Quilichini Teagen D, Gao Peng, Yu Bianyun, Bing Dengjin, Datla Raju, Fobert Pierre, Xiang Daoquan
Aquatic and Crop Resource Development, National Research Council Canada, Saskatoon, SK S7N 0W9, Canada.
Saskatoon Research and Development Centre, Agriculture and Agri-Food Canada, 107 Science Place, Saskatoon, SK S7N 0X2, Canada.
Plants (Basel). 2022 Aug 6;11(15):2056. doi: 10.3390/plants11152056.
Seed development in angiosperms produces three genetically and developmentally distinct sub-compartments: the embryo, endosperm, and seed coat. The maternally derived seed coat protects the embryo and interacts closely with the external environment especially during germination and seedling establishment. Seed coat is a key contributor to seed composition and an important determinant of nutritional value for humans and livestock. In this review, we examined pea crop productivity through the lens of the seed coat, its contribution to several valued nutritional traits of the pea crop, and its potential as a breeding target. Key discoveries made in advancing the knowledge base for sensing and transmission of external signals, the architecture and chemistry of the pea seed coat, and relevant insights from other important legumes were discussed. Furthermore, for selected seed coat traits, known mechanisms of genetic regulation and efforts to modulate these mechanisms to facilitate composition and productivity improvements in pea were discussed, alongside opportunities to support the continued development and improvement of this underutilized crop. This review describes the most important features of seed coat development in legumes and highlights the key roles played by the seed coat in pea seed development, with a focus on advances made in the genetic and molecular characterization of pea and other legumes and the potential of this key seed tissue for targeted improvement and crop optimization.
胚、胚乳和种皮。母本来源的种皮保护胚,并与外部环境密切相互作用,尤其是在萌发和幼苗形成期间。种皮是种子成分的关键贡献者,也是对人类和牲畜营养价值的重要决定因素。在本综述中,我们从种皮的角度审视了豌豆作物的生产力、其对豌豆作物若干重要营养特性的贡献以及作为育种目标的潜力。讨论了在推进外部信号感知和传递的知识库、豌豆种皮的结构和化学以及其他重要豆科植物的相关见解方面取得的关键发现。此外,针对选定的种皮性状,讨论了已知的遗传调控机制以及为调节这些机制以促进豌豆成分和生产力提高所做的努力,以及支持这种未充分利用作物持续开发和改良的机会。本综述描述了豆科植物种皮发育的最重要特征,强调了种皮在豌豆种子发育中的关键作用,重点是豌豆和其他豆科植物在遗传和分子表征方面取得的进展以及这种关键种子组织在定向改良和作物优化方面的潜力。