Soybean and N Fixation Research Unit, USDA/ARS, Raleigh, North Carolina, United States of America.
Soil and Crop Science, North Carolina State University, Raleigh, North Carolina, United States of America.
PLoS One. 2024 Nov 12;19(11):e0310544. doi: 10.1371/journal.pone.0310544. eCollection 2024.
Soybean seed-protein content and composition is important because it contributes over half the value of this $61 billion crop. Historic negative correlation between seed-protein content and oil have been reported. Similarly, negative correlation between seed-protein content and yield have been reported but may be at least in part mitigated by increasing the genetic diversity of the elite soybean germplasm. Improvements in amino acid composition of seed-protein would increase the value of soybean meal and protein for animal and human consumption. We have identified a genetic resource in wild soybean germplasm, PI424025B, with elevated seed-protein, elevated cysteine in the seed and increased sulfur content in the seed. We have developed a population of Recombinant Inbred Lines derived from a cross between NC-Raleigh and PI424025B. We evaluated the carbon, nitrogen and sulfur (C, N and S) content of seeds from the progeny, the parents and other high-seed protein soybean lines. N content and C/N (ratio of C to N) were well correlated with protein content measured by NIR. PI424025B had a N content comparable to high-protein soybean lines and a superior N/S. These traits were inherited by some of the progeny. Quantitative Trait Loci (QTL) associated with high-seed protein were identified on chr2, chr20 and chr15 and colocalizes with well characterized loci on chr 15 and chr 20 known to affect seed-protein content and quality. A potentially unique QTL was identified on Chr15. Unlike the chr20 QTL, the chr15 QTL improved S content relative to N content and was superior to other high seed-protein phenotypes tested. These data indicate that PI424025B is a valuable resource to diversify the genetics of soybean while improving soybean seed-protein content and composition.
大豆种子的蛋白质含量和组成很重要,因为它贡献了这个价值 610 亿美元作物的一半以上。据报道,种子蛋白质含量与油之间存在历史上的负相关关系。同样,种子蛋白质含量与产量之间也存在负相关关系,但通过增加优秀大豆种质的遗传多样性,这种关系可能至少在一定程度上得到缓解。提高种子蛋白质的氨基酸组成将提高大豆粉和蛋白质对动物和人类的营养价值。我们已经在野生大豆种质中发现了一种遗传资源,PI424025B,它具有高蛋白、种子中高半胱氨酸和种子中高硫含量的特点。我们已经开发了一个由 NC-Raleigh 和 PI424025B 杂交衍生的重组自交系群体。我们评估了来自后代、亲本和其他高蛋白大豆系的种子的碳、氮和硫(C、N 和 S)含量。N 含量和 C/N(C 与 N 的比值)与近红外法测量的蛋白质含量高度相关。PI424025B 的 N 含量与高蛋白大豆系相当,而 N/S 则更高。这些性状在一些后代中遗传。与高蛋白种子相关的数量性状基因座(QTL)被鉴定在 chr2、chr20 和 chr15 上,并且与已知影响种子蛋白质含量和质量的 chr15 和 chr20 上的特征性基因座共定位。在 chr15 上鉴定到一个潜在的独特 QTL。与 chr20 QTL 不同,chr15 QTL 提高了 S 含量相对于 N 含量,并且优于其他测试的高蛋白种子表型。这些数据表明,PI424025B 是一种宝贵的资源,可以丰富大豆的遗传多样性,同时提高大豆种子的蛋白质含量和组成。