A sucrose-binding protein and β-conglycinins regulate soybean seed protein content and control multiple seed traits

蔗糖 生物 植物 化学 园艺 食品科学
作者
Naoufal Lakhssassi,Abdelhalim El Baze,Dounya Knizia,Yasser Salhi,Mohamed G. Embaby,Erdem Anil,Cullen Mallory,Aicha Lakhssassi,Jonas Meksem,Haiying Shi,Tri D. Vuong,Kenza Meksem,My Abdelmajid Kassem,Amer AbuGhazaleh,Henry T. Nguyen,Nacer Bellaloui,Adnane Boualem,Khalid Meksem
出处
期刊:Plant Physiology [Oxford University Press]
卷期号:196 (2): 1298-1321 被引量:6
标识
DOI:10.1093/plphys/kiae380
摘要

Abstract Expanded agriculture production is required to support the world's population but can impose substantial environmental and climate change costs, particularly with intensifying animal production and protein demand. Shifting from an animal- to a plant-based protein diet has numerous health benefits. Soybean (Glycine max [L.] Merr.) is a major source of protein for human food and animal feed; improved soybean protein content and amino acid composition could provide high-quality soymeal for animal feed, healthier human foods, and a reduced carbon footprint. Nonetheless, during the soybean genome evolution, a balance was established between the amount of seed protein, oil, and carbohydrate content, burdening the development of soybean cultivars with high proteins (HPs). We isolated 2 high-seed protein soybean mutants, HP1 and HP2, with improved seed amino acid composition and stachyose content, pointing to their involvement in controlling seed rebalancing phenomenon. HP1 encodes β-conglycinin (GmCG-1) and HP2 encodes sucrose-binding protein (GmSBP-1), which are both highly expressed in soybean seeds. Mutations in GmSBP-1, GmCG-1, and the paralog GmCG-2 resulted in increased protein levels, confirming their role as general regulators of seed protein content, amino acid seed composition, and seed vigor. Biodiversity analysis of GmCG and GmSBP across 108 soybean accessions revealed haplotypes correlated with protein and seed carbohydrate content. Furthermore, our data revealed an unprecedented role of GmCG and GmSBP proteins in improving seed vigor, crude protein, and amino acid digestibility. Since GmSBP and GmCG are present in most seed plants analyzed, these genes could be targeted to improve multiple seed traits.
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