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Higher grain yield and higher grain protein deviation underline the potential of hybrid wheat for a sustainable agriculture

机译:更高的谷物产量和更高的晶粒蛋白偏差为可持续农业的杂交小麦的潜力强调

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Grain yield and protein content are traits of major importance in wheat breeding, but their combination is challenging due to a tight negative correlation. Protein yield and grain protein deviation have been proposed as selection criteria to simultaneously improve both traits. Sedimentation volume is an indicator of protein quality, which plays an important role for bread-making quality in wheat. All these traits have been investigated in our study with 135 parental inbred lines, their 1,604 hybrids and 10 commercial check varieties evaluated at five environments. The focus of our study was to investigate the usefulness of the grain protein deviation and to define a bivariate model for calculating the grain protein deviation. Further, we compared line and hybrid wheat for grain yield and quality-related parameters such as protein content and sedimentation volume. The grain protein deviation determined with a bivariate model delivered robust estimates of variance components and enabled a balanced selection of genotypes with improved protein content and grain yield across different quality classes. Although heterosis for protein content and sedimentation volume was negative, hybrids had a higher grain protein deviation as well as higher grain yield at a given sedimentation volume or a given protein content than line varieties.
机译:籽粒产量和蛋白质含量是小麦育种主要重要性的性质,但由于密度密切相关,它们的组合是挑战。已经提出了蛋白质产量和晶粒蛋白偏差作为同时改善两个特征的选择标准。沉积体积是蛋白质质量的指标,这对小麦的面包质量起着重要作用。在我们的研究中已经调查了所有这些特征,并在135条父母自交系中,其1,604个杂种和10个商业检查品种在五种环境中进行了评估。我们研究的重点是探讨谷物蛋白偏差的有用性,并限定用于计算谷物蛋白偏差的双变量模型。此外,我们对谷物产量和质量相关的参数进行了比较了线和杂交小麦,例如蛋白质含量和沉降体积。用双变量模型确定的谷物蛋白质偏差提供了方差分量的稳健估计,并使基因型的平衡选择具有改善的蛋白质含量和不同质量等级的谷物产量。尽管蛋白质含量和沉淀体积的杂种优势是阴性的,但杂交种具有更高的粒蛋白质偏差以及给定沉降体积或给定的蛋白质含量比线变异的更高的谷物产量。

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