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……转录组中普遍存在的序列水平变异。(原文不完整,翻译只能到这里)

Pervasive sequence-level variation in the transcriptome of .

作者信息

Dave Bruhad, Kanyal Abhishek, Mamatharani D V, Karmodiya Krishanpal

机构信息

Department of Biology, Indian Institute of Science Education and Research, Dr. Homi Bhabha Road, Pashan, Pune 411008, Maharashtra, India.

出版信息

NAR Genom Bioinform. 2022 May 17;4(2):lqac036. doi: 10.1093/nargab/lqac036. eCollection 2022 Jun.

Abstract

Single-nucleotide variations (SNVs) in RNA, arising from co- and post-transcriptional phenomena including transcription errors and RNA-editing, are well studied in a range of organisms. In the malaria parasite , stage-specific and non-specific gene-expression variations accompany the parasite's array of developmental and morphological phenotypes over the course of its complex life cycle. However, the extent, rate and effect of sequence-level variation in the parasite's transcriptome are unknown. Here, we report the presence of pervasive, non-specific SNVs in the transcriptome. SNV rates for a gene were correlated to gene length ([Formula: see text]0.65-0.7) but not to the AT-content of that gene. Global SNV rates for the lines we used, and for publicly available and clinical isolate datasets, were of the order of 10 per base, ∼10× higher than rates we calculated for bacterial datasets. These variations may reflect an intrinsic transcriptional error rate in the parasite, and RNA editing may be responsible for a subset of them. This seemingly characteristic property of the parasite may have implications for clinical outcomes and the basic biology and evolution of and parasite biology more broadly. We anticipate that our study will prompt further investigations into the exact sources, consequences and possible adaptive roles of these SNVs.

摘要

RNA中的单核苷酸变异(SNV)源于转录和转录后现象,包括转录错误和RNA编辑,在一系列生物体中都得到了充分研究。在疟原虫中,在其复杂的生命周期中,阶段特异性和非特异性基因表达变异伴随着寄生虫一系列的发育和形态表型。然而,寄生虫转录组中序列水平变异的程度、速率和影响尚不清楚。在这里,我们报告了转录组中普遍存在的非特异性SNV。一个基因的SNV率与基因长度相关([公式:见正文]0.65 - 0.7),但与该基因的AT含量无关。我们使用的品系以及公开可用的和临床分离株数据集的全局SNV率约为每碱基10个,比我们为细菌数据集计算的速率高约10倍。这些变异可能反映了寄生虫内在的转录错误率,RNA编辑可能是其中一部分变异的原因。寄生虫的这种看似特征性的特性可能对临床结果以及疟原虫和寄生虫生物学更广泛的基础生物学和进化产生影响。我们预计我们的研究将促使对这些SNV的确切来源、后果和可能的适应性作用进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fee/9112769/4084227c9742/lqac036fig1.jpg

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