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长须鲸 MDH-1 和 MPI 同工酶变异并没有反映在相应的 DNA 序列中。

Fin whale MDH-1 and MPI allozyme variation is not reflected in the corresponding DNA sequences.

机构信息

Evolutionary Genetics Group, Department of Genetics, Microbiology, and Toxicology, Stockholm University Svante Arrhenius Väg 20C, S-106 91 Stockholm, Sweden.

Marine Research Institute Skúlagata 4, IS-101 Reykjavík, Iceland.

出版信息

Ecol Evol. 2014 May;4(10):1787-803. doi: 10.1002/ece3.1046. Epub 2014 Apr 16.

Abstract

The appeal of genetic inference methods to assess population genetic structure and guide management efforts is grounded in the correlation between the genetic similarity and gene flow among populations. Effects of such gene flow are typically genomewide; however, some loci may appear as outliers, displaying above or below average genetic divergence relative to the genomewide level. Above average population, genetic divergence may be due to divergent selection as a result of local adaptation. Consequently, substantial efforts have been directed toward such outlying loci in order to identify traits subject to local adaptation. Here, we report the results of an investigation into the molecular basis of the substantial degree of genetic divergence previously reported at allozyme loci among North Atlantic fin whale (Balaenoptera physalus) populations. We sequenced the exons encoding for the two most divergent allozyme loci (MDH-1 and MPI) and failed to detect any nonsynonymous substitutions. Following extensive error checking and analysis of additional bioinformatic and morphological data, we hypothesize that the observed allozyme polymorphisms may reflect phenotypic plasticity at the cellular level, perhaps as a response to nutritional stress. While such plasticity is intriguing in itself, and of fundamental evolutionary interest, our key finding is that the observed allozyme variation does not appear to be a result of genetic drift, migration, or selection on the MDH-1 and MPI exons themselves, stressing the importance of interpreting allozyme data with caution. As for North Atlantic fin whale population structure, our findings support the low levels of differentiation found in previous analyses of DNA nucleotide loci.

摘要

遗传推断方法在评估种群遗传结构和指导管理工作方面具有吸引力,其基础是种群间遗传相似性和基因流之间的相关性。这种基因流的影响通常是全基因组范围的;然而,一些基因座可能表现为异常值,相对于全基因组水平显示出高于或低于平均的遗传分化。高于平均的种群遗传分化可能是由于局部适应导致的分歧选择。因此,人们已经做出了大量努力来研究这些异常基因座,以确定受局部适应影响的特征。在这里,我们报告了对先前在北大西洋鳍鲸(Balaenoptera physalus)种群的同工酶基因座中报告的遗传分化程度的分子基础进行调查的结果。我们对编码两个最具分化的同工酶基因座(MDH-1 和 MPI)的外显子进行了测序,未能检测到任何非同义替换。经过广泛的错误检查和对额外的生物信息学和形态学数据的分析,我们假设观察到的同工酶多态性可能反映了细胞水平上的表型可塑性,也许是对营养压力的反应。虽然这种可塑性本身很有趣,而且具有基本的进化意义,但我们的关键发现是,观察到的同工酶变异似乎不是 MDH-1 和 MPI 外显子遗传漂变、迁移或选择的结果,这强调了谨慎解释同工酶数据的重要性。就北大西洋鳍鲸种群结构而言,我们的研究结果支持了先前在 DNA 核苷酸基因座分析中发现的低分化水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ce8/4063476/d33539046244/ece30004-1787-f1.jpg

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