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重新审视昆虫的水分流失:宏观视角

Revisiting water loss in insects: a large scale view.

作者信息

Addo-Bediako Abraham, Chown Steven L., Gaston Kevin J.

机构信息

Department of Zoology & Entomology, University of Pretoria, 0002, Pretoria, South Africa

出版信息

J Insect Physiol. 2001 Dec;47(12):1377-1388. doi: 10.1016/s0022-1910(01)00128-7.

Abstract

Desiccation resistance in insects has long been thought to covary with environmental water availability, and to involve changes in both cuticular and respiratory transpiration. Here, we adopt a large-scale approach to address both issues. Water loss rate and precipitation are positively related at global scales. A significant proportion (68%) of the interspecific variation in water loss rate is explained at the genus level or above. The relationship between metabolic rate and water loss rate differs substantially between mesic and xeric species. While these variables covary as a consequence of their independent covariation with body mass in mesic species, this is not the case in xeric species. In the latter, there is a strong relationship between the residuals of the water loss rate-body mass and metabolic rate-body mass relationships, and water loss rate is much reduced. Moreover, because metabolic rate does not differ significantly between xeric and mesic species of a similar size, respiratory transpiration constitutes a greater proportion of total water loss in xeric than in mesic species of a similar size. This implies that respiratory transpiration and the extent to which it can be modified must be of considerable importance in xeric insect species, although finer scale studies suggest otherwise.

摘要

长期以来,人们一直认为昆虫的抗干燥能力与环境水分可利用性共同变化,并且涉及表皮蒸腾和呼吸蒸腾的变化。在此,我们采用大规模方法来解决这两个问题。在全球范围内,水分流失率与降水量呈正相关。在属级或更高分类水平上,水分流失率种间变异的很大一部分(68%)可以得到解释。中生境物种和旱生境物种的代谢率与水分流失率之间的关系存在很大差异。在中生境物种中,由于这些变量与体重独立共同变化,它们会共同变化,但在旱生境物种中并非如此。在旱生境物种中,水分流失率与体重关系的残差和代谢率与体重关系的残差之间存在很强的关系,且水分流失率大大降低。此外,由于大小相似的旱生境物种和中生境物种之间的代谢率没有显著差异,在大小相似的旱生境物种中,呼吸蒸腾在总水分流失中所占比例比中生境物种更大。这意味着呼吸蒸腾及其可调节程度在旱生昆虫物种中必定相当重要,尽管更精细尺度的研究表明情况并非如此。

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