4.5 Article

Discovery and functional understanding of MiRNAs in molluscs: a genome-wide profiling approach

期刊

RNA BIOLOGY
卷 18, 期 11, 页码 1702-1715

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15476286.2020.1867798

关键词

miRNA; computational prediction; functional analysis; mollusc

资金

  1. Japan Society for the Promotion of Science [JP24248034]
  2. Research Fellowship of Japan Society for the Promotion of Science Postdoctoral Fellowship for Overseas Researchers [P20395]

向作者/读者索取更多资源

This study predicted hundreds of conserved miRNAs in molluscs through genome scanning and characterized their population, isoforms, organization, and function in detail. Furthermore, the research elucidated key miRNA biogenesis factors in molluscs.
Small non-coding RNAs play a pivotal role in gene regulation, repression of transposable element and viral activity in various organisms. Among the various categories of these small non-coding RNAs, microRNAs (miRNAs) guide post-translational gene regulation in cellular development, proliferation, apoptosis, oncogenesis, and differentiation. Here, we performed a genome-wide computational prediction of miRNAs to improve the understanding of miRNA observation and function in molluscs. As an initial step, hundreds of conserved miRNAs were predicted in 35 species of molluscs through genome scanning. Afterwards, the miRNAs' population, isoforms, organization, and function were characterized in detail. Furthermore, the key miRNA biogenesis factors, including AGO2, DGCR8, DICER, DROSHA, TRABP2, RAN, and XPO5, were elucidated based on homologue sequence searching. We also summarized the miRNAs' function in biomineralization, immune and stress response, as well as growth and development in molluscs. Because miRNAs play a vital role in various lifeforms, this study will provide insight into miRNA biogenesis and function in molluscs, as well as other invertebrates.

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