Kumar Ritesh, Mulkey Steven, Shelake Rahul Mahadev, Combs-Giroir Rachel, Mukherjee Thiya, Allen Doug K, Clemente Tom Elmo, Stacey Minviluz G, Lorenz Aaron J, Stupar Robert M
Department of Agronomy and Plant Genetics, University of Minnesota, Saint Paul, Minnesota, USA.
Ball Horticultural, West Chicago, Illinois, USA.
Plant Genome. 2025 Dec;18(4):e70115. doi: 10.1002/tpg2.70115.
Breeders and geneticists have put great effort into enhancing soybean seed composition and developing elite varieties with desired traits. However, diverse end-uses and changing consumer preferences present new challenges and opportunities to develop desired compositional profiles for the market. Recent advances in genetics and novel technologies have allowed researchers to characterize genes impacting seed composition and provide a means for addressing these shifting consumer needs. Some of the desired compositional traits for soybean [Glycine max (L.) Merr.] include increased levels of protein, oil, sucrose, sulfur-containing amino acids, and omega-3 fatty acids, and reduced allergens, raffinose family oligosaccharides, or saponins. This comprehensive review considers the current status of key components of soybean seed composition and forecasts opportunities based on candidate genes/pathways that may be targeted to add seed value. The review addresses a holistic view on interactions between the genome, transcriptome, proteome, and epigenome, along with metabolic flux analysis to gain insights into biological underpinnings governing seed composition.
育种者和遗传学家在提高大豆种子成分以及培育具有理想性状的优良品种方面付出了巨大努力。然而,多样化的最终用途和不断变化的消费者偏好给开发符合市场需求的成分特征带来了新的挑战和机遇。遗传学和新技术的最新进展使研究人员能够鉴定影响种子成分的基因,并为满足消费者不断变化的需求提供了途径。大豆[Glycine max (L.) Merr.]一些理想的成分性状包括蛋白质、油、蔗糖、含硫氨基酸和ω-3脂肪酸含量增加,以及过敏原、棉子糖家族寡糖或皂苷含量降低。这篇综述全面考虑了大豆种子成分关键组分的现状,并基于可能用于增加种子价值的候选基因/途径预测了相关机遇。该综述探讨了基因组、转录组、蛋白质组和表观基因组之间相互作用的整体观点,以及代谢通量分析,以深入了解调控种子成分的生物学基础。