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蜣螂(鞘翅目:金龟科)的不连续气体交换循环:质量缩放与温度依赖性

Discontinuous gas-exchange cycles in Scarabaeus dung beetles (Coleoptera: Scarabaeidae): mass-scaling and temperature dependence.

作者信息

Davis A L, Chown S L, Scholtz C H

机构信息

Department of Zoology and Entomology, University of Pretoria, Pretoria, 0002 South Africa.

出版信息

Physiol Biochem Zool. 1999 Sep-Oct;72(5):555-65. doi: 10.1086/316698.

Abstract

Although discontinuous gas exchange cycles (DGC) are known from many insects, the effects of body size and temperature on DGC have not been widely examined. Here, these effects are investigated in five Scarabaeus dung beetle species from mesic and xeric habitats. The investigation tests two hypotheses: that previous estimates of the scaling exponents for the DGC and its characteristics are more broadly applicable to insects, and that, in response to temperature, both DGC frequency and the quantity of CO2 emitted during the open (O) phase (O-phase emission volume) are modulated. Like previous workers, we find that V&d2;co2 scaled as mass0.968 and that O-phase emission volume scaled as mass0.833. However, temperature-associated increases in .Vco2 (Q10's of 2.19-2.65) were modulated mostly by increases in DGC frequency since O-phase volumes remained constant across temperature. Flutter (F)-phase and O-phase durations were closely coupled to DGC duration, although the relationship between closed (C)-phase duration and DGC duration was less pronounced. We show that ventilation phase coefficients, previously considered a measure of the proportional duration of each phase of the DGC, calculated from the slopes of these relationships are a measure of change in phase duration with change in DGC duration and not a measure of the way in which total DGC duration is apportioned among phases. We suggest that proportions be used to estimate the contribution of each of the phases to the total duration of the DGC.

摘要

尽管许多昆虫都存在不连续气体交换循环(DGC),但体型和温度对DGC的影响尚未得到广泛研究。在此,对来自湿润和干旱栖息地的五种蜣螂(Scarabaeus)进行了这些影响的研究。该研究检验了两个假设:先前对DGC及其特征的标度指数估计更广泛地适用于昆虫,以及响应温度时,DGC频率和开放(O)阶段排放的二氧化碳量(O阶段排放量)都会受到调节。与之前的研究人员一样,我们发现V̇CO₂与质量的0.968次方成正比,O阶段排放量与质量的0.833次方成正比。然而,由于O阶段体积在不同温度下保持恒定,与温度相关的V̇CO₂增加(Q10为2.19 - 2.65)主要是由DGC频率增加调节的。颤动(F)阶段和O阶段的持续时间与DGC持续时间紧密相关,尽管封闭(C)阶段持续时间与DGC持续时间之间的关系不太明显。我们表明,通风阶段系数,以前被认为是DGC各阶段比例持续时间的一种度量,由这些关系的斜率计算得出,是阶段持续时间随DGC持续时间变化的一种度量,而不是DGC总持续时间在各阶段分配方式的一种度量。我们建议使用比例来估计各阶段对DGC总持续时间的贡献。

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