Oefele Marlene, Hau Michaela, Ruuskanen Suvi, Casagrande Stefania
Evolutionary Physiology Research Group, Max Planck Institute for Biological Intelligence, Eberhard-Gwinner-Strasse, Seewiesen 82319, Germany.
Department of Biology, University of Konstanz, Konstanz D-78464, Germany.
R Soc Open Sci. 2024 Jul 31;11(7):240417. doi: 10.1098/rsos.240417. eCollection 2024 Jul.
An organism's response to its environment is largely determined by changes in the energy supplied by aerobic mitochondrial metabolism via adenosine triphosphate (ATP) production. ATP is especially important under energy-demanding conditions, such as during rapid growth. It is currently poorly understood how environmental factors influence energy metabolism and mitochondrial functioning, but recent studies suggest the role of thyroid hormones (TH). TH are key regulators of growth and metabolism and can be flexibly adjusted to environmental conditions, such as environmental temperature or food availability. To test whether TH enhancement is causally linked to mitochondrial function and growth, we provided TH orally at physiological concentrations during the main growth phase in zebra finch () nestlings reared in a challenging environment. TH treatment accelerated maximal mitochondrial working capacity-a trait that reflects mitochondrial ATP production, without affecting growth. To our knowledge, this is the first study to characterize the regulation of mitochondria by TH during development in a semi-naturalistic context and to address implications for fitness-related traits, such as growth.
生物体对其环境的反应很大程度上取决于有氧线粒体代谢通过三磷酸腺苷(ATP)生成所提供能量的变化。ATP在能量需求较高的情况下尤为重要,例如在快速生长期间。目前人们对环境因素如何影响能量代谢和线粒体功能了解甚少,但最近的研究表明甲状腺激素(TH)发挥了作用。TH是生长和代谢的关键调节因子,并且可以根据环境条件进行灵活调整,如环境温度或食物供应情况。为了测试TH增强是否与线粒体功能和生长存在因果关系,我们在具有挑战性环境中饲养的斑胸草雀雏鸟的主要生长阶段,以生理浓度口服给予TH。TH处理加快了线粒体的最大工作能力——这一特征反映了线粒体ATP的生成,且未影响生长。据我们所知,这是第一项在半自然环境下研究TH在发育过程中对线粒体的调控,并探讨其对生长等与适应性相关性状影响的研究。