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非常大型的蟑螂物种(Gromphadorhina portentosa)的耗氧量和心率的非线性缩放:与体型和温度的相关变化。

Non-linear scaling of oxygen consumption and heart rate in a very large cockroach species (Gromphadorhina portentosa): correlated changes with body size and temperature.

机构信息

Department of Molecular and Microbiology, George Mason University, Fairfax, VA 22030, USA.

出版信息

J Exp Biol. 2012 Apr 1;215(Pt 7):1137-43. doi: 10.1242/jeb.061143.

Abstract

Although well documented in vertebrates, correlated changes between metabolic rate and cardiovascular function of insects have rarely been described. Using the very large cockroach species Gromphadorhina portentosa, we examined oxygen consumption and heart rate across a range of body sizes and temperatures. Metabolic rate scaled positively and heart rate negatively with body size, but neither scaled linearly. The response of these two variables to temperature was similar. This correlated response to endogenous (body mass) and exogenous (temperature) variables is likely explained by a mutual dependence on similar metabolic substrate use and/or coupled regulatory pathways. The intraspecific scaling for oxygen consumption rate showed an apparent plateauing at body masses greater than about 3 g. An examination of cuticle mass across all instars revealed isometric scaling with no evidence of an ontogenetic shift towards proportionally larger cuticles. Published oxygen consumption rates of other Blattodea species were also examined and, as in our intraspecific examination of G. portentosa, the scaling relationship was found to be non-linear with a decreasing slope at larger body masses. The decreasing slope at very large body masses in both intraspecific and interspecific comparisons may have important implications for future investigations of the relationship between oxygen transport and maximum body size in insects.

摘要

尽管脊椎动物中的相关变化得到了很好的记录,但昆虫的代谢率和心血管功能之间的相关变化很少被描述。本研究使用大型蟑螂物种地鳖(Gromphadorhina portentosa),研究了一系列体型和温度下的耗氧量和心率。代谢率与体型呈正相关,心率与体型呈负相关,但都不是线性相关。这两个变量对温度的反应相似。这种对内源性(体重)和外源性(温度)变量的相关反应可能是由于对类似代谢底物利用和/或耦合调节途径的相互依赖。耗氧量的种内比例显示出在体重大于约 3 g 时明显趋于平稳。对所有龄期的表皮质量进行检查,发现其与体型呈等比例缩放,没有证据表明表皮比例随个体发育而增大。还检查了其他蜚蠊目的已发表的耗氧量数据,与我们对地鳖的种内研究一样,发现这种比例关系是非线性的,在较大的体型下斜率减小。在种内和种间比较中,体型非常大时斜率减小,这可能对未来昆虫的氧气运输与最大体型之间关系的研究具有重要意义。

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