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发育过程中的长链非编码RNA转录组

The Long Noncoding RNA Transcriptome of Development.

作者信息

Rosengarten Rafael D, Santhanam Balaji, Kokosar Janez, Shaulsky Gad

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030.

出版信息

G3 (Bethesda). 2017 Feb 9;7(2):387-398. doi: 10.1534/g3.116.037150.

Abstract

live in the soil as single cells, engulfing bacteria and growing vegetatively. Upon starvation, tens of thousands of amoebae enter a developmental program that includes aggregation, multicellular differentiation, and sporulation. Major shifts across the protein-coding transcriptome accompany these developmental changes. However, no study has presented a global survey of long noncoding RNAs (ncRNAs) in To characterize the antisense and long intergenic noncoding RNA (lncRNA) transcriptome, we analyzed previously published developmental time course samples using an RNA-sequencing (RNA-seq) library preparation method that selectively depletes ribosomal RNAs (rRNAs). We detected the accumulation of transcripts for 9833 protein-coding messenger RNAs (mRNAs), 621 lncRNAs, and 162 putative antisense RNAs (asRNAs). The noncoding RNAs were interspersed throughout the genome, and were distinct in expression level, length, and nucleotide composition. The noncoding transcriptome displayed a temporal profile similar to the coding transcriptome, with stages of gradual change interspersed with larger leaps. The transcription profiles of some noncoding RNAs were strongly correlated with known differentially expressed coding RNAs, hinting at a functional role for these molecules during development. Examining the mitochondrial transcriptome, we modeled two novel antisense transcripts. We applied yet another ribosomal depletion method to a subset of the samples to better retain transfer RNA (tRNA) transcripts. We observed polymorphisms in tRNA anticodons that suggested a post-transcriptional means by which compensates for codons missing in the genomic complement of tRNAs. We concluded that the prevalence and characteristics of long ncRNAs indicate that these molecules are relevant to the progression of molecular and cellular phenotypes during development.

摘要

它们以单细胞形式生活在土壤中,吞噬细菌并进行营养生长。在饥饿时,数以万计的变形虫进入一个发育程序,包括聚集、多细胞分化和孢子形成。这些发育变化伴随着蛋白质编码转录组的重大转变。然而,尚无研究对[具体对象]中的长链非编码RNA(ncRNA)进行全面调查。为了表征反义RNA和长链基因间非编码RNA(lncRNA)转录组,我们使用一种能选择性去除核糖体RNA(rRNA)的RNA测序(RNA-seq)文库制备方法,分析了先前发表的发育时间进程样本。我们检测到9833种蛋白质编码信使RNA(mRNA)、621种lncRNA和162种假定反义RNA(asRNA)的转录本积累。这些非编码RNA散布于整个基因组中,在表达水平、长度和核苷酸组成上各不相同。非编码转录组呈现出与编码转录组相似的时间分布特征,即有逐渐变化的阶段,也有较大的飞跃。一些非编码RNA的转录谱与已知的差异表达编码RNA高度相关,这暗示了这些分子在发育过程中具有功能作用。在检查线粒体转录组时,我们构建了两种新的反义转录本模型。我们对一部分样本应用了另一种核糖体去除方法,以更好地保留转运RNA(tRNA)转录本。我们观察到tRNA反密码子中的多态性,这表明存在一种转录后机制来补偿tRNA基因组互补序列中缺失的密码子。我们得出结论,长链ncRNA的普遍性和特征表明这些分子与发育过程中分子和细胞表型的进展相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/647f/5295588/fe611be3b176/387f1.jpg

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