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Candidate Genes and Adaptive Radiation: Insights from Transcriptional Adaptation to the Limnetic Niche among Coregonine Fishes (Coregonus spp., Salmonidae)

机译:候选基因和适应性放射:从转录适应对金刚碱鱼(Coregonus spp。,鲑科)中的利基生态位的见解。

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In the past 40 years, there has been increasing acceptance that variation in levels of gene expression represents a major source of evolutionary novelty. Gene expression divergence is therefore likely to be involved in the emergence of incipient species, namely, in a context of adaptive radiation. In the lake whitefish species complex (Coregonus clupeaformis), previous microarray experiments have led to the identification of candidate genes potentially implicated in the parallel evolution of the limnetic dwarf lake whitefish, which is highly distinct from the benthic normal lake whitefish in life history, morphology, metabolism, and behavior, and yet diverged from it only ∼15,000 years before present. The aim of the present study was to address transcriptional divergence for six candidate genes among lake whitefish and European whitefish (Coregonus lavaretus) species pairs, as well as lake cisco (Coregonus artedi) and vendace (Coregonus albula). The main goal was to test the hypothesis that parallel phenotypic adaptation toward the use of the limnetic niche in coregonine fishes is accompanied by parallelism in candidate gene transcription as measured by quantitative real-time polymerase chain reaction. Results obtained for three candidate genes, whereby parallelism in expression was observed across all whitefish species pairs, provide strong support for the hypothesis that divergent natural selection plays an important role in the adaptive radiation of whitefish species. However, this parallelism in expression did not extend to cisco and vendace, thereby infirming transcriptional convergence between limnetic whitefish species and their limnetic congeners for these genes. As recently proposed (Lynch 2007a. The evolution of genetic networks by non-adaptive processes. Nat Rev Genet. 8:803–813), these results may suggest that convergent phenotypic evolution can result from nonadaptive shaping of genome architecture in independently evolved coregonine lineages.
机译:在过去的40年中,越来越多的人接受基因表达水平的变化代表了进化新颖性的主要来源。因此,基因表达差异可能与初期物种的出现有关,即在适应性辐射的背景下。在湖泊白鲑物种复合体(Coregonus clupeaformis)中,先前的微阵列实验已导致鉴定出可能与边缘侏儒湖泊白鲑平行进化有关的候选基因,该候选基因在生活史,形态上与底栖正常湖泊白鲑高度不同。 ,新陈代谢和行为,但在此之前约15,000年就偏离了它。本研究的目的是解决湖白鲑和欧洲白鲑(Coregonus lavaretus)物种对以及思科湖(Coregonus artedi)和旺达斯(Coregonus albula)物种对中六个候选基因的转录差异。主要目的是检验以下假设:通过定量实时聚合酶链反应测量,平行表型适应于可可因鱼中的边缘生物小生境的使用伴随着候选基因转录的平行性。获得三个候选基因的结果,从而在所有白鱼物种对中观察到表达平行性,为以下假设提供了有力的支持:不同的自然选择在白鱼物种的适应性辐射中起着重要作用。但是,这种表达上的平行性并没有扩展到思科和范德赛,从而确保了边缘化白鲑物种和它们的边缘化同源基因之间的转录收敛。正如最近提出的(Lynch 2007a。非适应性过程的遗传网络进化。Nat Rev Genet。8:803–813),这些结果可能表明,聚合表型进化可能是由独立进化的可可因谱系中基因组结构的非适应性塑造造成的。 。

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