Chemical manipulation of mitochondrial function affects metabolism of red carotenoids in a marine copepod (Tigriopus californicus).

M. Powers, Alex Baty, Alexis M Dinga, James H Mao, G. Hill
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引用次数: 6

Abstract

The Shared-Pathway Hypothesis offers a cellular explanation for the connection between ketocarotenoid pigmentation and individual quality. Under this hypothesis, ketocarotenoid metabolism shares cellular pathways with mitochondrial oxidative phosphorylation such that red carotenoid-based coloration is inextricably linked mitochondrial function. To test this hypothesis, we exposed Tigriopus californicus copepods to a mitochondrially-targeted protonophore, 2-4-dinitrophenol (DNP), to induce proton leak in the inner mitochondrial membranes. We then measured whole-animal metabolic rate and ketocarotenoid accumulation. As observed in prior studies of vertebrates, we observed that DNP treatment of copepods significantly increased respiration and that DNP-treated copepods accumulated more ketocarotenoid than control animals. Moreover, we observed a relationship between ketocarotenoid concentration and metabolic rate, and this association was strongest in DNP-treated copepods. These data support the hypothesis that ketocarotenoid and mitochondrial metabolism are biochemically intertwined. Moreover, these results corroborate observations in vertebrates, perhaps suggesting a fundamental connection between ketocarotenoid pigmentation and mitochondrial function that should be explored further.
线粒体功能的化学操作影响海洋桡足动物(加利福尼亚虎)的红色类胡萝卜素代谢。
共享通路假说为类酮胡萝卜素色素沉着与个体品质之间的联系提供了细胞解释。在这一假设下,类酮胡萝卜素代谢与线粒体氧化磷酸化共享细胞途径,因此基于红色类胡萝卜素的着色与线粒体功能密不可分。为了验证这一假设,我们将加利福尼亚虎足桡足类暴露于线粒体靶向质子载体2-4-二硝基苯酚(DNP)中,以诱导线粒体膜内的质子泄漏。然后我们测量了全动物代谢率和类酮胡萝卜素的积累。正如之前对脊椎动物的研究所观察到的那样,我们发现DNP处理的桡足类动物显著增加了呼吸,并且DNP处理的桡足类动物比对照动物积累了更多的类酮胡萝卜素。此外,我们观察到类酮胡萝卜素浓度与代谢率之间的关系,这种关联在dnp处理的桡足类中最强。这些数据支持了类酮胡萝卜素和线粒体代谢在生物化学上相互交织的假设。此外,这些结果证实了在脊椎动物中的观察结果,可能表明类酮胡萝卜素色素沉着和线粒体功能之间的基本联系应该进一步探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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