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亚南极象鼻虫的水平衡特征会对体型变化做出反应。

Water-balance characteristics respond to changes in body size in subantarctic weevils.

作者信息

Chown Steven L, Klok C Jaco

机构信息

Spatial, Physiological, and Conservation Ecology Group, Department of Zoology, University of Stellenbosch, Private Bag X1, Matieland 7602, South Africa.

出版信息

Physiol Biochem Zool. 2003 Sep-Oct;76(5):634-43. doi: 10.1086/376919.

Abstract

Several environmental factors leading to size-dependent mortality influence insect body size. Few investigations have been concerned with the ways in which the mechanisms underlying variation in water-balance characteristics evolve in response to changes in body size that occur independently of water-balance requirements. Using an explicitly phylogenetic analysis, we show how body size has changed over time in the Ectemnorhinus group of weevils and how water-balance characteristics have evolved in response to this change and changes in habitat use. The basal species in the group are all large bodied and from moist environments. In response to a change in resource availability, there was a marked decline in size within the group. Despite the reduction in water content and dehydration tolerance that this meant, evolution of low whole-animal water-loss rates and high tolerance of dehydration resulted in conservation of desiccation resistance. The return to moist habitats in the group resulted in a reduction in dehydration tolerance and an increase in water-loss rate. Thus, dehydration tolerance and water-loss rate respond rapidly both when there is selection for water conservation and when this requirement is relaxed. Future laboratory selection experiments might usefully explore both directions of water-balance evolution.

摘要

一些导致与体型相关死亡率的环境因素会影响昆虫的体型。很少有研究关注水分平衡特征变化背后的机制是如何随着与水分平衡需求无关的体型变化而演变的。通过明确的系统发育分析,我们展示了象鼻虫科Ectemnorhinus类群的体型如何随时间变化,以及水分平衡特征如何响应这种变化和栖息地利用的变化而演变。该类群的基部物种体型都很大,且来自潮湿环境。由于资源可用性的变化,该类群内的体型显著下降。尽管这意味着含水量和脱水耐受性降低,但低的整体动物失水率和高的脱水耐受性的进化导致了抗干燥能力的保留。该类群回到潮湿栖息地导致脱水耐受性降低和失水率增加。因此,当选择保水时以及当这种需求放松时,脱水耐受性和失水率都会迅速做出反应。未来的实验室选择实验可能会有益地探索水分平衡进化的两个方向。

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