首页> 外文期刊>Journal of Thermal Biology >Evaporative water loss in seven species of fossorial rodents: Does effect of degree of fossoriality and sociality exist?
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Evaporative water loss in seven species of fossorial rodents: Does effect of degree of fossoriality and sociality exist?

机译:七种融化啮齿动物的蒸发水分损失:存在伤势程度和社会程度的影响吗?

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摘要

In terrestrial endotherms, evaporation is a significant mechanism of water loss in hot environments. Although water is passively lost by evaporation, individuals can regulate it at different levels. Inhabiting a relatively stable environment characterized by mild ambient temperature (T-a) and high humidity can ensure a balanced water budget. Many fossorial rodents are well adapted to live in such conditions. In this study, evaporative water loss (EWL) of fossorial rodent species with different degree of adaptations to underground life (from strictly subterranean to those with regular surface activity) was evaluated. By measuring EWL, the specific contribution of either evaporative or non-evaporative components of heat loss can be determined. With the exception of the silvery mole-rat (Heliophobius argenteocinereus), in all tested rodents EWL is relatively stable below and within the thermoneutral zone (TNZ). As T(a)s increase above TNZ, EWL increases as does total thermal conductance, but conductance increases several times more than EWL. In addition, non-evaporative routes seem to be more important than evaporative heat loss in the analyzed species. No clear pattern of EWL in relation to a species degree of fossoriality or sociality was detected. In this context, atmosphere of burrows could affect EWL, since the high humidity found inside tunnels can establish limits on evaporation to favor water rather than thermal balance.
机译:在陆地吸收中,蒸发是热环境中的水分流失的重要机制。虽然水被蒸发被动地丢失,但个体可以在不同的水平下调节它。居住在具有温和环境温度(T-A)和高湿度的相对稳定的环境,可以确保平衡的水预算。许多融合啮齿动物很适合生活在这种情况下。在本研究中,评估了与地下寿命不同程度的血流啮齿动物物种(从严格的地下到具有常规表面活性的人)的蒸发水丢失(EWL)。通过测量EWL,可以确定蒸发或非蒸发组分的热损失的具体贡献。除了银摩尔大鼠(HeliophophophophoOphius Argenteocinereus)外,在所有测试的啮齿动物中,EWL在下面和热源区(TNZ)中相对稳定。由于T(a)增加到高于TNZ,EWL总热导量随着总热传导而增加,但电导比EWL增加了几倍。此外,非蒸发途径似乎比分析物种中的蒸发热损失更重要。没有检测到与物种的融化程度或社会性关系中没有明确的EWL模式。在这种情况下,洞穴的气氛可能会影响EWL,因为隧道内部的高湿度可以建立蒸发的限制,以支持水而不是热平衡。

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