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鉴定麻疯树发育种子中的高置信 microRNAs。

Identifying High Confidence microRNAs in the Developing Seeds of Jatropha curcas.

机构信息

Key Laboratory of Urban Agriculture (North China) Ministry of Agriculture, Beijing University of Agriculture, Beijing, 102206, China.

出版信息

Sci Rep. 2019 Mar 14;9(1):4510. doi: 10.1038/s41598-019-41189-y.

Abstract

MicroRNAs (miRNAs) are endogenously short noncoding regulatory RNAs implicated in plant development and physiology. Nine small RNA (sRNA) libraries from three typical seed developmental stages (young, intermediate, and mature) were generated by deep sequencing to identify the miRNAs of J. curcas, a potential oilseed crop for the production of renewable oil. Strict criteria were adopted to identify 93 high confidence miRNAs including 48 conserved miRNAs and 45 novel miRNAs. Target genes of these miRNAs were involved in a broad range of physiological functions, including gene expression regulation, primary & secondary metabolism, growth & development, signal transduction, and stress response. About one third (29 out of 93) miRNAs showed significant changes in expression levels during the seed developmental process, indicating that the miRNAs might regulate its targets by their changes of transcription levels in seed development. However, most miRNAs were found differentially expressed in the late stage of seed development, suggesting that miRNAs play more important roles in the stage when seed accumulating organic matters and suffering dehydration stress. This study presents the first large scale identification of high confidence miRNAs in the developing seeds of J. curcas.

摘要

微 RNA(miRNA)是内源性短的非编码调控 RNA,参与植物的发育和生理过程。为了鉴定潜在的可再生油脂作物麻疯树(Jatropha curcas)种子发育过程中的 miRNA,我们通过深度测序生成了来自三个典型种子发育阶段(幼胚、中期和成熟)的 9 个小 RNA(sRNA)文库。采用严格的标准鉴定了 93 个高可信度 miRNA,包括 48 个保守 miRNA 和 45 个新 miRNA。这些 miRNA 的靶基因参与了广泛的生理功能,包括基因表达调控、初级和次级代谢、生长和发育、信号转导和应激反应。大约三分之一(93 个中的 29 个)miRNA 在种子发育过程中的表达水平发生显著变化,表明 miRNA 可能通过其在种子发育过程中转录水平的变化来调节其靶基因。然而,大多数 miRNA 在种子发育的晚期表现出差异表达,这表明 miRNA 在种子积累有机物和遭受脱水胁迫的阶段发挥着更为重要的作用。本研究首次大规模鉴定了麻疯树发育种子中的高可信度 miRNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1b2/6418140/400c48eb9207/41598_2019_41189_Fig1_HTML.jpg

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