4.7 Article

CRISPR-Cas9 mediated OsMIR168a knockout reveals its pleiotropy in rice

期刊

PLANT BIOTECHNOLOGY JOURNAL
卷 20, 期 2, 页码 310-322

出版社

WILEY
DOI: 10.1111/pbi.13713

关键词

CRISPR-Cas9; OsMIR168a; OsAGO1; OsAGO18; pleiotropy; rice

资金

  1. State Key Laboratory of Rice Biology [20200205]
  2. Sichuan Science and Technology Program [2021YFH0084, 2021JDRC0032, 2021YFYZ0016]
  3. National Natural Science Foundation of China [32101205, 32072045, 31960423]
  4. Fundamental Research Funds for the Central Universities [ZYGX2019J127]

向作者/读者索取更多资源

MicroRNA168 (MIR168) is a crucial miRNA in plants, targeting the RNA-induced silencing complex component Argonaute 1 (AGO1) for regulation of plant growth and environmental stress responses. Through generating clean OsMIR168a deletion mutants using CRISPR-Cas9 strategy, this study found that OsMIR168a plays a significant role in regulating important agronomic traits in rice by targeting genes such as OsAGO1 and OsAGO18. Additionally, differential expression of protein-coding genes and miRNAs in the OsMIR168a mutants suggests a major transcriptional regulatory role for OsMIR168a, particularly through its potential target genes.
MicroRNA168 (MIR168) is a key miRNA that targets the main RNA-induced silencing complex component Argonaute 1 (AGO1) to regulate plant growth and environmental stress responses. However, the regulatory functions of MIR168 need to be further elucidated in rice. In this paper, we generated clean OsMIR168a deletion mutants by CRISPR-Cas9 strategy. We then phenotypically and molecularly characterized these mutants. The rice OsMIR168a mutants grew rapidly at the seedling stage, produced more tillers and matured early. Compared to the wild-type plants, the mutants were shorter at maturity and produced smaller spikelets and seeds. Analysis of gene expression showed that the transcription levels of OsMIR168a's target genes such as OsAGO1a, OsAGO1b and OsAGO1d were elevated significantly in the OsMIR168a mutants. Intriguingly, OsAGO18, a member of a new AGO clade that is conserved in monocots, was confirmed to be a target of OsMIR168a not only by informatic prediction but also by expression analysis and a cell-based cleavage assay in the OsMIR168a mutants. Many protein-coding genes and miRNAs showed differential expression in the OsMIR168a mutants, suggesting OsMIR168a exerts a major transcriptional regulatory role, likely through its potential target genes such as OsAGO1s and OsAGO18. KEGG enrichment analysis of these differentially expressed genes pointed to OsMIR168a's involvement in important processes such as plant hormone signalling transduction and plant-pathogen interaction. These data collectively support that the complex regulation module of OsMIR168a-OsAGO1/OsAGO18-miRNAs-target genes contributes to agronomically important traits, which sheds light on miRNA-mediated crop breeding.

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