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大山雀线粒体呼吸、静息代谢率与血细胞计数之间的关系。

The relationship between mitochondrial respiration, resting metabolic rate and blood cell count in great tits.

作者信息

Thoral Elisa, García-Díaz Carmen C, Persson Elin, Chamkha Imen, Elmér Eskil, Ruuskanen Suvi, Nord Andreas

机构信息

Lund University, Department of Biology, Section for Evolutionary Ecology, Sölvegatan 37, SE-223 62 Lund, Sweden.

Lund University, Department of Clinical Sciences, Mitochondrial Medicine, Sölvegatan 17, SE-221 84, Lund, Sweden.

出版信息

Biol Open. 2024 Mar 1;13(3). doi: 10.1242/bio.060302. Epub 2024 Mar 11.

Abstract

Although mitochondrial respiration is believed to explain a substantial part of the variation in resting metabolic rate (RMR), few studies have empirically studied the relationship between organismal and cellular metabolism. We therefore investigated the relationship between RMR and mitochondrial respiration of permeabilized blood cells in wild great tits (Parus major L.). We also studied the correlation between mitochondrial respiration traits and blood cell count, as normalizing mitochondrial respiration by the cell count is a method commonly used to study blood metabolism. In contrast to previous studies, our results show that there was no relationship between RMR and mitochondrial respiration in intact blood cells (i.e. with the ROUTINE respiration). However, when cells were permeabilized and interrelation re-assessed under saturating substrate availability, we found that RMR was positively related to phosphorylating respiration rates through complexes I and II (i.e. OXPHOS respiration) and to the mitochondrial efficiency to produce energy (i.e. net phosphorylation efficiency), though variation explained by the models was low (i.e. linear model: R2=0.14 to 0.21). However, unlike studies in mammals, LEAK respiration without [i.e. L(n)] and with [i.e. L(Omy)] adenylates was not significantly related to RMR. These results suggest that phosphorylating respiration in blood cells can potentially be used to predict RMR in wild birds, but that this relationship may have to be addressed in standardized conditions (permeabilized cells) and that the prediction risks being imprecise. We also showed that, in our conditions, there was no relationship between any mitochondrial respiration trait and blood cell count. Hence, we caution against normalising respiration rates using this parameter as is sometimes done. Future work should address the functional explanations for the observed relationships, and determine why these appear labile across space, time, taxon, and physiological state.

摘要

尽管线粒体呼吸被认为可以解释静息代谢率(RMR)变化的很大一部分,但很少有研究实证研究机体代谢与细胞代谢之间的关系。因此,我们研究了野生大山雀(Parus major L.)中透化血细胞的RMR与线粒体呼吸之间的关系。我们还研究了线粒体呼吸特征与血细胞计数之间的相关性,因为通过细胞计数对线粒体呼吸进行标准化是研究血液代谢常用的方法。与之前的研究不同,我们的结果表明,完整血细胞中的RMR与线粒体呼吸之间没有关系(即常规呼吸)。然而,当细胞被透化并在底物充足的情况下重新评估相互关系时,我们发现RMR与通过复合体I和II的磷酸化呼吸速率(即氧化磷酸化呼吸)以及线粒体产生能量的效率(即净磷酸化效率)呈正相关,尽管模型解释的变异较低(即线性模型:R2 = 0.14至0.21)。然而,与哺乳动物的研究不同,不含腺苷酸[即L(n)]和含腺苷酸[即L(Omy)]时的泄漏呼吸与RMR没有显著关系。这些结果表明,血细胞中的磷酸化呼吸可能可用于预测野生鸟类的RMR,但这种关系可能必须在标准化条件下(透化细胞)进行研究,并且预测可能不准确。我们还表明,在我们的条件下,任何线粒体呼吸特征与血细胞计数之间没有关系。因此,我们提醒不要像有时那样使用这个参数对呼吸速率进行标准化。未来的工作应该探讨对观察到的关系的功能解释,并确定为什么这些关系在空间、时间、分类群和生理状态上似乎不稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffe5/10958200/9d2ee7a7ff2c/biolopen-13-060302-g1.jpg

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