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蚊子线粒体与核系统发育之间的时间不一致性。

Chronological Incongruences between Mitochondrial and Nuclear Phylogenies of Mosquitoes.

作者信息

Zadra Nicola, Rizzoli Annapaola, Rota-Stabelli Omar

机构信息

Research and Innovation Centre, Fondazione Edmund Mach, 38010 San Michele all Adige (TN), Italy.

Department of Cellular, Computational and Integrative Biology-CIBIO, University of Trento, 38123 Povo, Trento, Italy.

出版信息

Life (Basel). 2021 Feb 25;11(3):181. doi: 10.3390/life11030181.

Abstract

One-third of all mosquitoes belong to the Aedini, a tribe comprising common vectors of viral zoonoses such as and . To improve our understanding of their evolution, we present an updated multigene estimate of Aedini phylogeny and divergence, focusing on the disentanglement between nuclear and mitochondrial phylogenetic signals. We first show that there are some phylogenetic discrepancies between nuclear and mitochondrial markers which may be caused by wrong taxa assignment in samples collections or by some stochastic effect due to small gene samples. We indeed show that the concatenated dataset is model and framework dependent, indicating a general paucity of signal. Our Bayesian calibrated divergence estimates point toward a mosquito radiation in the mid-Jurassic and an radiation from the mid-Cretaceous on. We observe, however a strong chronological incongruence between mitochondrial and nuclear data, the latter providing divergence times within the Aedini significantly younger than the former. We show that this incongruence is consistent over different datasets and taxon sampling and that may be explained by either peculiar evolutionary event such as different levels of saturation in certain lineages or a past history of hybridization throughout the genus. Overall, our updated picture of Aedini phylogeny, reveal a strong nuclear-mitochondrial incongruence which may be of help in setting the research agenda for future phylogenomic studies of Aedini mosquitoes.

摘要

所有蚊子中有三分之一属于伊蚊族,该族包含诸如[具体病毒名称1]和[具体病毒名称2]等病毒性人畜共患病的常见传播媒介。为了增进我们对其进化的理解,我们给出了伊蚊族系统发育和分化的最新多基因估计,重点在于厘清核基因和线粒体基因系统发育信号之间的关系。我们首先表明,核基因和线粒体标记之间存在一些系统发育差异,这可能是由于样本采集时分类单元分配错误,或者由于基因样本量小导致的某些随机效应。我们确实表明,串联数据集依赖于模型和框架,这表明信号普遍匮乏。我们基于贝叶斯校准的分化估计表明,蚊子在侏罗纪中期出现辐射分化,而[伊蚊族的某个特定类群]在白垩纪中期开始辐射分化。然而,我们观察到线粒体数据和核基因数据之间存在强烈的时间不一致性,核基因数据给出的伊蚊族内部分化时间明显比线粒体数据给出的要年轻。我们表明,这种不一致性在不同数据集和分类单元抽样中是一致的,并且可能是由某些特殊的进化事件(如某些谱系中不同程度的饱和度)或整个属过去的杂交历史所解释。总体而言,我们更新后的伊蚊族系统发育图揭示了强烈的核 - 线粒体不一致性,这可能有助于为未来伊蚊族蚊子的系统基因组学研究设定研究议程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/245a/7996624/3194e536fb90/life-11-00181-g001.jpg

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