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[具体植物名称]叶片衰老过程中长链非编码RNA的动态景观

Dynamic landscape of long noncoding RNAs during leaf aging in .

作者信息

Kim Jung Yeon, Lee Juhyeon, Kang Myeong Hoon, Trang Tran Thi My, Lee Jusung, Lee Heeho, Jeong Hyobin, Lim Pyung Ok

机构信息

Department of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu, South Korea.

Genome Biology Unit, European Molecular Biology Laboratory (EMBL), Meyerhofstraße 1, Heidelberg, Germany.

出版信息

Front Plant Sci. 2022 Dec 1;13:1068163. doi: 10.3389/fpls.2022.1068163. eCollection 2022.

Abstract

Leaf senescence, the last stage of leaf development, is essential for whole-plant fitness as it marks the relocation of nutrients from senescing leaves to reproductive or other developing organs. Temporally coordinated physiological and functional changes along leaf aging are fine-tuned by a highly regulated genetic program involving multi-layered regulatory mechanisms. Long noncoding RNAs (lncRNAs) are newly emerging as hidden players in many biological processes; however, their contribution to leaf senescence has been largely unknown. Here, we performed comprehensive analyses of RNA-seq data representing all developmental stages of leaves to determine the genome-wide lncRNA landscape along leaf aging. A total of 771 lncRNAs, including 232 unannotated lncRNAs, were identified. Time-course analysis revealed 446 among 771 developmental age-related lncRNAs (AR-lncRNAs). Intriguingly, the expression of AR-lncRNAs was regulated more dynamically in senescing leaves than in growing leaves, revealing the relevant contribution of these lncRNAs to leaf senescence. Further analyses enabled us to infer the function of lncRNAs, based on their interacting miRNA or mRNA partners. We considered functionally diverse lncRNAs including antisense lncRNAs (which regulate overlapping protein-coding genes), competitive endogenous RNAs (ceRNAs; which regulate paired mRNAs using miRNAs as anchors), and mRNA-interacting lncRNAs (which affect the stability of mRNAs). Furthermore, we experimentally validated the senescence regulatory function of three novel AR-lncRNAs including one antisense lncRNA and two mRNA-interacting lncRNAs through molecular and phenotypic analyses. Our study provides a valuable resource of AR-lncRNAs and potential regulatory networks that link the function of coding mRNA and AR-lncRNAs. Together, our results reveal AR-lncRNAs as important elements in the leaf senescence process.

摘要

叶片衰老作为叶片发育的最后阶段,对整株植物的适应性至关重要,因为它标志着营养物质从衰老叶片向生殖器官或其他发育器官的重新分配。叶片衰老过程中,生理和功能的变化在时间上相互协调,这由一个高度调控的遗传程序精细调节,该程序涉及多层调控机制。长链非编码RNA(lncRNA)作为许多生物学过程中隐藏的参与者而崭露头角;然而,它们对叶片衰老的贡献在很大程度上仍不为人知。在这里,我们对代表叶片所有发育阶段的RNA测序数据进行了全面分析,以确定叶片衰老过程中全基因组lncRNA的情况。共鉴定出771个lncRNA,其中包括232个未注释的lncRNA。时间进程分析显示,771个与发育年龄相关的lncRNA(AR-lncRNA)中有446个。有趣的是,与生长中的叶片相比,衰老叶片中AR-lncRNA的表达调控更为动态,这揭示了这些lncRNA对叶片衰老的相关贡献。进一步的分析使我们能够根据lncRNA相互作用的miRNA或mRNA伙伴推断其功能。我们考虑了功能多样的lncRNA,包括反义lncRNA(调控重叠的蛋白质编码基因)、竞争性内源RNA(ceRNA;利用miRNA作为锚定物调控配对的mRNA)和与mRNA相互作用的lncRNA(影响mRNA的稳定性)。此外,我们通过分子和表型分析,实验验证了三种新型AR-lncRNA的衰老调控功能,其中包括一种反义lncRNA和两种与mRNA相互作用的lncRNA。我们的研究提供了有价值的AR-lncRNA资源以及连接编码mRNA和AR-lncRNA功能的潜在调控网络。总之,我们的结果揭示了AR-lncRNA是叶片衰老过程中的重要元素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a20/9753222/4bbc2d124ba2/fpls-13-1068163-g001.jpg

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