LOEWE Centre for Translational Biodiversity Genomics (TBG), 60325 Frankfurt, Germany.
Institute of Biochemistry and Biology, Universität Potsdam, 14476 Potsdam, Germany.
Genes (Basel). 2022 Jun 8;13(6):1029. doi: 10.3390/genes13061029.
(1) Background: Adaptive diversification of complex traits plays a pivotal role in the evolution of organismal diversity. In the freshwater snail genus , adaptive radiations were likely promoted by trophic specialization via diversification of their key foraging organ, the radula. (2) Methods: To investigate the molecular basis of radula diversification and its contribution to lineage divergence, we used tissue-specific transcriptomes of two sympatric ecomorphs. (3) Results: We show that ecomorphs are genetically divergent lineages with habitat-correlated abundances. Sequence divergence and the proportion of highly differentially expressed genes are significantly higher between radula transcriptomes compared to the mantle and foot. However, the same is not true when all differentially expressed genes or only non-synonymous SNPs are considered. Finally, putative homologs of some candidate genes for radula diversification (hh, arx, gbb) were also found to contribute to trophic specialization in cichlids and Darwin's finches. (4) Conclusions: Our results are in line with diversifying selection on the radula driving ecomorph divergence and indicate that some molecular pathways may be especially prone to adaptive diversification, even across phylogenetically distant animal groups.
(1) 背景:复杂特征的适应性多样化在生物多样性的进化中起着关键作用。在淡水蜗牛属中,通过其关键觅食器官——齿舌的多样化,营养特化可能促进了适应性辐射。(2) 方法:为了研究齿舌多样化的分子基础及其对谱系分化的贡献,我们使用了两种同域生态型的组织特异性转录组。(3) 结果:我们表明,生态型是遗传上分化的谱系,与栖息地相关的丰度有关。与套膜和足部相比,齿舌转录组之间的序列差异和高度差异表达基因的比例显著更高。然而,当考虑所有差异表达基因或仅非同义 SNP 时,情况并非如此。最后,一些候选基因(hh、arx、gbb)的同源物也被发现对慈鲷和达尔文雀的营养特化有贡献。(4) 结论:我们的结果与齿舌的多样化选择驱动生态型分化一致,并表明一些分子途径可能特别容易发生适应性多样化,即使在进化上相距较远的动物群体中也是如此。