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眼睑壁虎代谢率和红细胞大小的个体发育:物种走不同的道路。

Ontogeny of metabolic rate and red blood cell size in eyelid geckos: species follow different paths.

机构信息

Department of Zoology, Faculty of Science, Charles University in Prague, Prague, Czech Republic.

出版信息

PLoS One. 2013 May 21;8(5):e64715. doi: 10.1371/journal.pone.0064715. Print 2013.

Abstract

While metabolism is a fundamental feature of all organisms, the causes of its scaling with body mass are not yet fully explained. Nevertheless, observations of negative correlations between red blood cell (RBC) size and the rate of metabolism suggest that size variation of these cells responsible for oxygen supply may play a crucial role in determining metabolic rate scaling in vertebrates. Based on a prediction derived from the Cell Metabolism Hypothesis, metabolic rate should increase linearly with body mass in species with RBC size invariance, and slower than linearly when RBC size increases with body mass. We found support for that prediction in five species of eyelid geckos (family Eublepharidae) with different patterns of RBC size variation during ontogenetic growth. During ontogeny, metabolic rate increases nearly linearly with body mass in those species of eyelid geckos where there is no correlation between RBC size and body mass, whereas non-linearity of metabolic rate scaling is evident in those species with ontogenetic increase of RBC size. Our findings provide evidence that ontogenetic variability in RBC size, possibly correlating with sizes of other cell types, could have important physiological consequences and can contribute to qualitatively different shape of the intraspecific relationship between metabolic rate and body mass.

摘要

虽然新陈代谢是所有生物体的基本特征,但它与体重的比例关系的原因尚不完全清楚。然而,红细胞(RBC)大小与代谢率之间存在负相关的观察结果表明,这些负责供氧的细胞的大小变化可能在确定脊椎动物代谢率比例关系中起着关键作用。基于来自《细胞代谢假说》的预测,在 RBC 大小不变的物种中,代谢率应该随体重呈线性增加,而当 RBC 大小随体重增加时,代谢率的增加速度应该慢于线性。我们在五种眼睑壁虎(Eublepharidae 科)中发现了对该预测的支持,这些物种在个体发育过程中 RBC 大小存在不同的变化模式。在个体发育过程中,在那些 RBC 大小与体重之间没有相关性的眼睑壁虎物种中,代谢率随体重几乎呈线性增加,而在那些 RBC 大小随个体发育而增加的物种中,代谢率比例关系的非线性则很明显。我们的研究结果表明,RBC 大小在个体发育过程中的变化,可能与其他细胞类型的大小相关,可能具有重要的生理后果,并有助于解释代谢率与体重之间的种内关系在质上的不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11b6/3660393/7b15d5a69b84/pone.0064715.g001.jpg

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