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Transcriptomic analysis of skin pigmentation variation in the Virginia opossum (Didelphis virginiana)

机译:弗吉尼亚毒品鼠皮肤色素沉着变异的转录组分析(Didelphis Virginiana)

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摘要

Skin pigmentation and coat pigmentation are two of the best-studied examples of traits under natural selection given their quantifiable fitness interactions with the environment (e.g., camouflage) and signalling with other organisms (e.g., warning coloration). Previous morphological studies have found that skin pigmentation variation in the Virginia opossum (Didelphis virginiana) is associated with variation in precipitation and temperatures across its distribution range following Gloger's rule (lighter pigmentation in temperate environments). To investigate the molecular mechanism associated with skin pigmentation variation, we used RNA-Seq and quantified gene expression of wild opossums from tropical and temperate populations. Using differential expression analysis and a co-expression network approach, we found that expression variation in genes with melanocytic and immune functions is significantly associated with the degree of skin pigmentation variation and may be underlying this phenotypic difference. We also found evidence suggesting that the Wnt/beta-catenin signalling pathway might be regulating the depigmentation observed in temperate populations. Based on our study results, we present several alternative hypotheses that may explain Gloger's rule pattern of skin pigmentation variation in opossum, including changes in pathogen diversity supporting a pathogen-resistant hypothesis, thermal stress associated with temperate environments, and pleiotropic and epistatic interactions between melanocytic and immune genes.
机译:皮肤色素沉着和涂层色素沉着是自然选择下的最佳研究实例中的两个,鉴于其可量化的健身与环境(例如,伪装)和与其他生物(例如,警告着色)的信号相互作用。先前的形态学研究发现,弗吉尼亚·莫蛋白(DidElphis Virginiana)的皮肤色素沉着变化与其分配范围内的降水和温度的变化有关,在Gloger的规则(温带环境中较轻的色素沉着)。为了研究与皮肤色素沉着变异相关的分子机制,我们使用来自热带和温带群体的RNA-SEQ和量化的野生鼠标的基因表达。使用差异表达分析和共表达网络方法,我们发现具有黑素细胞和免疫功能的基因的表达变化与皮肤色素沉着变异程度显着相关,并且可以是这种表型差异的依赖性。我们还发现证据表明WNT /β-连环蛋白信号传导途径可能正在调节温带人口中观察到的脱落。根据我们的研究结果,我们提出了几种替代假设,可以解释扑蛋白的皮肤色素沉着变化的Gloger规则模式,包括支持病原体假设的病原体多样性的变化,与温带环境相关的热应力,以及黑色脲之间的抗性和型孔隙术和背景相互作用。和免疫基因。

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