Klok C J, Chown S L
Department of Botany and Zoology, DST Centre of Excellence for Invasion Biology, Stellenbosch University, Private Bag X1, Matieland 7602, South Africa.
J Insect Physiol. 2005 Jul;51(7):789-801. doi: 10.1016/j.jinsphys.2005.03.007.
The influence of temperature on metabolic rate and characteristics of the gas exchange patterns of flightless, sub-Antarctic Ectemnorhinus-group species from Heard and Marion islands was investigated. All of the species showed cyclic gas exchange with no Flutter period, indicating that these species are not characterized by discontinuous gas exchange cycles. Metabolic rate estimates were substantially lower in this study than in a previous one of a subset of the species, demonstrating that open-system respirometry methods provide more representative estimates of standard metabolic rate than do many closed-system methods. We recommend that the latter, and especially constant-pressure methods, either be abandoned for estimates of standard metabolic rate in insects, or have their outputs subject to careful scrutiny, given the wide availability of the former. V(.)CO(2) increase with an increase in temperature (range: 0-15 degrees C) was modulated by an increase in cycle frequency, but typically not by an increase in burst volume. Previous investigations of temperature-related changes in cyclic gas exchange (both cyclic and discontinuous) in several other insect species were therefore substantiated. Interspecific mass-scaling of metabolic rate (ca. 0.466-0.573, excluding and including phylogenetic non-independence, respectively) produced an exponent lower than 0.75 (but not distinguishable from it or from 0.67). The increase of metabolic rate with mass was modulated by an increase in burst volume and not by a change in cycle frequency, in keeping with investigations of species showing discontinuous gas exchange. These findings are discussed in the context of the emerging macrophysiological metabolic theory of ecology.
研究了温度对来自赫德岛和马里恩岛的不会飞的亚南极埃克泰莫犀属物种代谢率及气体交换模式特征的影响。所有物种均表现出无扑动期的周期性气体交换,这表明这些物种并非以不连续气体交换周期为特征。本研究中的代谢率估计值显著低于此前对部分该物种的研究结果,这表明与许多封闭系统方法相比,开放系统呼吸测定法能提供更具代表性的标准代谢率估计值。鉴于前者广泛可用,我们建议放弃使用后者,尤其是恒压方法来估计昆虫的标准代谢率,或者对其输出结果进行仔细审查。随着温度升高(范围:0 - 15摄氏度),V(.)CO(2)的增加是由循环频率的增加调节的,但通常不是由爆发量的增加调节的。因此,此前对其他几种昆虫物种中与温度相关的周期性气体交换(包括循环和不连续的)变化的研究得到了证实。种间代谢率的质量标度(分别排除和纳入系统发育非独立性时,约为0.466 - 0.573)产生的指数低于0.75(但与0.75或0.67无显著差异)。与显示不连续气体交换的物种研究结果一致,代谢率随质量的增加是由爆发量的增加调节的,而不是由循环频率的变化调节的。这些发现是在新兴的宏观生理代谢生态学理论背景下进行讨论的。