Huang Yifeng, Du Longgang, Wang Meixi, Ren Mengyun, Yu Shouwu, Yang Qianying
Institute of Crop and Nuclear Technology Utilization, Zhejiang Academy of Agricultural Science, Hangzhou, China.
Guangdong Province Key Laboratory of Plant Molecular Breeding, Guangzhou, China.
Front Plant Sci. 2022 Jul 25;13:974396. doi: 10.3389/fpls.2022.974396. eCollection 2022.
Rice is an important cereal crop, which provides staple food for more than half of the world's population. To meet the demand of the ever-growing population in the next few decades, an extra increase in rice yield is an urgent need. Given that various agronomic traits contribute to the yield of rice, deciphering the key regulators involved in multiple agronomic trait formation is particularly important. As a superfamily of transcription factors, zinc finger proteins participate in regulating multiple genes in almost every stage of rice growth and development. Therefore, understanding zinc finger proteins underlying regulatory network would provide insights into the regulation of agronomic traits in rice. To this end, we intend to summarize the current advances in zinc finger proteins, with emphasis on C2H2 and CCCH proteins, and then discuss their potential in improving rice yield.
水稻是一种重要的谷类作物,为世界一半以上的人口提供主食。为满足未来几十年不断增长的人口需求,迫切需要进一步提高水稻产量。鉴于多种农艺性状对水稻产量有贡献,解析参与多种农艺性状形成的关键调控因子尤为重要。作为转录因子的一个超家族,锌指蛋白几乎参与水稻生长发育的每个阶段中多个基因的调控。因此,了解锌指蛋白潜在的调控网络将为水稻农艺性状的调控提供见解。为此,我们打算总结锌指蛋白的当前进展,重点是C2H2和CCCH蛋白,然后讨论它们在提高水稻产量方面的潜力。