Coordination of growth and drought responses by GA‐ABA signaling in rice

Author:

Liao Zhigang12ORCID,Zhang Yunchao1,Yu Qing13,Fang Weicong13,Chen Meiyao13,Li Tianfei12,Liu Yi12,Liu Zaochang12,Chen Liang12,Yu Shunwu12ORCID,Xia Hui12,Xue Hong‐Wei4ORCID,Yu Hong5,Luo Lijun12

Affiliation:

1. Shanghai Collaborative Innovation Center of Agri‐Seeds Shanghai Agrobiological Gene Center Shanghai 201106 China

2. Key Laboratory of Grain Crop Genetic Resources Evaluation and Utilization Ministry of Agriculture and Rural Affairs Shanghai 201106 China

3. College of Plant Science and Technology Huazhong Agricultural University Wuhan 430070 China

4. Shanghai Collaborative Innovation Center of Agri‐Seeds, Joint Center for Single Cell Biology, School of Agriculture and Biology Shanghai Jiao Tong University Shanghai 200240 China

5. State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Innovation Academy for Seed Design Chinese Academy of Sciences Beijing 100101 China

Abstract

Summary The drought caused by global warming seriously affects the crop growth and agricultural production. Plants have evolved distinct strategies to cope with the drought environment. Under drought stress, energy and resources should be diverted from growth toward stress management. However, the molecular mechanism underlying coordination of growth and drought response remains largely elusive. Here, we discovered that most of the gibberellin (GA) metabolic genes were regulated by water scarcity in rice, leading to the lower GA contents and hence inhibited plant growth. Low GA contents resulted in the accumulation of more GA signaling negative regulator SLENDER RICE 1, which inhibited the degradation of abscisic acid (ABA) receptor PYL10 by competitively binding to the co‐activator of anaphase‐promoting complex TAD1, resulting in the enhanced ABA response and drought tolerance. These results elucidate the synergistic regulation of crop growth inhibition and promotion of drought tolerance and survival, and provide useful genetic resource in breeding improvement of crop drought resistance.

Funder

China Postdoctoral Science Foundation

National Basic Research Program of China

Publisher

Wiley

Subject

Plant Science,Physiology

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Rice OsANN9 Enhances Drought Tolerance through Modulating ROS Scavenging Systems;International Journal of Molecular Sciences;2023-12-15

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