通过增加取样进行系统发生组数据探索,对蝴蝶和蛾类(鳞翅目)的高层关系有了新的认识

IF 3.6 1区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Phylogenetics and Evolution Pub Date : 2024-05-23 DOI:10.1016/j.ympev.2024.108113
Qi Chen , Min Deng , Xuan Dai , Wei Wang , Xing Wang , Liu-Sheng Chen , Guo-Hua Huang
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引用次数: 0

摘要

一个强大而稳定的系统发育框架是进化生物学的基本目标。作为继鞘翅目和双翅目之后的世界第三大昆虫目,鳞翅目(蝶类和蛾类)在几乎所有陆地生态系统中都扮演着重要角色,是环境变化的指标,也是生物学家探索生态学和进化生物学相关问题的重要模型。然而,对于这样一个极具魅力的昆虫类群,其超科之间较高层次的系统发育关系仍然没有得到很好的解决。与早期的系统发生组研究相比,我们增加了鳞翅目昆虫的分类群取样(37 个超科和 68 个科,包含 263 个分类群),并获得了一系列从 69,680 到 400,330 的大型氨基酸数据集,用于系统发生组重建。利用这些数据集,我们采用最大似然法(ML)和贝叶斯推断法(BI),通过考虑一系列系统误差,探索了不同类群取样、所含基因数量显著增加对树拓扑结构的影响。此外,我们还测试了基于 ML 的三种模型在拓扑稳健性方面的有效性。结果表明,分类群取样是准确估计鳞翅目昆虫系统发生树稳健性的重要决定因素。位点异质性引起的长分支吸引(LBA)是导致系统发生重建中二尖杉类群位置不稳定的重要偏差来源。系统发生学推断为揭示鳞翅目超科之间的关系提供了最全面的框架,并提出了一些新的具有强支持的关系(Papilionoidea与Gelechioidea是姊妹科,Immoidea与Galacticoidea是姊妹科),但受分类群取样的限制,物种丰富且辐射相对较快的双翅目(Ditrysia),尤其是钝翅目(Apoditrysia)内部的关系仍然没有得到很好的解析,需要增加分类群取样以进一步重建系统发生学。本研究表明,分类群取样是准确构建鳞翅目生命树的重要决定因素,并为今后的鳞翅目系统发生组学研究提供了一些重要的启示。
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Phylogenomic data exploration with increased sampling provides new insights into the higher-level relationships of butterflies and moths (Lepidoptera)

A robust and stable phylogenetic framework is a fundamental goal of evolutionary biology. As the third largest insect order in the world following Coleoptera and Diptera, Lepidoptera (butterflies and moths) play a central role in almost every terrestrial ecosystem as indicators of environmental change and serve as important models for biologists exploring questions related to ecology and evolutionary biology. However, for such a charismatic insect group, the higher-level phylogenetic relationships among its superfamilies are still poorly resolved. Compared to earlier phylogenomic studies, we increased taxon sampling among Lepidoptera (37 superfamilies and 68 families containing 263 taxa) and acquired a series of large amino-acid datasets from 69,680 to 400,330 for phylogenomic reconstructions. Using these datasets, we explored the effect of different taxon sampling with significant increases in the number of included genes on tree topology by considering a series of systematic errors using maximum-likelihood (ML) and Bayesian inference (BI) methods. Moreover, we also tested the effectiveness in topology robustness among the three ML-based models. The results showed that taxon sampling is an important determinant in tree robustness of accurate lepidopteran phylogenetic estimation. Long-branch attraction (LBA) caused by site-wise heterogeneity is a significant source of bias giving rise to unstable positions of ditrysian groups in phylogenomic reconstruction. Phylogenetic inference showed the most comprehensive framework to reveal the relationships among lepidopteran superfamilies, and presented some newly relationships with strong supports (Papilionoidea was sister to Gelechioidea and Immoidea was sister to Galacticoidea, respectively), but limited by taxon sampling, the relationships within the species-rich and relatively rapid radiation Ditrysia and especially Apoditrysia remain poorly resolved, which need to increase taxon sampling for further phylogenomic reconstruction. The present study demonstrates that taxon sampling is an important determinant for an accurate lepidopteran tree of life and provides some essential insights for future lepidopteran phylogenomic studies.

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来源期刊
Molecular Phylogenetics and Evolution
Molecular Phylogenetics and Evolution 生物-进化生物学
CiteScore
7.50
自引率
7.30%
发文量
249
审稿时长
7.5 months
期刊介绍: Molecular Phylogenetics and Evolution is dedicated to bringing Darwin''s dream within grasp - to "have fairly true genealogical trees of each great kingdom of Nature." The journal provides a forum for molecular studies that advance our understanding of phylogeny and evolution, further the development of phylogenetically more accurate taxonomic classifications, and ultimately bring a unified classification for all the ramifying lines of life. Phylogeographic studies will be considered for publication if they offer EXCEPTIONAL theoretical or empirical advances.
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