Zhou Wei, Wang Xin, Zhou Dan, Ouyang Yidan, Yao Jialing
College of Life Science and Technology, Huazhong Agricultural University, Wuhan, China.
National Key Laboratory of Crop Genetic Improvement and National Center of Plant Gene Research (Wuhan), Huazhong Agricultural University, Wuhan, China.
Plant Biotechnol J. 2017 May;15(5):568-580. doi: 10.1111/pbi.12654. Epub 2016 Nov 22.
Increasing grain yield and improving grain quality are two important goals for rice breeding. A better understanding of the factors that contribute to the overall grain quantity and nutritional quality of rice will lay the foundation for developing new breeding strategies. RAG2 is a member of 14-to-16-kDa α-amylase/trypsin inhibitors in rice, which belong to the albumin of seed storage proteins. We found that RAG2 was specifically expressed in ripening seed and its transcription peak was between 14 and 21 days after flowering. Grain size and 1000-grain weight were obviously increased in RAG2-overexpressed lines compared with wild type, and grain size was reduced in RAG2-suppressed lines. In addition, the major storage substances of the seeds differed significantly in RAG2-overexpressed and RAG2-suppressed lines compared to wild type. The protein content and amount of total lipids were increased and decreased, respectively, in the seeds of RAG2-overexpressed and RAG2-suppressed lines. Overexpression of RAG2 significantly increased grain size and improved grain quality and yield simultaneously. These results imply that RAG2 might play an important role in regulating grain weight and seed quality of rice. The functional characterization of rice RAG2 facilitates a further understanding of the mechanisms involved in grain size and seed quality and may be helpful in improving grain yield and quantity in cereal crops.
提高水稻产量和改善稻米品质是水稻育种的两个重要目标。更好地了解影响水稻总产量和营养品质的因素将为制定新的育种策略奠定基础。RAG2是水稻中14至16 kDaα-淀粉酶/胰蛋白酶抑制剂家族的成员,属于种子贮藏蛋白中的清蛋白。我们发现RAG2在成熟种子中特异性表达,其转录高峰出现在开花后14至21天。与野生型相比,RAG2过表达株系的粒型和千粒重明显增加,而RAG2抑制株系的粒型减小。此外,与野生型相比,RAG2过表达和RAG2抑制株系种子的主要贮藏物质存在显著差异。RAG2过表达株系种子的蛋白质含量增加,总脂含量减少;RAG2抑制株系种子的情况则相反。RAG2的过表达显著增加了粒型,同时提高了稻米品质和产量。这些结果表明,RAG2可能在调控水稻粒重和种子品质方面发挥重要作用。水稻RAG2的功能特性有助于进一步了解粒型和种子品质的调控机制,可能有助于提高谷类作物的产量和品质。