Early-life environmental effects on mitochondrial aerobic metabolism: a brood size manipulation in wild great tits

Author:

Cossin-Sevrin Nina12ORCID,Stier Antoine123ORCID,Hukkanen Mikaela4ORCID,Zahn Sandrine2ORCID,Viblanc Vincent A.2ORCID,Anttila Katja1ORCID,Ruuskanen Suvi15ORCID

Affiliation:

1. University of Turku 1 Department of Biology , , FI-20014 Turku , Finland

2. Université de Strasbourg, Centre National de la Recherche Scientifique, Institut Pluridisciplinaire Hubert Curien, UMR 7178 2 , 67087 Strasbourg , France

3. Université Claude Bernard Lyon 1, CNRS, ENTPE, UMR 5023 LEHNA 3 , F-69622 Villeurbanne , France

4. Institute for Molecular Medicine Finland, University of Helsinki 4 , FI-00014 Helsinki , Finland

5. University of Jyväskylä 5 Department of Biological and Environmental Sciences , , FI-40014 Jyväskylä , Finland

Abstract

ABSTRACT In avian species, the number of chicks in the nest and subsequent sibling competition for food are major components of the offspring's early-life environment. A large brood size is known to affect chick growth, leading in some cases to long-lasting effects for the offspring, such as a decrease in size at fledgling and in survival after fledging. An important pathway underlying different growth patterns could be the variation in offspring mitochondrial metabolism through its central role in converting energy. Here, we performed a brood size manipulation in great tits (Parus major) to unravel its impact on offspring mitochondrial metabolism and reactive oxygen species (ROS) production in red blood cells. We investigated the effects of brood size on chick growth and survival, and tested for long-lasting effects on juvenile mitochondrial metabolism and phenotype. As expected, chicks raised in reduced broods had a higher body mass compared with enlarged and control groups. However, mitochondrial metabolism and ROS production were not significantly affected by the treatment at either chick or juvenile stages. Interestingly, chicks raised in very small broods were smaller in size and had higher mitochondrial metabolic rates. The nest of rearing had a significant effect on nestling mitochondrial metabolism. The contribution of the rearing environment in determining offspring mitochondrial metabolism emphasizes the plasticity of mitochondrial metabolism in relation to the nest environment. This study opens new avenues regarding the effect of postnatal environmental conditions in shaping offspring early-life mitochondrial metabolism.

Funder

Opetushallitus

University of Turku

Turku Collegium for Science and Medicine

European Commission

Academy of Finland

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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