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Metabolic cost of osmoregulation in a hypertonic environment in the invasive African clawed frog Xenopus laevis

机译:高渗环境中侵入性非洲爪蛙Xenopus laevis渗透调节的代谢成本

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Studies of aquatic invertebrates reveal that salinity affects feeding and growth rates, reproduction, survival, and diversity. Little is known, however, about how salinity impacts the energy budget of vertebrates and amphibians in particular. The few studies focused on this topic in vertebrates suggest that the ingestion of salts and the resulting osmoregulatory activity is energetically expensive. We analyzed the effect of saline acclimation on standard metabolic rates (SMR) and the activities of metabolic enzymes of internal organs and osmoregulatory variables (plasma osmolality and urea plasma level) in females of?Xenopus laevis?by means of acclimating individuals to an isosmotic (235 mOsm NaCl; ISO group) and hyper-osmotic (340 mOsm NaCl; HYP group) environment for 40?days. After acclimation, we found that total and mass-specific SMR was approximately 80% higher in the HYP group than those found in the ISO group. These changes were accompanied by higher citrate synthase activities in liver and heart in the HYP group than in the ISO group. Furthermore, we found a significant and positive correlation between metabolic rates and plasma urea, and citrate synthase activity in liver and heart. These results support the notion that the cost of osmoregulation is probably common in most animal species and suggest the existence of a functional association between metabolic rates and the adjustments in osmoregulatory physiology, such as blood distribution and urea synthesis.
机译:对水生无脊椎动物的研究表明,盐度会影响摄食和生长速率,繁殖,存活和多样性。然而,关于盐度如何影响脊椎动物尤其是两栖动物的能量收支知之甚少。很少有研究集中在脊椎动物中这个主题上,这表明盐的摄入和由此产生的渗透调节活性在能量上是昂贵的。我们通过使个体适应等渗性来分析咸水驯化对非洲爪蟾女性的标准代谢率(SMR)和内脏代谢酶活性以及渗透调节变量(血浆渗透压和尿素血浆水平)的影响。 235 mOsm NaCl; ISO组)和高渗环境(340 mOsm NaCl; HYP组)环境持续40天。适应后,我们发现,HYP组的总特异性和质量特异性SMR比ISO组高约80%。与ISO组相比,HYP组在肝脏和心脏中的这些变化伴有更高的柠檬酸合酶活性。此外,我们发现肝脏和心脏的代谢率与血浆尿素以及柠檬酸合酶活性之间存在显着正相关。这些结果支持这样的观点,即渗透压的代价在大多数动物物种中可能很常见,并表明代谢率与渗透压调节生理学的调整(例如血液分布和尿素合成)之间存在功能关联。

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