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减缓代谢引擎:早期皮质酮暴露对麻雀成代代谢的影响()。

Slowing down the metabolic engine: impact of early-life corticosterone exposure on adult metabolism in house sparrows ().

机构信息

Centre d'Etudes Biologiques de Chizé, CNRS-ULR, UMR 7372, 79360 Villiers en Bois, France

Department of Wildlife and Fisheries Sciences, Texas A&M University, College Station, TX 77843, USA.

出版信息

J Exp Biol. 2019 Nov 25;222(Pt 22):jeb211771. doi: 10.1242/jeb.211771.

Abstract

Whole-organism metabolism is an integrative process that determines not only the energy cost of living but also the energy output that is available for behavioral and physiological processes during the life cycle. Developmental challenge is known to affect growth, development of several organs, and several physiological mechanisms (such as HPA responsiveness, oxidative stress or immunity), which may altogether affect adult metabolism. All of these developmental effects are likely to be mediated by glucocorticoids, but the impact of developmental glucocorticoid exposure on adult metabolism has rarely been studied and the results are equivocal. In this study, we examined the impact of developmental exposure to corticosterone (CORT, the main avian glucocorticoid hormone) on resting metabolic rate (RMR, measured in thermoneutrality, 25°C) and thermoregulatory metabolic rate (TMR, measured in cold challenge conditions, 5°C) in the house sparrow. Following experimental administration of CORT at the nestling stage, house sparrows were kept in captivity until adulthood, when their metabolism was measured. We found that post-natal CORT exposure decreased both RMR and TMR in adult sparrows. This CORT-mediated reduction of metabolism was also associated with a reduced overnight body mass loss. Therefore, our results suggest that developmental CORT exposure can orient the phenotype towards an energy-saving strategy, which may be beneficial in a constraining environmental context.

摘要

整体生物体代谢是一个综合的过程,它不仅决定了生活的能量成本,还决定了生命周期中行为和生理过程的可用能量输出。已知发育挑战会影响生长、多个器官的发育和几种生理机制(如 HPA 反应性、氧化应激或免疫力),这可能会共同影响成年代谢。所有这些发育效应很可能都由糖皮质激素介导,但发育性糖皮质激素暴露对成年代谢的影响很少被研究,结果也存在争议。在这项研究中,我们研究了皮质酮(CORT,主要的鸟类糖皮质激素)在幼鸟阶段的发育暴露对麻雀静止代谢率(RMR,在热中性条件下测量,25°C)和体温调节代谢率(TMR,在冷挑战条件下测量,5°C)的影响。在幼鸟阶段进行 CORT 实验给药后,将麻雀饲养至成年,然后测量其代谢率。我们发现,产后 CORT 暴露降低了成年麻雀的 RMR 和 TMR。这种 CORT 介导的代谢减少与夜间体重损失减少有关。因此,我们的结果表明,发育性 CORT 暴露可以使表型朝向节能策略,这在环境受限的情况下可能是有益的。

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