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Introgression of a major gene for high grain protein content in some Indian bread wheat cultivars

机译:一些印度面包小麦品种的高谷蛋白含量的主要基因渗入

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In bread wheat, high grain protein content (GPC) determines nutritional value, processing properties and quality of the end-product. In view of this, marker-assisted selection (MAS) was performed for introgression of a major gene for high GPC (Gpc-B1) into 10 wheat genotypes. As a result, 124 BC3F5/F-6 progenies with Gpc-B1 were developed and evaluated in multi-location field trials. Significant interaction of Gpc-B1 with the recipient parent genotypes and the environment was noticed. However, a total of seven MAS-derived progenies with significantly higher GPC (14.83-17.85%) than their recipient parental genotypes and having no yield penalty were obtained. In these selected progenies, no significant negative correlation of grain yield with GPC (%) or protein yield was observed suggesting that GPC could be improved without yield penalty. This study thus suggested that MAS in combination with phenotypic selection is a useful strategy for development of wheat genotypes with high GPC associated with no loss in yield
机译:在面包小麦中,高谷物蛋白含量(GPC)决定了营养价值,加工特性和最终产品的质量。鉴于此,进行了标记辅助选择(MAS),以将高GPC的主要基因(Gpc-B1)渗入10个小麦基因型。结果,开发了124个带有Gpc-B1的BC3F5 / F-6后代,并在多地点田间试验中进行了评估。注意到Gpc-B1与受体亲本基因型和环境之间的显着相互作用。然而,总共获得了七个MAS衍生后代,它们的GPC显着高于其受体亲本基因型(14.83-17.85%),并且没有产量损失。在这些选定的子代中,未观察到谷物产量与GPC(%)或蛋白质产量之间的显着负相关,表明可以改善GPC而不会造成产量损失。因此,这项研究表明,MAS与表型选择相结合是发展具有高GPC且无产量损失的小麦基因型的有用策略。

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