所有情况下,其对β-葡聚糖含量的贡献均高于邓迪。一个QTL位于1H染色体长臂的末端,与UDP-葡萄糖-4-表异构酶(一种已知参与细胞壁多糖合成的酶)的基因位于同一区域,而另一个位于在5H染色体的同一区域中与先前显示的遗传因子在同一交叉中影响谷物蛋白质含量。第三个位于染色体7H的着丝粒区域,靠近裸粒(无壳)的基因。这些发现对于设计杂交品和制定选择策略以供人类食用的低β-葡聚糖麦芽大麦和高β-葡聚糖无壳大麦具有重要意义。

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