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分子表型分析揭示了兔科(Leporidae)近缘种野兔(Lepus spp.)之间基本细胞生理功能的差异。

Molecular phenotyping uncovers differences in basic housekeeping functions among closely related species of hares (Lepus spp., Lagomorpha: Leporidae).

机构信息

Mitochondrial Bioenergetics and Metabolism, Faculty of Medicine and Health Technology, FI-33014 Tampere University, Tampere, Finland.

Department of Environmental and Biological Sciences, FI-80101 University of Eastern Finland, Kuopio, Finland.

出版信息

Mol Ecol. 2023 Aug;32(15):4097-4117. doi: 10.1111/mec.16755. Epub 2022 Nov 13.

Abstract

Speciation is a fundamental evolutionary process, which results in genetic differentiation of populations and manifests as discrete morphological, physiological and behavioural differences. Each species has travelled its own evolutionary trajectory, influenced by random drift and driven by various types of natural selection, making the association of genetic differences between the species with the phenotypic differences extremely complex to dissect. In the present study, we have used an in vitro model to analyse in depth the genetic and gene regulation differences between fibroblasts of two closely related mammals, the arctic/subarctic mountain hare (Lepus timidus Linnaeus) and the temperate steppe-climate adapted brown hare (Lepus europaeus Pallas). We discovered the existence of a species-specific expression pattern of 1623 genes, manifesting in differences in cell growth, cell cycle control, respiration, and metabolism. Interspecific differences in the housekeeping functions of fibroblast cells suggest that speciation acts on fundamental cellular processes, even in these two interfertile species. Our results help to understand the molecular constituents of a species difference on a cellular level, which could contribute to the maintenance of the species boundary.

摘要

物种形成是一个基本的进化过程,导致种群的遗传分化,并表现为形态、生理和行为上的明显差异。每个物种都有自己的进化轨迹,受到随机漂变的影响,并受到各种类型的自然选择的驱动,使得物种之间的遗传差异与表型差异之间的关联极其复杂,难以剖析。在本研究中,我们使用体外模型深入分析了两种密切相关的哺乳动物——北极/亚北极山地兔(Lepus timidus Linnaeus)和温带草原气候适应的褐兔(Lepus europaeus Pallas)的成纤维细胞的遗传和基因调控差异。我们发现了 1623 个基因的物种特异性表达模式的存在,表现在细胞生长、细胞周期控制、呼吸和代谢方面的差异。成纤维细胞的管家功能的种间差异表明,即使在这两个可杂交的物种中,物种形成也会影响基本的细胞过程。我们的研究结果有助于理解细胞水平上物种差异的分子组成,这可能有助于维持物种边界。

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