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Coadaptive changes in physiological and biophysical traits related to thermal stress in web spiders

机译:与蜘蛛网热应力相关的生理和生物物理特征的适应性变化

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Web spiders are considered to have expanded their habitats from dim to bright environments during the evolutionary history. Because they are sedentary predators exposed to the sun, they may have developed a suite of adaptive traits to cope with thermal stress. We examined the critical thermal maximum, spectral reflectance of solar energy by the body surface, and surface–volume ratio (SVR) for 11 spider species. Analysis of the four genera having a pair of species inhabiting both bright and dim environments showed that species in bright environments exhibited higher lethal temperatures, but spectral reflectance and SVR did not differ. Independent contrasts using the 11 species indicated that critical thermal maximum was positively correlated with spectral reflectance and spectral reflectance was negatively correlated with SVR. These results suggest that physiological tolerance to high temperatures and a biophysical mechanism to reduce heat gain evolved jointly during the history of habitat expansion in araneoid spiders.
机译:网络蜘蛛被认为在进化史上已将其栖息地从昏暗的环境扩展到明亮的环境。由于它们是久坐的掠食者,暴露在阳光下,因此它们可能已经发展出一套适应性状以应对热应激。我们检查了11种蜘蛛的临界热最大值,太阳能在人体表面的光谱反射率以及表面体积比(SVR)。对具有两个居住在明亮和昏暗环境中的物种的四个属的分析表明,在明亮环境中的物种表现出较高的致死温度,但光谱反射率和SVR并无差异。使用这11种物种的独立对比表明,临界热最大值与光谱反射率呈正相关,而光谱反射率与SVR呈负相关。这些结果表明,在蜘蛛类动物栖息地扩展的历史中,对高温的生理耐受性和减少热量吸收的生物物理机制共同发展。

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