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首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Phylogenetic investigation of skin sloughing rates in frogs: relationships with skin characteristics and disease-driven declines
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Phylogenetic investigation of skin sloughing rates in frogs: relationships with skin characteristics and disease-driven declines

机译:青蛙皮肤脱落率的系统发育研究:与皮肤特征和疾病驱动的关系

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摘要

Amphibian skin is highly variable in structure and function across anurans, and plays an important role in physiological homeostasis and immune defence. For example, skin sloughing has been shown to reduce pathogen loads on the skin, such as the lethal fungus Batrachochytrium dendrobatidis (Bd), but interspecific variation in sloughing frequency is largely unknown. Using phylogenetic linear mixed models, we assessed the relationship between skin turnover rate, skin morphology, ecological traits and overall evidence of Bd-driven declines. We examined skin sloughing rates in 21 frog species from three continents, as well as structural skin characteristics measured from preserved specimens. We found that sloughing rate varies significantly with phylogenetic group, but was not associated with evidence of Bd-driven declines, or other skin characteristics examined. This is the first comparison of sloughing rate across a wide range of amphibian species, and creates the first database of amphibian sloughing behaviour. Given the strong phylogenetic signal observed in sloughing rate, approximate sloughing rates of related species may be predicted based on phylogenetic position. While not related to available evidence of declines, understanding variation in sloughing rate may help explain differences in the severity of infection in genera with relatively slow skin turnover rates (e.g. Atelopus).
机译:两栖动物皮肤在结构和跨越子的结构中具有高度变化,并在生理稳态和免疫防御中起着重要作用。例如,已经显示皮肤脱落以降低皮肤上的病原体载荷,例如致死的真菌Batrachochochytrium dendrobatidis(BD),但脱落频率的间隙变化很大程度上是未知的。使用系统发育线性混合模型,我们评估了皮肤周转率,皮肤形态,生态特征与BD驱动下降的总体证据之间的关系。我们从三大洲的21种青蛙种类中检查了21种青蛙种类的皮肤淤积率,以及由保存的标本测量的结构性皮肤特性。我们发现蜕皮率随文学群体而显着变化,但没有与BD驱动的下降的证据相关,或者检查其他皮肤特征。这是跨各种两栖物种跨越泥浆速率的第一次比较,并创建了两栖剥离行为的第一个数据库。考虑到在脱落速率中观察到的强大的系统发育信号,可以基于系统发育位置来预测相关物种的近似剥离速率。虽然与可用证据无关的拒绝证据,但了解蜕皮率的变化可能有助于解释具有相对缓慢的皮肤周转率(例如也是一年)的属性感染严重程度的差异。

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