Rivers influence the population genetic structure of bonobos (Pan paniscus)
- 15 October 2004
- journal article
- Published by Wiley in Molecular Ecology
- Vol. 13 (11) , 3425-3435
- https://doi.org/10.1111/j.1365-294x.2004.02332.x
Abstract
Bonobos are large, highly mobile primates living in the relatively undisturbed, contiguous forest south of the Congo River. Accordingly, gene flow among populations is assumed to be extensive, but may be impeded by large, impassable rivers. We examined mitochondrial DNA control region sequence variation in individuals from five distinct localities separated by rivers in order to estimate relative levels of genetic diversity and assess the extent and pattern of population genetic structure in the bonobo. Diversity estimates for the bonobo exceed those for humans, but are less than those found for the chimpanzee. All regions sampled are significantly differentiated from one another, according to genetic distances estimated as pairwise FSTs, with the greatest differentiation existing between region East and each of the two Northern populations (N and NE) and the least differentiation between regions Central and South. The distribution of nucleotide diversity shows a clear signal of population structure, with some 30% of the variance occurring among geographical regions. However, a geographical patterning of the population structure is not obvious. Namely, mitochondrial haplotypes were shared among all regions excepting the most eastern locality and the phylogenetic analysis revealed a tree in which haplotypes were intermixed with little regard to geographical origin, with the notable exception of the close relationships among the haplotypes found in the east. Nonetheless, genetic distances correlated with geographical distances when the intervening distances were measured around rivers presenting effective current–day barriers, but not when straight‐line distances were used, suggesting that rivers are indeed a hindrance to gene flow in this species.Keywords
This publication has 72 references indexed in Scilit:
- A MULTILOCUS PERSPECTIVE ON COLONIZATION ACCOMPANIED BY SELECTION AND GENE FLOWEvolution, 2007
- At‐sea distribution and scale‐dependent foraging behaviour of petrels and albatrosses: a comparative studyJournal of Animal Ecology, 2006
- Phylogeography of the component species of broad-leaved evergreen forests in Japan, based on chloroplast DNA variationJournal of Plant Research, 2004
- Identifying conservation units within captive chimpanzee populationsAmerican Journal of Physical Anthropology, 2000
- Genetic Structure and Migration in Native and Reintroduced Rocky Mountain Wolf Populations. Estructura Genetica y Migracion de Poblaciones Nativas y Reintroducidas del Lobo de las Montanas RocallosasConservation Biology, 1997
- Postglacial connection of the Black Sea to the Mediterranean and its relation to the timing of sapropel formationPaleoceanography and Paleoclimatology, 1997
- The African rain forest – main characteristics of changes in vegetation and climate from the Upper Cretaceous to the QuaternaryProceedings of the Royal Society of Edinburgh. Section B. Biological Sciences, 1996
- River Boundaries and Species Range Size in Amazonian PrimatesThe American Naturalist, 1992
- The main regulatory region of mammalian mitochondrial DNA: Structure-function model and evolutionary patternJournal of Molecular Evolution, 1991
- Mathematical model for studying genetic variation in terms of restriction endonucleases.Proceedings of the National Academy of Sciences, 1979