Fine-scale genetic structure and phenotypic divergence of a passerine bird population inhabiting a continuous Mediterranean woodland

Author:

Garrido-Bautista Jorge1ORCID,Comas Mar12ORCID,Jowers Michael J.1ORCID,Smith Steve3ORCID,Penn Dustin J.3ORCID,Bakkali Mohammed4ORCID,Moreno-Rueda Gregorio12ORCID

Affiliation:

1. Department of Zoology, University of Granada , Granada 18071, Spain

2. Department of Biological Sciences, Dartmouth College , Hanover, New Hampshire 03755, USA

3. Department of Interdisciplinary Life Sciences, Konrad Lorenz Institute of Ethology, University of Veterinary Medicine Vienna , Vienna 1160, Austria

4. Department of Genetics, Faculty of Sciences, University of Granada , Granada 18071, Spain

Abstract

Genetic differentiation between populations inhabiting ecologically different habitats might appear because of limited dispersal and gene flow, which may lead to patterns of phenotypic divergence and local adaptation. In this study, we use dispersal, genotypic (24 microsatellite loci) and phenotypic (body size and clutch size) data to analyse patterns of genetic structuring and phenotypic divergence in a blue tit ( Cyanistes caeruleus ) population inhabiting a continuous and heterogeneous woodland along a valley. The two slopes of the valley differ in their forest formations and environmental conditions. Findings showed that most blue tits reproduced within their natal slope. Accordingly, microsatellite analyses revealed that populations of blue tits established in the two slopes show subtle genetic differentiation. The two genetic populations diverged in clutch size, exceeding the level of differentiation expected based on genetic drift, hence suggesting divergent selection (or other processes promoting divergence) on this life-history trait. Our findings reveal that restricted dispersal and spatial heterogeneity may lead to genetic differentiation among bird populations at a surprisingly small scale. In this respect, it is worth highlighting that such differentiation occurs for an organism with high dispersal capacity and within a continuous woodland. Moreover, we show that small-scale ecological differences, together with limited gene flow, can result in selection favouring different phenotypes even within the same continuum population.

Funder

European Union

Severo Ochoa Programme for Centres of Excellence in Research

Universidad, Investigación e Innovación de la Junta de Andalucía

National Plan of the Spanish Ministry of Economy and Competition

Spanish Ministry of Education

FEDER

Publisher

The Royal Society

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