Molecular Insights into MpAGO1 and Its Regulatory miRNA, miR11707, in the High-Temperature Acclimation of Marchantia polymorpha

Author:

Hong Syuan-Fei1,Wei Wei-Lun1,Pan Zhao-Jun1,Yu Jia-Zhen1,Cheng Shiuan1,Hung Yu-Ling1,Tjita Veny1,Wang Hao-Ching2,Komatsu Aino34ORCID,Nishihama Ryuichi35ORCID,Kohchi Takayuki3ORCID,Chen Ho-Ming6,Chen Wan-Chieh6,Lo Jing-Chi7,Chiu Yen-Hsin18,Yang Ho-Chun9,Lu Mei-Yeh9,Liu Li-Yu Daisy10,Lin Shih-Shun1611ORCID

Affiliation:

1. Institute of Biotechnology, National Taiwan University , No.1, Sec. 4, Roosevelt Rd., Taipei 106319, Taiwan, ROC

2. Graduate Institute of Translational Medicine, College of Medical Science and Technology , Taipei Medical University, No. 250 Wu-Xing St., Taipei 11031, Taiwan, ROC

3. Graduate School of Biostudies, Kyoto University , Kitashirakawa-Oiwakecho, Sakyo, Kyoto 606-8502, Japan

4. Graduate School of Life Sciences, Tohoku University , 2-1-1 Katahira, Aoba-Ku, Sendai 980-8577, Japan

5. Faculty of Science and Technology, Department of Applied Biological Science, Tokyo University of Science , 2641 Yamazaki, Noda, Chiba 278-8510, Japan

6. Agricultural Biotechnology Research Center, Academia Sinica , No. 128 Academia Rd., Sec. 2, Nankang, Taipei 11529, Taiwan, ROC

7. Department of Horticulture and Biotechnology, Chinese Culture University , No. 55, Huagang Rd., Shilin Dist., Taipei 11114, Taiwan, ROC

8. Taiwan Seed Improvement and Propagation Station, MOA, No.46 , Xingzhong St., Xinshe Dist., Taichung 426015, Taiwan, ROC

9. NGS High Throughput Genomics Core, Biodiversity Research Center , Academia Sinica, No. 128 Academia Rd., Sec. 2, Nankang, Taipei 11529, Taiwan, ROC

10. Department of Agronomy, National Taiwan University , No. 1, Sec. 4, Roosevelt Rd., Taipei, Taipei 106319, Taiwan, ROC

11. Center of Biotechnology, National Taiwan University , No. 1, Sec. 4, Roosevelt Rd., Taipei, Taipei 106319, Taiwan, ROC

Abstract

Abstract As a model plant for bryophytes, Marchantia polymorpha offers insights into the role of RNA silencing in aiding early land plants navigate the challenges posed by high-temperature environments. Genomic analysis revealed unique ARGONAUTE1 ortholog gene (MpAGO1) in M. polymorpha, which is regulated by two species-specific microRNAs (miRNAs), miR11707.1 and miR11707.2. Comparative studies of small RNA profiles from M. polymorpha cellular and MpAGO1 immunoprecipitation (MpAGO1-IP) profiles at various temperatures, along with analyses of Arabidopsis AGO1 (AtAGO1), revealed that MpAGO1 has a low selectivity for a diverse range of small RNA species than AtAGO1. Protein structural comparisons revealed no discernible differences in the guide strand small RNA recognition middle domain, MID domain, of MpAGO1 and AtAGO1, suggesting the complexity of miRNA species specificity and necessitating further exploration. Small RNA profiling and size exclusion chromatography have pinpointed a subset of M. polymorpha miRNAs, notably miR11707, that remain in free form within the cell at 22°C but are loaded into MpAGO1 at 28°C to engage in RNA silencing. Investigations into the mir11707 gene editing (mir11707ge) mutants provided evidence of the regulation of miR11707 in MpAGO1. Notably, while MpAGO1 mRNA expression decreases at 28°C, the stability of the MpAGO1 protein and its associated miRNAs is essential for enhancing the RNA-inducing silencing complex (RISC) activity, revealing the importance of RNA silencing in enabling M. polymorpha to survive thermal stress. This study advances our understanding of RNA silencing in bryophytes and provides groundbreaking insights into the evolutionary resilience of land plants to climatic adversities.

Funder

National Science and Technology Council of Taiwan

National Taiwan University

Publisher

Oxford University Press (OUP)

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