Dating in the Dark: Elevated Substitution Rates in Cave Cockroaches (Blattodea: Nocticolidae) Have Negative Impacts on Molecular Date Estimates.

IF 6.1 1区 生物学 Q1 EVOLUTIONARY BIOLOGY Systematic Biology Pub Date : 2024-09-05 DOI:10.1093/sysbio/syae002
Toby G L Kovacs, James Walker, Simon Hellemans, Thomas Bourguignon, Nikolai J Tatarnic, Jane M McRae, Simon Y W Ho, Nathan Lo
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Abstract

Rates of nucleotide substitution vary substantially across the Tree of Life, with potentially confounding effects on phylogenetic and evolutionary analyses. A large acceleration in mitochondrial substitution rate occurs in the cockroach family Nocticolidae, which predominantly inhabit subterranean environments. To evaluate the impacts of this among-lineage rate heterogeneity on estimates of phylogenetic relationships and evolutionary timescales, we analyzed nuclear ultraconserved elements (UCEs) and mitochondrial genomes from nocticolids and other cockroaches. Substitution rates were substantially elevated in nocticolid lineages compared with other cockroaches, especially in mitochondrial protein-coding genes. This disparity in evolutionary rates is likely to have led to different evolutionary relationships being supported by phylogenetic analyses of mitochondrial genomes and UCE loci. Furthermore, Bayesian dating analyses using relaxed-clock models inferred much deeper divergence times compared with a flexible local clock. Our phylogenetic analysis of UCEs, which is the first genome-scale study to include all 13 major cockroach families, unites Corydiidae and Nocticolidae and places Anaplectidae as the sister lineage to the rest of Blattoidea. We uncover an extraordinary level of genetic divergence in Nocticolidae, including two highly distinct clades that separated ~115 million years ago despite both containing representatives of the genus Nocticola. The results of our study highlight the potential impacts of high among-lineage rate variation on estimates of phylogenetic relationships and evolutionary timescales.

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黑暗中的约会:洞穴蟑螂(Blattodea: Nocticolidae)的替代率升高对分子日期估计有负面影响。
生命之树上的核苷酸替换率差异很大,可能会对系统发育和进化分析产生混淆影响。在主要栖息于地下环境的蟑螂科(Nocticolidae)中,线粒体替代率出现了大幅加速。为了评估这种线粒体间比率异质性对系统发生关系和进化时间尺度估计的影响,我们分析了蜚蠊科和其他蜚蠊的核超保原(UCE)和线粒体基因组。与其他蟑螂相比,北极蠊种系的替代率大幅提高,尤其是线粒体蛋白编码基因。这种进化速度上的差异很可能导致线粒体基因组和 UCE 位点的系统进化分析支持不同的进化关系。此外,与灵活的局部时钟相比,使用松弛时钟模型进行的贝叶斯年代学分析推断出了更深的分化时间。我们的 UCE 系统发育分析是首次包括所有 13 个主要蟑螂科的基因组规模的研究,它将 Corydiidae 和 Nocticolidae 结合在一起,并将 Anaplectidae 视为 Blattoidea 其他科的姊妹系。我们发现蜚蠊科的遗传分化程度非常高,其中包括两个高度不同的支系,尽管这两个支系都包含蜚蠊属的代表,但它们在大约 1.15 亿年前就已经分开了。我们的研究结果凸显了不同品系之间的高比率差异对系统发生关系和进化时间尺度估计的潜在影响。
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来源期刊
Systematic Biology
Systematic Biology 生物-进化生物学
CiteScore
13.00
自引率
7.70%
发文量
70
审稿时长
6-12 weeks
期刊介绍: Systematic Biology is the bimonthly journal of the Society of Systematic Biologists. Papers for the journal are original contributions to the theory, principles, and methods of systematics as well as phylogeny, evolution, morphology, biogeography, paleontology, genetics, and the classification of all living things. A Points of View section offers a forum for discussion, while book reviews and announcements of general interest are also featured.
期刊最新文献
The limits of the metapopulation: Lineage fragmentation in a widespread terrestrial salamander (Plethodon cinereus) Dating in the Dark: Elevated Substitution Rates in Cave Cockroaches (Blattodea: Nocticolidae) Have Negative Impacts on Molecular Date Estimates. Clockor2: Inferring Global and Local Strict Molecular Clocks Using Root-to-Tip Regression. Phylogenomics of Neogastropoda: The Backbone Hidden in the Bush. Distinguishing Cophylogenetic Signal from Phylogenetic Congruence Clarifies the Interplay Between Evolutionary History and Species Interactions.
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