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小鼠至大象体重量级范围内鱼类新陈代谢的个体发育缩放

Ontogenetic scaling of fish metabolism in the mouse-to-elephant mass magnitude range.

作者信息

Moran Damian, Wells Rufus M G

机构信息

School of Biological Sciences, The University of Auckland, Auckland, New Zealand.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2007 Nov;148(3):611-20. doi: 10.1016/j.cbpa.2007.08.006. Epub 2007 Aug 15.

Abstract

Intraspecific or ontogenetic analyses of mass-metabolism relationships do not often conform to the same allometric correlations as those seen in interspecific analyses. A commonly cited reason for this discrepancy is that ontogenetic studies examine smaller mass ranges than interspecific studies, and are therefore not statistically comparable. In this study the metabolic rate of yellowtail kingfish was measured from 0.6 mg-2.2 kg, a mass range comparable to that between a mouse and an elephant. Linear regression of the log transformed data resulted in a scaling exponent of 0.90 and high correlation coefficient. Statistical and information theory comparisons of three other models showed that a segmented linear regression and curvilinear quadratic function were an improvement over a simple linear regression. This confirmed previous observations that the metabolic scaling exponent of fish changes during ontogeny. Ammonia excretion rates were also measured and scaled linearly with an exponent of 0.87. The data showed that the metabolism of yellowtail kingfish during ontogeny did not scale with the commonly cited 2/3 or 3/4 mass exponent. This demonstrates that differences between interspecific and ontogenetic allometries are not necessarily statistical artefacts.

摘要

种内或个体发育过程中质量与代谢关系的分析,通常并不符合种间分析中所见到的相同异速生长相关性。造成这种差异的一个常见原因是,个体发育研究考察的质量范围比种间研究小,因此在统计学上不具有可比性。在本研究中,对黄尾鰤的代谢率进行了测量,质量范围从0.6毫克至2.2千克,这一质量范围与小鼠和大象之间的质量范围相当。对经对数转换后的数据进行线性回归,得到的标度指数为0.90,相关系数较高。对其他三种模型进行的统计和信息论比较表明,分段线性回归和曲线二次函数比简单线性回归有所改进。这证实了之前的观察结果,即鱼类的代谢标度指数在个体发育过程中会发生变化。同时也测量了氨排泄率,其标度指数为0.87,呈线性关系。数据表明,黄尾鰤在个体发育过程中的代谢并不遵循通常引用的2/3或3/4质量指数。这表明种间和个体发育异速生长之间的差异不一定是统计假象。

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