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湿度假说站不住脚:取消不连续气体交换循环并不影响近缘弓背蚁的水分流失。

The hygric hypothesis does not hold water: abolition of discontinuous gas exchange cycles does not affect water loss in the ant Camponotus vicinus.

作者信息

Lighton John R B, Turner Robbin J

机构信息

Department of Biological Sciences, University of Nevada at Las Vegas, Las Vegas, NV 89154-4004, USA.

出版信息

J Exp Biol. 2008 Feb;211(Pt 4):563-7. doi: 10.1242/jeb.010041.

Abstract

The discontinuous gas exchange cycle (DGC) of insects and other tracheate arthropods temporally decouples oxygen uptake and carbon dioxide emission and generates powerful concentration gradients for both gas species between the outside world and the tracheal system. Although the DGC is considered an adaptation to reduce respiratory water loss (RWL) - the "hygric hypothesis" - it is absent from many taxa, including xeric ones. The "chthonic hypothesis" states that the DGC originated as an adaptation to gas exchange in hypoxic and hypercapnic, i.e. underground, environments. If that is the case then the DGC is not the ancestral condition, and its expression is not necessarily a requirement for reducing RWL. Here we report a study of water loss rate in the ant Camponotus vicinus, measured while its DGC was slowly eliminated by gradual hypoxia (hypoxic ramp de-DGCing). Metabolic rate remained constant. The DGC ceased at a mean P(O2) of 8.4 kPa. RWL in the absence of DGCs was not affected until P(O2) declined below 3.9 kPa. Below that value, non-DGC spiracular regulation failed, accompanied by a large increase in RWL. Thus, the spiracular control strategy of the DGC is not required for low RWL, even in animals that normally express the DGC.

摘要

昆虫及其他具气管的节肢动物的不连续气体交换循环(DGC)在时间上使氧气摄取与二氧化碳排放解耦,并在外界与气管系统之间为这两种气体生成强大的浓度梯度。尽管DGC被认为是一种减少呼吸水分流失(RWL)的适应机制——即“湿度假说”,但在包括干旱环境中的许多分类群中却不存在。“地下假说”认为,DGC最初是对缺氧和高碳酸血症环境(即地下环境)中气体交换的一种适应。如果是这样,那么DGC并非原始状态,其表现也不一定是减少RWL的必要条件。在此,我们报告了一项对近缘弓背蚁水分流失率的研究,该研究是在通过逐渐缺氧(缺氧斜坡去DGC化)缓慢消除其DGC的过程中进行测量的。代谢率保持恒定。DGC在平均氧分压为8.4千帕时停止。在氧分压降至低于3.9千帕之前,无DGC时的RWL不受影响。低于该值时,非DGC气门调节失效,同时RWL大幅增加。因此,即使在通常表现出DGC的动物中,低RWL也不需要DGC的气门控制策略。

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