ncOrtho:miRNA 直系同源物的高效可靠识别。

ncOrtho: efficient and reliable identification of miRNA orthologs.

机构信息

Applied Bioinformatics Group, Institute of Cell Biology and Neuroscience, Goethe University, Frankfurt, Germany.

Institute for Cardiovascular Physiology, Goethe University, Frankfurt, Germany.

出版信息

Nucleic Acids Res. 2023 Jul 21;51(13):e71. doi: 10.1093/nar/gkad467.

Abstract

MicroRNAs (miRNAs) are post-transcriptional regulators that finetune gene expression via translational repression or degradation of their target mRNAs. Despite their functional relevance, frameworks for the scalable and accurate detection of miRNA orthologs are missing. Consequently, there is still no comprehensive picture of how miRNAs and their associated regulatory networks have evolved. Here we present ncOrtho, a synteny informed pipeline for the targeted search of miRNA orthologs in unannotated genome sequences. ncOrtho matches miRNA annotations from multi-tissue transcriptomes in precision, while scaling to the analysis of hundreds of custom-selected species. The presence-absence pattern of orthologs to 266 human miRNA families across 402 vertebrate species reveals four bursts of miRNA acquisition, of which the most recent event occurred in the last common ancestor of higher primates. miRNA families are rarely modified or lost, but notable exceptions for both events exist. miRNA co-ortholog numbers faithfully indicate lineage-specific whole genome duplications, and miRNAs are powerful markers for phylogenomic analyses. Their exceptionally low genetic diversity makes them suitable to resolve clades where the phylogenetic signal is blurred by incomplete lineage sorting of ancestral alleles. In summary, ncOrtho allows to routinely consider miRNAs in evolutionary analyses that were thus far reserved to protein-coding genes.

摘要

微小 RNA(miRNA)是一种转录后调控因子,通过翻译抑制或靶 mRNA 的降解来微调基因表达。尽管它们具有功能相关性,但缺乏用于可扩展且准确检测 miRNA 直系同源物的框架。因此,miRNA 及其相关调控网络如何进化的全貌仍然未知。

在这里,我们介绍了 ncOrtho,这是一种用于在未注释基因组序列中靶向搜索 miRNA 直系同源物的基于同线性的管道。ncOrtho 在精确性上匹配多组织转录组中的 miRNA 注释,同时可扩展到数百种自定义选择的物种的分析。266 个人类 miRNA 家族在 402 种脊椎动物物种中的存在-缺失模式揭示了 miRNA 获得的四个爆发,其中最近的事件发生在高等灵长类动物的最近共同祖先中。miRNA 家族很少发生修饰或丢失,但这两种情况都有明显的例外。miRNA 共直系同源物数量准确地指示谱系特异性全基因组复制,miRNA 是系统发育分析的有力标记。它们极低的遗传多样性使其适合解决因祖先等位基因不完全谱系分选而导致的系统发育信号模糊的进化枝。

总之,ncOrtho 允许在进化分析中常规考虑 miRNA,而这些 miRNA 迄今为止仅限于蛋白质编码基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dde3/10359484/5b0f23c4810c/gkad467figgra1.jpg

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