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Variation in Seed Protein Concentration and Seed Size Affects Soybean Crop Growth and Development

机译:种子蛋白质浓度和种子大小的变化影响大豆作物的生长发育

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Developing high protein (HP) cultivars is often precluded by the inverse relationship between protein and yield. We hypothesized that attaining HP concentration based on contrasting seed size impacts crop growth and development differently. We screened 97 soybean genotypes and found lines with HP concentration (a??450 g kga?’1) associated with (i) increased protein content (mg seeda?’1) in large seed genotypes, and (ii) reduced oil and carbohydrate contents in small seed ones. Then, we evaluated different growth traits in a subset of three HP large and three HP small seed genotypes, as well as in three high-yielding genotypes with average seed size and protein concentration. High-yielding genotypes showed higher leaf area duration and harvest index when compared with HP genotypes, regardless of seed size. High protein large seed was associated with more assimilate availability per seed during seed filling, while HP small seed showed higher leaf area at the beginning of seed fill, more canopy biomass production, and very low levels of assimilate per seed. Results show that selecting for seed protein concentration can impact crop growth and development differently, depending on the strategy used for selection in terms of seed size. These findings, if utilized for parental selection, might contribute to eliminating negative correlations between seed protein and yield, since these strategies may be under different genetic control and/or determine different biophysical constraints.
机译:高蛋白(HP)品种的开发通常被蛋白质与产量之间的反比关系所阻碍。我们假设基于不同的种子大小达到HP浓度对作物的生长和发育有不同的影响。我们筛选了97个大豆基因型,发现与HP浓度(a ?? 450 g kga?'1)相关的品系与(i)大种子基因型中蛋白质含量(mg seeda?'1)增加,以及(ii)油和碳水化合物减少有关内含小种子。然后,我们评估了三种HP大和三种HP小种子基因型的子集,以及三种具有平均种子大小和蛋白质浓度的高产基因型的不同生长性状。与HP基因型相比,无论种子大小如何,高产基因型均显示出较高的叶面积持续时间和收获指数。高蛋白大种子与种子填充过程中每个种子的同化物利用率更高相关,而HP小种子在种子填充开始时显示较高的叶面积,更多的冠层生物量产生和每种子同化物水平非常低。结果表明,根据种子大小选择策略,选择种子蛋白浓度对作物生长和发育的影响不同。如果将这些发现用于父母选择,则可能有助于消除种子蛋白与产量之间的负相关性,因为这些策略可能处于不同的遗传控制之下和/或确定了不同的生物物理限制条件。

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