氮气循环
同化(音韵学)
农业
固氮
绿色革命
粮食安全
氮同化
氮气
可持续农业
农学
生物
化学
自然资源经济学
生态学
经济
语言学
哲学
有机化学
作者
Shan Li,Yonghang Tian,Kun Wu,Yafeng Ye,Jianping Yu,Jianqing Zhang,Qian Liu,Mengyun Hu,Hui Li,Yi‐Ping Tong,Nicholas P. Harberd,Xiangdong Fu
出处
期刊:Nature
[Springer Nature]
日期:2018-08-01
卷期号:560 (7720): 595-600
被引量:491
标识
DOI:10.1038/s41586-018-0415-5
摘要
Enhancing global food security by increasing the productivity of green revolution varieties of cereals risks increasing the collateral environmental damage produced by inorganic nitrogen fertilizers. Improvements in the efficiency of nitrogen use of crops are therefore essential; however, they require an in-depth understanding of the co-regulatory mechanisms that integrate growth, nitrogen assimilation and carbon fixation. Here we show that the balanced opposing activities and physical interactions of the rice GROWTH-REGULATING FACTOR 4 (GRF4) transcription factor and the growth inhibitor DELLA confer homeostatic co-regulation of growth and the metabolism of carbon and nitrogen. GRF4 promotes and integrates nitrogen assimilation, carbon fixation and growth, whereas DELLA inhibits these processes. As a consequence, the accumulation of DELLA that is characteristic of green revolution varieties confers not only yield-enhancing dwarfism, but also reduces the efficiency of nitrogen use. However, the nitrogen-use efficiency of green revolution varieties and grain yield are increased by tipping the GRF4–DELLA balance towards increased GRF4 abundance. Modulation of plant growth and metabolic co-regulation thus enables novel breeding strategies for future sustainable food security and a new green revolution. The balance of DELLA and GRF4 proteins in plants ensures the co-regulation of growth with metabolism and tipping this balance towards GRF4 leads to higher efficiency of nitrogen use.
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