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长须鲸(Balaenoptera physalus)的系统发育基因组学与全基因组范围内普遍存在的系统发育不一致性

Phylogenomics and Pervasive Genome-Wide Phylogenetic Discordance Among Fin Whales (Balaenoptera physalus).

作者信息

Furni Fabricio, Secchi Eduardo R, Speller Camilla, DenDanto Daniel, Ramp Christian, Larsen Finn, Mizroch Sally, Robbins Jooke, Sears Richard, Urbán R Jorge, Bérubé Martine, Palsbøll Per J

机构信息

Marine Evolution and Conservation Group, Groningen Institute of Evolutionary Life Sciences, University of Groningen, Groningen, The Netherlands.

Laboratório de Ecologia e Conservação da Megafauna Marinha, Instituto de Oceanografia, Universidade Federal do Rio Grande-FURG, Rio Grande, Brasil.

出版信息

Syst Biol. 2024 Nov 29;73(6):873-885. doi: 10.1093/sysbio/syae049.

Abstract

Phylogenomics has the power to uncover complex phylogenetic scenarios across the genome. In most cases, no single topology is reflected across the entire genome as the phylogenetic signal differs among genomic regions due to processes, such as introgression and incomplete lineage sorting. Baleen whales are among the largest vertebrates on Earth with a high dispersal potential in a relatively unrestricted habitat, the oceans. The fin whale (Balaenoptera physalus) is one of the most enigmatic baleen whale species, currently divided into four subspecies. It has been a matter of debate whether phylogeographic patterns explain taxonomic variation in fin whales. Here we present a chromosome-level whole genome analysis of the phylogenetic relationships among fin whales from multiple ocean basins. First, we estimated concatenated and consensus phylogenies for both the mitochondrial and nuclear genomes. The consensus phylogenies based upon the autosomal genome uncovered monophyletic clades associated with each ocean basin, aligning with the current understanding of subspecies division. Nevertheless, discordances were detected in the phylogenies based on the Y chromosome, mitochondrial genome, autosomal genome and X chromosome. Furthermore, we detected signs of introgression and pervasive phylogenetic discordance across the autosomal genome. This complex phylogenetic scenario could be explained by a puzzle of introgressive events, not yet documented in fin whales. Similarly, incomplete lineage sorting and low phylogenetic signal could lead to such phylogenetic discordances. Our study reinforces the pitfalls of relying on concatenated or single locus phylogenies to determine taxonomic relationships below the species level by illustrating the underlying nuances that some phylogenetic approaches may fail to capture. We emphasize the significance of accurate taxonomic delineation in fin whales by exploring crucial information revealed through genome-wide assessments.

摘要

系统发育基因组学有能力揭示整个基因组中复杂的系统发育情况。在大多数情况下,由于诸如基因渗入和不完全谱系分选等过程,基因组区域之间的系统发育信号不同,所以整个基因组不会反映出单一的拓扑结构。须鲸是地球上最大的脊椎动物之一,在相对不受限制的海洋栖息地中具有很高的扩散潜力。长须鲸(Balaenoptera physalus)是最神秘的须鲸物种之一,目前分为四个亚种。须鲸的系统地理模式是否能解释其分类学变异一直存在争议。在此,我们展示了对来自多个海洋盆地的长须鲸之间系统发育关系的染色体水平全基因组分析。首先,我们估计了线粒体和核基因组的串联和一致系统发育树。基于常染色体基因组的一致系统发育树揭示了与每个海洋盆地相关的单系类群,这与目前对亚种划分的理解一致。然而,在基于Y染色体、线粒体基因组、常染色体基因组和X染色体的系统发育树中检测到了不一致性。此外,我们在常染色体基因组中检测到了基因渗入和普遍的系统发育不一致的迹象。这种复杂的系统发育情况可以用基因渗入事件的谜题来解释,长须鲸中尚未有相关记录。同样,不完全谱系分选和低系统发育信号可能导致这种系统发育不一致。我们的研究通过说明一些系统发育方法可能无法捕捉到的潜在细微差别,强化了依靠串联或单基因座系统发育树来确定物种以下分类关系的缺陷。我们通过探索全基因组评估揭示的关键信息,强调了准确划分长须鲸分类的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bd4/11637684/071e449a28ac/syae049_fig1.jpg

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