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首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Digestive performance in five Mediterranean lizard species: effects of temperature and insularity
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Digestive performance in five Mediterranean lizard species: effects of temperature and insularity

机译:五种地中海蜥蜴的消化性能:温度和岛屿的影响

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Temperature sensitivity of digestive processes has important ramifications for digestive performance in ectothermic vertebrates. We conducted a comparative analysis of temperature effects on digestive processes [gut passage times (GPTs) and apparent digestive efficiencies (ADEs)] in five lacertid lizards occurring in insular (Podarcis erhardii, P. gaigeae), and mainland (P. muralis, P. peloponnesiaca, Lacerta graeca) Mediterranean environments. GPTs were negatively correlated to temperature with mainland taxa having 10-20% longer GPTs than island taxa. In contrast to previous studies that estimate ADEs using bomb calorimetry, we compare ADEs by analyzing discrete efficiencies for lipids, sugars and proteins at three temperature regimes (20, 25, and 30 degrees C); each of these categories produces different results. ADEs for lipids and sugars showed a monotonic increase with temperature whereas ADEs for proteins decreased with temperature. Island taxa had consistently higher ADEs than their mainland counterparts for lipids and for proteins but not for sugars. They are characterized by superior energy acquisition abilities despite significantly shorter GPTs. Their increased digestive performance relative to the mainland species appears to allow them to maximize energy acquisition in unproductive island environments where food availability is spatially and seasonally clustered.
机译:消化过程的温度敏感性对在外热脊椎动物中的消化性能具有重要影响。我们对在岛屿(Podarcis erhardii,P。gaigeae)和大陆地区(P. muralis,P。 peloponnesiaca,Lacerta graeca)地中海环境。 GPT与温度呈负相关,大陆类群的GPT比岛屿类群长10-20%。与以前使用炸弹量热法估算ADE的研究相反,我们通过分析三种温度范围(20、25和30摄氏度)下脂质,糖和蛋白质的离散效率来比较ADE。这些类别中的每一个都会产生不同的结果。脂类和糖类的ADEs随着温度呈单调增加,而蛋白质类的ADEs随着温度下降。岛类群在脂质和蛋白质方面的ADE一直比大陆同类植物更高,但糖类却没有。尽管GPT明显缩短,但它们仍具有出色的能量获取能力。与大陆物种相比,它们的消化性能增强,似乎使它们能够在食物和生产在空间和季节上集中的非生产性岛屿环境中最大限度地获取能量。

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