McGirr Joseph A, Martin Christopher H
Department of Biology University of North Carolina at Chapel Hill Chapel Hill North Carolina 27514.
Evol Lett. 2018 Feb 14;2(2):62-75. doi: 10.1002/evl3.41. eCollection 2018 Apr.
Parallel evolution of gene expression commonly underlies convergent niche specialization, but parallel changes in expression could also underlie divergent specialization. We investigated divergence in gene expression and whole-genome genetic variation across three sympatric pupfishes endemic to San Salvador Island, Bahamas. This recent radiation consists of a generalist and two derived specialists adapted to novel niches: a scale-eating and a snail-eating pupfish. We sampled total mRNA from all three species at two early developmental stages and compared gene expression with whole-genome genetic differentiation among all three species in 42 resequenced genomes. Eighty percent of genes that were differentially expressed between snail-eaters and generalists were up or down regulated in the same direction between scale-eaters and generalists; however, there were no fixed variants shared between species underlying these parallel changes in expression. Genes showing parallel evolution of expression were enriched for effects on metabolic processes, whereas genes showing divergent expression were enriched for effects on cranial skeleton development and pigment biosynthesis, reflecting the most divergent phenotypes observed between specialist species. Our findings reveal that even divergent niche specialists may exhibit convergent adaptation to higher trophic levels through shared genetic pathways. This counterintuitive result suggests that parallel evolution in gene expression can accompany divergent ecological speciation during adaptive radiation.
基因表达的平行进化通常是趋同生态位特化的基础,但表达的平行变化也可能是分化特化的基础。我们研究了巴哈马圣萨尔瓦多岛特有的三种同域鳉鱼在基因表达和全基因组遗传变异方面的差异。这种近期的辐射演化包括一个泛化种和两个适应新生态位的特化种:一种食鳞鳉鱼和一种食蜗牛鳉鱼。我们在两个早期发育阶段对所有三个物种的总mRNA进行了采样,并将基因表达与42个重测序基因组中所有三个物种之间的全基因组遗传分化进行了比较。在食蜗牛鳉鱼和泛化种之间差异表达的基因中,80% 在食鳞鳉鱼和泛化种之间也以相同方向上调或下调;然而,在这些表达的平行变化背后,物种之间没有共享的固定变异。显示出表达平行进化的基因在代谢过程的影响方面富集,而显示出差异表达的基因在颅骨骨骼发育和色素生物合成的影响方面富集,这反映了特化物种之间观察到的最显著的表型差异。我们的研究结果表明,即使是分化的生态位特化种也可能通过共享的遗传途径对更高营养级表现出趋同适应。这一违反直觉的结果表明,在适应性辐射过程中,基因表达的平行进化可能伴随着分化的生态物种形成。