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首页> 外文期刊>Crop science >Marker-Assisted Selection for Elevated Concentrations of the ?±a€2 Subunit of ?2-Conglycinin and Its Influence on Agronomic and Seed Traits of Soybean
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Marker-Assisted Selection for Elevated Concentrations of the ?±a€2 Subunit of ?2-Conglycinin and Its Influence on Agronomic and Seed Traits of Soybean

机译:α2-伴大豆球蛋白α±a€2亚基浓度升高的标记辅助选择及其对大豆农艺和种子性状的影响

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Soybean [Glycine max (L.) Merr.] cultivars with elevated concentrations of the ?±a€2 subunit of ?2-conglycinin (BC) may provide health benefits to soy protein consumers. Two Monsanto single nucleotide polymorphism markers were used to classify F2 plants in four segregating populations as having elevated ?±a€2 concentration (EAP) or normal ?±a€2 concentration (NAP). Seeds from one F3 progeny of each F2 plant were analyzed for protein composition by sodium dodecyl-sulfate polyacrylamide gel electrophoresis. Of the 800 plants in the four populations evaluated with the two markers, 82% were correctly classified for the EAP trait and 80% for the NAP trait. The EAP and NAP traits were evaluated in combination with the four glycinin genotypes gy1,2, Gy3, gy4, Gy5; gy1,2, Gy3, gy4, gy5; gy1,2, gy3, gy4, Gy5; and gy1,2, gy3, gy4, gy5. The seed yield, time of maturity, and protein and oil concentration were evaluated for 18 F3:5 lines in each of the eight genotypic classes of the four populations at three environments in 2011. The EAP trait resulted in a significant increase in the ?±a€2 and ?2 subunits of BC and a decrease in the ?± subunit, with no consistent impact on total BC, total glycinin, seed yield, maturity, and protein and oil concentrations. It should be possible to develop acceptable soybean cultivars that have the EAP trait in combination with the glycinin genotype gy1,2, gy3, gy4, gy5 to obtain a high concentration of the ?±a€2 subunit and total BC with no glycinin for soy-based food products.
机译:大豆中β2-伴大豆球蛋白(BC)的α±a2亚基浓度升高的品种可能为大豆蛋白消费者带来健康益处。使用两个孟山都单核苷酸多态性标记将四个隔离种群中的F2植物分类为具有较高的α±a2浓度(EAP)或正常的α±a2浓度(NAP)。通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳分析每种F2植物的一个F3后代的种子的蛋白质组成。在使用两种标记物评估的四个种群中的800株植物中,正确分类为EAP性状的占82%,而正确分解为NAP性状的占80%。结合四种大豆球蛋白基因型gy1,2,Gy3,gy4,Gy5评估EAP和NAP性状。 gy1,2,Gy3,gy4,gy5; gy1,2,gy3,gy4,Gy5;和gy1,2,gy3,gy4,gy5。在2011年的三个环境中,对四个种群的八个基因型类别中的18个F3:5品系的种子产量,成熟时间以及蛋白质和油含量进行了评估。EAP性状导致α±显着增加。 BC的a€2和?2亚基以及?±亚基的减少,对总BC,总大豆球蛋白,种子产量,成熟度以及蛋白质和油脂浓度没有持续的影响。应该有可能开发出具有EAP特性且与大豆球蛋白基因型gy1,2,gy3,gy4,gy5相结合的大豆品种,从而获得高浓度的α±a€2亚基和大豆中没有大豆球蛋白的总BC为主的食品。

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