Rapid Divergence of Visual Systems and Signaling Traits to Contrasting Light Regimes During Early Speciation of African Crater Lake Cichlid Fish.

IF 5.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Madeleine Carruthers, Karen L Carleton, Tyler Linderoth, Jon Bridle, Alan G Hudson, Milan Malinsky, Msafiri A Ndawala, Benjamin P Ngatunga, Andrew D Saxon, Asilatu H Shechonge, Nicholas W Roberts, George F Turner, Grégoire Vernaz, M Emília Santos, Martin J Genner
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Abstract

Sensory adaptation is widely hypothesized to drive ecological speciation, yet empirical evidence from natural populations undergoing early stage divergence remains limited. In Lake Masoko, a young crater lake in East Africa, the haplochromine cichlid Astatotilapia calliptera is undergoing early stage sympatric speciation into shallow-water littoral and deep-water benthic ecotypes that experience contrasting light environments. Here, we integrate retinal transcriptomics, phenotypic analyses, and visual modeling to uncover rapid sensory divergence associated with this ecological transition. We find striking shifts in cone opsin expression, with the benthic ecotype exhibiting a switch from short-wavelength sensitive SWS2B to SWS2A and an overall narrowing of cone sensitivity toward the center of the light spectrum, consistent with changes in deep-water light environment. In contrast, coding sequence variation in opsin genes was limited and no significant differences in allele frequencies were detected across nine polymorphic sites, pointing to expression regulation as the primary axis of early divergence in visual systems. In parallel, we observed divergence in male signaling traits, with benthic males displaying deeper red egg-spots, aligning with predictions from visual modeling of signal efficiency in different light environments. These results demonstrate rapid transcriptomic and phenotypic divergence in associated signaling traits-within ∼1,000 years-supporting a potential role for regulatory evolution in sensory adaptation during early ecological speciation.

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非洲火山口湖慈鲷早期形成过程中视觉系统和信号特征的快速分化。
感官适应被广泛假设为驱动生态物种形成,但从经历早期分化的自然种群中获得的经验证据仍然有限。在东非的马斯科湖(Lake Masoko),一个年轻的火山口湖,单色明鲷(Astatotilapia calliptera)正在经历早期同域物种形成,形成浅水沿岸和深水底栖生态类型,经历不同的光环境。在这里,我们整合了视网膜转录组学、表型分析和视觉建模,以揭示与这种生态转变相关的快速感觉差异。我们发现了视锥蛋白表达的显著变化,底栖生物生态型表现出从短波敏感的SWS2B到SWS2A的转变,并且视锥蛋白对光谱中心的敏感度整体变窄,与深水光环境的变化一致。相比之下,视蛋白基因的编码序列变异有限,在9个多态性位点上检测到的等位基因频率没有显著差异,这表明表达调控是视觉系统早期分化的主要轴。与此同时,我们观察到雄性信号特征的差异,底栖动物雄性显示出更深的红色卵点,这与不同光环境下信号效率的视觉模型预测一致。这些结果表明,在大约1000年内,相关信号性状的转录组和表型发生了快速分化,支持了早期生态物种形成过程中调节进化在感觉适应中的潜在作用。
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来源期刊
Molecular biology and evolution
Molecular biology and evolution 生物-进化生物学
CiteScore
19.70
自引率
3.70%
发文量
257
审稿时长
1 months
期刊介绍: Molecular Biology and Evolution Journal Overview: Publishes research at the interface of molecular (including genomics) and evolutionary biology Considers manuscripts containing patterns, processes, and predictions at all levels of organization: population, taxonomic, functional, and phenotypic Interested in fundamental discoveries, new and improved methods, resources, technologies, and theories advancing evolutionary research Publishes balanced reviews of recent developments in genome evolution and forward-looking perspectives suggesting future directions in molecular evolution applications.
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