mRNA cleavage by 21-nucleotide phasiRNAs determines temperature-sensitive male sterility in rice

Author:

Shi Chuanlin1ORCID,Zou Wenli1ORCID,Zhu Yiwang1ORCID,Zhang Jie2ORCID,Teng Chong3ORCID,Wei Hua1,He Huiying1ORCID,He Wenchuang1ORCID,Liu Xiangpei1ORCID,Zhang Bin1ORCID,Zhang Hong1ORCID,Leng Yue1,Guo Mingliang1,Wang Xianmeng1,Chen Wu1ORCID,Zhang Zhipeng1ORCID,Qian Hongge1ORCID,Cui Yan1,Jiang Hongshuang1ORCID,Chen Ying1ORCID,Fei Qili1ORCID,Meyers Blake C34ORCID,Liang Wanqi2ORCID,Qian Qian156ORCID,Shang Lianguang16ORCID

Affiliation:

1. Shenzhen Branch, Guangdong Laboratory for Lingnan Modern Agriculture, Genome Analysis Laboratory of the Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences , Shenzhen 518120 , China

2. Joint International Research Laboratory of Metabolic and Developmental Sciences, Shanghai Jiao Tong University-University of Adelaide Joint Centre for Agriculture and Health, State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University , Shanghai 200240 , China

3. Donald Danforth Plant Science Center , Saint Louis, MI 63132 , USA

4. Division of Plant Sciences and Technology, University of Missouri-Columbia , Columbia, MI 65211 , USA

5. State Key Laboratory of Rice Biology, China National Rice Research Institute , Hangzhou 310006, Zhejiang , China

6. Yazhouwan National Laboratory , No. 8 Huanjin Road, Yazhou District, Sanya City, Hainan Province 572024 , China

Abstract

Abstract Temperature-sensitive male sterility is one of the core components for hybrid rice (Oryza sativa) breeding based on the 2-line system. We previously found that knockout of ARGONAUTE 1d (AGO1d) causes temperature-sensitive male sterility in rice by influencing phased small interfering RNA (phasiRNA) biogenesis and function. However, the specific phasiRNAs and their targets underlying the temperature-sensitive male sterility in the ago1d mutant remain unknown. Here, we demonstrate that the ago1d mutant displays normal female fertility but complete male sterility at low temperature. Through a multiomics analysis of small RNA (sRNA), degradome, and transcriptome, we found that 21-nt phasiRNAs account for the greatest proportion of the 21-nt sRNA species in rice anthers and are sensitive to low temperature and markedly downregulated in the ago1d mutant. Moreover, we found that 21-nt phasiRNAs are essential for the mRNA cleavage of a set of fertility- and cold tolerance–associated genes, such as Earlier Degraded Tapetum 1 (EDT1), Tapetum Degeneration Retardation (TDR), OsPCF5, and OsTCP21, directly or indirectly determined by AGO1d-mediated gene silencing. The loss of function of 21-nt phasiRNAs can result in upregulation of their targets and causes varying degrees of defects in male fertility and grain setting. Our results highlight the essential functions of 21-nt phasiRNAs in temperature-sensitive male sterility in rice and suggest their promising application in 2-line hybrid rice breeding in the future.

Funder

National Natural Science Foundation of China

Chinese Postdoctoral Science Foundation

Youth Innovation of Chinese Academy of Agricultural Sciences

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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