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一个容易频繁发生基因渗入的北极谱系适应性线粒体DNA进化的难以捉摸的本质。

The elusive nature of adaptive mitochondrial DNA evolution of an arctic lineage prone to frequent introgression.

作者信息

Melo-Ferreira José, Vilela Joana, Fonseca Miguel M, da Fonseca Rute R, Boursot Pierre, Alves Paulo C

机构信息

CIBIO, Centro de Investigação em Biodiversidade e Recursos Genéticos, Universidade do Porto, InBIO Laboratório Associado, Portugal.

出版信息

Genome Biol Evol. 2014 Apr;6(4):886-96. doi: 10.1093/gbe/evu059.

Abstract

Mitochondria play a fundamental role in cellular metabolism, being responsible for most of the energy production of the cell in the oxidative phosphorylation (OXPHOS) pathway. Mitochondrial DNA (mtDNA) encodes for key components of this process, but its direct role in adaptation remains far from understood. Hares (Lepus spp.) are privileged models to study the impact of natural selection on mitogenomic evolution because 1) species are adapted to contrasting environments, including arctic, with different metabolic pressures, and 2) mtDNA introgression from arctic into temperate species is widespread. Here, we analyzed the sequences of 11 complete mitogenomes (ten newly obtained) of hares of temperate and arctic origins (including two of arctic origin introgressed into temperate species). The analysis of patterns of codon substitutions along the reconstructed phylogeny showed evidence for positive selection in several codons in genes of the OXPHOS complexes, most notably affecting the arctic lineage. However, using theoretical models, no predictable effect of these differences was found on the structure and physicochemical properties of the encoded proteins, suggesting that the focus of selection may lie on complex interactions with nuclear encoded peptides. Also, a cloverleaf structure was detected in the control region only from the arctic mtDNA lineage, which may influence mtDNA replication and transcription. These results suggest that adaptation impacted the evolution of hare mtDNA and may have influenced the occurrence and consequences of the many reported cases of massive mtDNA introgression. However, the origin of adaptation remains elusive.

摘要

线粒体在细胞代谢中发挥着重要作用,负责细胞在氧化磷酸化(OXPHOS)途径中产生的大部分能量。线粒体DNA(mtDNA)编码该过程的关键组成部分,但其在适应性方面的直接作用仍远未被理解。野兔(兔属物种)是研究自然选择对有丝分裂基因组进化影响的理想模型,因为:1)该物种适应包括北极在内的不同环境,面临不同的代谢压力;2)mtDNA从北极物种渗入温带物种的现象很普遍。在这里,我们分析了11个完整有丝分裂基因组的序列(10个是新获得的),这些序列来自温带和北极地区的野兔(包括两个渗入温带物种的北极起源野兔)。沿着重建的系统发育树对密码子替换模式进行分析,结果表明氧化磷酸化复合物基因中的几个密码子存在正选择的证据,最显著的是影响北极谱系。然而,使用理论模型,未发现这些差异对编码蛋白质的结构和物理化学性质有可预测的影响,这表明选择的重点可能在于与核编码肽的复杂相互作用。此外,仅在北极mtDNA谱系的控制区域检测到三叶草结构,这可能会影响mtDNA的复制和转录。这些结果表明,适应性影响了野兔mtDNA的进化,可能也影响了许多报道的大量mtDNA渗入案例的发生及后果。然而,适应性的起源仍然难以捉摸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/410b/4007550/7553b68d43a6/evu059f1p.jpg

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