Early life thermal conditioning alters heat-shock protein expression in response to an adult thermal stressor

IF 1.9 3区 生物学 Q1 ZOOLOGY
Alexander J. Hoffman, John W. Finger Jr., Andreas N. Kavazis, Haruka Wada
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引用次数: 0

Abstract

Developmental environmental stressors can have instructive effects on an organism's phenotype. This developmental plasticity can prepare organisms for potentially stressful future environments, circumventing detrimental effects on fitness. However, the physiological mechanisms underlying such adaptive plasticity are understudied, especially in vertebrates. We hypothesized that captive male zebra finches (Taeniopygia castanotis) exposed to a mild heat conditioning during development would acquire a persisting thermotolerance, and exhibit increased heat-shock protein (HSP) levels associated with a decrease in oxidative damage when exposed to a high-intensity stressor in adulthood. To test this, we exposed male finches to a prolonged mild heat conditioning (38°C) or control (22°C) treatment as juveniles. Then in a 2 × 2 factorial manner, these finches were exposed to a high heat stressor (42°C) or control (22°C) treatment as adults. Following the adult treatment, we collected testes and liver tissue and measured HSP70, HSP90, and HSP60 protein levels. In the testes, finches exhibited lower levels of HSP90 and HSP60 when exposed to the high heat stressor in adulthood if they were exposed to the mild heat conditioning as juveniles. In the liver, finches exposed to the high heat stressor in adulthood had reduced HSP90 and HSP60 levels, regardless of whether they were conditioned as juveniles. In some cases, elevated testes HSP60 levels were associated with increased liver oxidative damage and diminishment of a condition-dependent trait, indicating potential stress-induced tradeoffs. Our results indicate that a mild conditioning during development can have persisting effects on HSP expression and acquired thermotolerance.

生命早期的热调节会改变热休克蛋白的表达,以应对成年热应力。
发育环境压力会对生物的表型产生指导性影响。这种发育可塑性可以使生物体为未来潜在的压力环境做好准备,从而避免对适应能力的不利影响。然而,对这种适应性可塑性的生理机制研究不足,特别是在脊椎动物中。我们假设,圈养的雄性斑马雀(Taeniopygia castanotis)在发育过程中暴露于温和的热调节下,会获得持久的耐热性,并在成年后暴露于高强度的应激源时,表现出与氧化损伤减少相关的热休克蛋白(HSP)水平的增加。为了验证这一点,我们让雄性雀鸟在幼年时期接受长时间的温和热调节(38°C)或对照(22°C)处理。然后以 2 × 2 因式分解的方式,让这些雄雀在成年后接受高温胁迫(42°C)或对照组(22°C)处理。成鸟处理后,我们收集了睾丸和肝脏组织,并测量了HSP70、HSP90和HSP60蛋白水平。在睾丸中,如果黄雀在幼年时暴露于温和的热应激条件下,那么在成年期暴露于高热应激条件下,它们的HSP90和HSP60水平较低。在肝脏中,成年期暴露于高热应激源的雀类,无论是否在幼年时期接受过调节,其HSP90和HSP60水平都会降低。在某些情况下,睾丸HSP60水平的升高与肝脏氧化损伤的增加和条件依赖性性状的减弱有关,这表明潜在的应激引起的权衡。我们的研究结果表明,发育过程中的温和调节会对HSP表达和获得性耐热性产生持续影响。
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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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