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海洋颗石藻(赫氏颗石藻)小RNA转录组的特征分析

Characterization of the Small RNA Transcriptome of the Marine Coccolithophorid, Emiliania huxleyi.

作者信息

Zhang Xiaoyu, Gamarra Jaime, Castro Steven, Carrasco Estela, Hernandez Aaron, Mock Thomas, Hadaegh Ahmad R, Read Betsy A

机构信息

Department of Computer Science and Information Systems, California State University, San Marcos, CA, 92096, United States of America.

Department of Biological Sciences, California State University, San Marcos, CA, 92096, United States of America.

出版信息

PLoS One. 2016 Apr 21;11(4):e0154279. doi: 10.1371/journal.pone.0154279. eCollection 2016.

Abstract

Small RNAs (smRNAs) control a variety of cellular processes by silencing target genes at the transcriptional or post-transcription level. While extensively studied in plants, relatively little is known about smRNAs and their targets in marine phytoplankton, such as Emiliania huxleyi (E. huxleyi). Deep sequencing was performed of smRNAs extracted at different time points as E. huxleyi cells transition from logarithmic to stationary phase growth in batch culture. Computational analyses predicted 18 E. huxleyi specific miRNAs. The 18 miRNA candidates and their precursors vary in length (18-24 nt and 71-252 nt, respectively), genome copy number (3-1,459), and the number of genes targeted (2-107). Stem-loop real time reverse transcriptase (RT) PCR was used to validate miRNA expression which varied by nearly three orders of magnitude when growth slows and cells enter stationary phase. Stem-loop RT PCR was also used to examine the expression profiles of miRNA in calcifying and non-calcifying cultures, and a small subset was found to be differentially expressed when nutrients become limiting and calcification is enhanced. In addition to miRNAs, endogenous small RNAs such as ra-siRNAs, ta-siRNAs, nat-siRNAs, and piwiRNAs were predicted along with the machinery for the biogenesis and processing of si-RNAs. This study is the first genome-wide investigation smRNAs pathways in E. huxleyi. Results provide new insights into the importance of smRNAs in regulating aspects of physiological growth and adaptation in marine phytoplankton and further challenge the notion that smRNAs evolved with multicellularity, expanding our perspective of these ancient regulatory pathways.

摘要

小RNA(smRNA)通过在转录或转录后水平沉默靶基因来控制多种细胞过程。虽然在植物中对其进行了广泛研究,但对于海洋浮游植物,如赫氏颗石藻(E. huxleyi)中的smRNA及其靶标却知之甚少。在分批培养中,当E. huxleyi细胞从对数生长期过渡到稳定期生长时,对在不同时间点提取的smRNA进行了深度测序。计算分析预测了18个E. huxleyi特异性miRNA。这18个miRNA候选物及其前体在长度(分别为18 - 24 nt和71 - 252 nt)、基因组拷贝数(3 - 1459)以及靶向的基因数量(2 - 107)上有所不同。采用茎环实时逆转录酶(RT)PCR来验证miRNA的表达,当生长减缓且细胞进入稳定期时,其表达变化近三个数量级。茎环RT PCR还用于检测钙化和非钙化培养物中miRNA的表达谱,发现当营养物质变得有限且钙化增强时,一小部分miRNA存在差异表达。除了miRNA外,还预测了内源性小RNA,如ra-siRNA、ta-siRNA、nat-siRNA和piwiRNA,以及si-RNA生物合成和加工的机制。本研究是首次对E. huxleyi中的smRNA途径进行全基因组研究。研究结果为smRNA在调节海洋浮游植物生理生长和适应方面的重要性提供了新的见解,并进一步挑战了smRNA随多细胞性进化的观点,拓展了我们对这些古老调控途径的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edf6/4839659/3c55dce023e6/pone.0154279.g001.jpg

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