水蒸发随温度、湿度、风速和体型的变化。

IF 1.4 3区 生物学 Q2 ZOOLOGY
Sascha Zimmermann, Ulrich Gärtner, Yvan Capowiez, Heinz-R Köhler, David Wharam
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引用次数: 0

摘要

为了使陆生蜗牛在干旱环境中生存,保持水分是非常重要的。然而,体内水分的蒸发确实发生了,目前尚不清楚蜗牛是否能够主动减少蒸发,或者环境温度的升高是否不可避免地导致蒸发增加。从物理上讲,蒸发水量在很大程度上取决于温度、相对湿度和周围空气的速度,以及蒸发体的表面积。底螺(Theba pisana)是一种分布广泛的地中海陆地蜗牛,它暴露在很大范围的环境温度下。对于该物种,实验记录的每质量蒸发率作为“解释”变量温度、相对湿度和空气速度的“响应”变量,使用多元回归模型进行了测试。这些参数可解释比蒸发量变化的72.8%。阈值温度取决于相对湿度、空气速度和身体大小等参数,研究发现,阈值温度会引起蜗牛的积极反应,从而降低它们的蒸发速率。对不同大小蜗牛的比蒸发速率进行了比较分析,结果表明,在低温条件下,较大的蜗牛比较小的蜗牛的比蒸发速率更低。然而,在一个阈值温度以上,这一趋势就会逆转,这取决于空气速度和相对湿度。一般来说,在较高的相对湿度下,蒸发速率较低。在规定的温度范围内(23-35°C),蜗牛倾向于主动降低蒸发速率以节约水分,而不是增加蒸发速率以避免过热。这些发现为支持在缺水环境中生存的生理适应提供了有价值的信息,为理解沙漠蜗牛等适应干旱的物种提供了重要启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water evaporation as a function of temperature, humidity, air velocity and body size in inactive terrestrial pulmonate Theba pisana.

The conservation of water is of great importance to terrestrial snails in order to survive in arid environments. However, evaporation of body water does occur, and it is unclear whether snails are able to actively reduce the evaporation or whether increased environmental temperature inevitably leads to increased evaporation. Physically, the quantity of evaporating water is largely determined by the temperature, the relative humidity and the velocity of the surrounding air, as well as the surface area of the evaporating body. Theba pisana, a widespread Mediterranean land snail, is exposed to a wide range of ambient temperatures. For this species the experimentally recorded evaporation rate per mass was tested as a 'response' variable to the 'explanatory' variables temperature, relative humidity and air velocity using multiple regression modelling. The variation in specific evaporation of T. pisana could be explained to 72.8% by these parameters. Threshold temperatures, which depended on the parameters relative humidity, air velocity and body size, were found to induce an active response in the snail that reduced their evaporation rate. A comparative analysis of the specific evaporation rate of different-sized snails shows that, at low temperatures, larger snails have a lower specific evaporation rate than smaller snails. However, above a threshold temperature this trend reversed, depending on air velocity and relative humidity. In general, the evaporation rate is lower at higher relative humidities. In the specified temperature range (23-35 °C) the snails tend to actively reduce the evaporation rate to conserve water rather than increase the evaporation rate to avoid overheating. These findings provide valuable information about the physiological adaptations that support survival in water-limited environments, offering important implications for understanding arid-adapted species such as desert snails.

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来源期刊
BMC Zoology
BMC Zoology Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
2.30
自引率
6.20%
发文量
53
审稿时长
24 weeks
期刊介绍: BMC Zoology is an open access, peer-reviewed journal that considers articles on all aspects of zoology, including physiology, mechanistic and functional studies, anatomy, life history, behavior, signalling and communication, cognition, parasitism, taxonomy and conservation.
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