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暗眼灯草鹀(Junco hyemalis)代谢灵活性的调节机制。

Regulatory mechanisms of metabolic flexibility in the dark-eyed junco (Junco hyemalis).

作者信息

Stager Maria, Swanson David L, Cheviron Zachary A

机构信息

Department of Animal Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA

Department of Biology, University of South Dakota, Vermillion, SD 57069, USA.

出版信息

J Exp Biol. 2015 Mar;218(Pt 5):767-77. doi: 10.1242/jeb.113472. Epub 2015 Jan 23.

Abstract

Small temperate birds reversibly modify their aerobic performance to maintain thermoregulatory homeostasis under seasonally changing environmental conditions and these physiological adjustments may be attributable to changes in the expression of genes in the underlying regulatory networks. Here, we report the results of an experimental procedure designed to gain insight into the fundamental mechanisms of metabolic flexibility in the dark-eyed junco (Junco hyemalis). We combined genomic transcriptional profiles with measures of metabolic enzyme activities and whole-animal thermogenic performance from juncos exposed to four 6-week acclimation treatments that varied in temperature (cold, 3°C; warm, 24°C) and photoperiod (short day, 8 h light:16 h dark; long day, 16 h light:8 h dark). Cold-acclimated birds increased thermogenic capacity compared with warm-acclimated birds, and this enhanced performance was associated with upregulation of genes involved in muscle hypertrophy, angiogenesis, and lipid transport and oxidation, as well as with catabolic enzyme activities. These physiological changes occurred over ecologically relevant timescales, suggesting that birds make regulatory adjustments to interacting, hierarchical pathways in order to seasonally enhance thermogenic capacity.

摘要

小型温带鸟类会可逆地改变其有氧能力,以便在季节性变化的环境条件下维持体温调节稳态,而这些生理调节可能归因于潜在调控网络中基因表达的变化。在此,我们报告了一项实验程序的结果,该程序旨在深入了解暗眼灯草鹀(Junco hyemalis)代谢灵活性的基本机制。我们将基因组转录谱与代谢酶活性测量结果以及来自接受四种为期6周的驯化处理(温度不同,低温3°C;高温24°C;光周期不同,短日照,8小时光照:16小时黑暗;长日照,16小时光照:8小时黑暗)的灯草鹀的全动物产热性能测量结果相结合。与温暖驯化的鸟类相比,寒冷驯化的鸟类产热能力增强,这种增强的性能与参与肌肉肥大、血管生成、脂质运输和氧化的基因上调以及分解代谢酶活性有关。这些生理变化发生在生态相关的时间尺度上,表明鸟类会对相互作用的分级途径进行调节,以便季节性地增强产热能力。

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