Shen Qiuping, Xie Yujun, Qiu Xinzhe, Yu Jinsheng
The Key Laboratory for Quality Improvement of Agricultural Products of Zhejiang Province, Zhejiang A & F University, Hangzhou, China.
College of Advanced Agricultural Sciences, Zhejiang A & F University, Hangzhou, China.
Front Plant Sci. 2022 Oct 7;13:1021203. doi: 10.3389/fpls.2022.1021203. eCollection 2022.
How to improve the yield of crops has always been the focus of breeding research. Due to the population growth and global climate change, the demand for food has increased sharply, which has brought great challenges to agricultural production. In order to make up for the limitation of global cultivated land area, it is necessary to further improve the output of crops. Photosynthesis is the main source of plant assimilate accumulation, which has a profound impact on the formation of its yield. This review focuses on the cultivation of high light efficiency plants, introduces the main technical means and research progress in improving the photosynthetic efficiency of plants, and discusses the main problems and difficulties faced by the cultivation of high light efficiency plants. At the same time, in view of the frequent occurrence of high-temperature disasters caused by global warming, which seriously threatened plant normal production, we reviewed the response mechanism of plants to heat stress, introduced the methods and strategies of how to cultivate heat tolerant crops, especially rice, and briefly reviewed the progress of heat tolerant research at present. Given big progress in these area, the era of cultivating smart rice with high light efficiency and heat tolerance has come of age.
如何提高作物产量一直是育种研究的重点。由于人口增长和全球气候变化,粮食需求急剧增加,这给农业生产带来了巨大挑战。为了弥补全球耕地面积的限制,有必要进一步提高作物产量。光合作用是植物同化物积累的主要来源,对其产量形成有着深远影响。本文综述聚焦于高光效植物的培育,介绍了提高植物光合效率的主要技术手段和研究进展,并探讨了高光效植物培育面临的主要问题和困难。同时,鉴于全球变暖导致高温灾害频发,严重威胁植物正常生产,我们综述了植物对热胁迫的响应机制,介绍了如何培育耐热作物,尤其是水稻的方法和策略,并简要回顾了目前耐热性研究的进展。鉴于这些领域取得的巨大进展,培育高光效、耐热智能水稻的时代已经到来。