Corticosterone and Mitochondrial Efficiency Are Associated With Changes in DNA Oxidative Damage During an Acute Stress Response in Leach's Storm-Petrels (Hydrobates leucorhous).

Kayla E Lichtner, Jack K Dziubek, Nicole A Joseph, Sarah E Chapman, Tori J Chace, Dongxiao Sun, Zachary T Bitzer, Antoine Stier, Robert A Mauck, Patricia L Jones, Mark F Haussmann
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Abstract

The ability of organisms to effectively respond to challenges is critical for survival. We investigated how an acute stressor affected corticosterone, mitochondrial function, and DNA oxidative damage in a wild population of Leach's storm-petrels (Hydrobates leucorhous). We conducted a standardized 20-min handling procedure on storm-petrel chicks and collected baseline and post-handling blood samples. We measured plasma corticosterone and red blood cell DNA oxidative damage levels through the detection of a mutated DNA base 8-Hydroxy-2'-deoxyguanosine (8-OHdG). In addition, we quantified six measures of mitochondrial aerobic metabolism from red blood cells. Overall, the handling stressor increased plasma corticosterone levels and decreased mitochondrial efficiency to produce ATP. Although the increase in corticosterone was inversely related to the change in DNA oxidative damage, the decrease in mitochondrial efficiency was positively correlated with the change in DNA oxidative damage. Thus, over an acute stress response, individuals who had the largest increase in corticosterone also had the least amount of oxidative damage. In addition, individuals who prioritized ATP production during the acute stress also showed higher levels of oxidative damage. This work highlights the complex pathways by which corticosterone and mitochondrial efficiency affect oxidative damage during acute stress, providing new insights into the trade-offs underlying physiological responses in wild animals.

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皮质酮和线粒体效率与Leach风暴海燕(Hydrobates leucorhous)急性应激反应中DNA氧化损伤的变化有关。
生物体有效应对挑战的能力对生存至关重要。我们研究了急性应激源如何影响野生Leach风暴海燕(Hydrobates leucorhous)种群的皮质酮、线粒体功能和DNA氧化损伤。我们对风暴海燕雏鸟进行了标准化的20分钟处理程序,并收集了基线和处理后的血液样本。我们通过检测突变的DNA碱基8-羟基-2'-脱氧鸟苷(8-OHdG)来测量血浆皮质酮和红细胞DNA氧化损伤水平。此外,我们量化了红细胞线粒体有氧代谢的六项指标。总的来说,处理应激源增加了血浆皮质酮水平,降低了线粒体产生ATP的效率。虽然皮质酮的增加与DNA氧化损伤的变化呈负相关,但线粒体效率的降低与DNA氧化损伤的变化呈正相关。因此,在急性应激反应中,皮质酮增加最多的个体也有最少的氧化损伤。此外,在急性应激期间优先产生ATP的个体也表现出更高水平的氧化损伤。这项工作强调了皮质酮和线粒体效率在急性应激期间影响氧化损伤的复杂途径,为野生动物生理反应的权衡提供了新的见解。
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来源期刊
Journal of experimental zoology. Part A, Ecological and integrative physiology
Journal of experimental zoology. Part A, Ecological and integrative physiology Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
4.90
自引率
3.60%
发文量
0
期刊介绍: The Journal of Experimental Zoology – A publishes articles at the interface between Development, Physiology, Ecology and Evolution. Contributions that help to reveal how molecular, functional and ecological variation relate to one another are particularly welcome. The Journal publishes original research in the form of rapid communications or regular research articles, as well as perspectives and reviews on topics pertaining to the scope of the Journal. Acceptable articles are limited to studies on animals.
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