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季节性温度变化对淡水贻贝(珠蚌)行为和新陈代谢的影响。

The effect of seasonal temperature variation on behaviour and metabolism in the freshwater mussel (Unio tumidus).

作者信息

Lurman Glenn J, Walter Johanna, Hoppeler Hans H

机构信息

Institute of Anatomy, University of Bern, Baltzerstr. 2, 3012 Bern, Switzerland.

Institute of Anatomy, University of Bern, Baltzerstr. 2, 3012 Bern, Switzerland.

出版信息

J Therm Biol. 2014 Jul;43:13-23. doi: 10.1016/j.jtherbio.2014.04.005. Epub 2014 May 6.

Abstract

Temperature plays a critical role in determining the biology of ectotherms. Many animals have evolved mechanisms that allow them to compensate biological rates, i.e. adjust biological rates to overcome thermodynamic effects. For low energy-organisms, such as bivalves, the costs of thermal compensation may be greater than the benefits, and thus prohibitive. To examine this, two experiments were designed to explore thermal compensation in Unio tumidus. Experiment 1 examined seasonal changes in behaviour in U. tumidus throughout a year. Temperature had a clear effect on burrowing rate with no evidence of compensation. Valve closure duration and frequency were also strongly affected by seasonal temperature change, but there was slight evidence of partial compensation. Experiment 2 examined oxygen consumption during burrowing, immediately following valve opening and at rest in summer (24 °C), autumn (14 °C), winter (4 °C), and spring (14 °C) acclimatized U. tumidus. Again, there was little evidence of burrowing rate compensation, but some evidence of partial compensation of valve closure duration and frequency. None of the oxygen compensation rates showed any evidence of thermal compensation. Thus, in general, there was only very limited evidence of thermal compensation of behaviour and no evidence of thermal compensation of oxygen compensation rates. Based upon this evidence, we argue that there is no evolutionary pressure for these bivalves to compensate these biological rates. Any pressure may be to maintain or even lower oxygen consumption as their only defence against predation is to close their valves and wait. An increase in oxygen consumption will be detrimental in this regard so the cost of thermal compensation may outweigh the benefits.

摘要

温度在决定变温动物的生物学特性方面起着关键作用。许多动物已经进化出一些机制,使它们能够补偿生物速率,即调整生物速率以克服热力学效应。对于低能量生物,如双壳贝类,热补偿的成本可能大于收益,因此是令人望而却步的。为了研究这一点,设计了两个实验来探索圆顶珠蚌的热补偿。实验1研究了圆顶珠蚌一年中的行为季节性变化。温度对挖掘速率有明显影响,没有补偿的迹象。闭壳持续时间和频率也受到季节性温度变化的强烈影响,但有轻微的部分补偿迹象。实验2研究了在夏季(24℃)、秋季(14℃)、冬季(4℃)和春季(14℃)驯化的圆顶珠蚌在挖掘过程中、刚打开瓣膜后以及静止时的耗氧量。同样,几乎没有挖掘速率补偿的证据,但有一些闭壳持续时间和频率部分补偿的证据。耗氧补偿率均未显示出任何热补偿的证据。因此,总体而言,行为热补偿的证据非常有限,耗氧补偿率也没有热补偿的证据。基于这些证据,我们认为这些双壳贝类没有进化压力来补偿这些生物速率。任何压力可能是维持甚至降低耗氧量,因为它们抵御捕食的唯一防御手段是关闭瓣膜并等待。在这方面,耗氧量增加将是有害的,所以热补偿的成本可能超过收益。

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