bioRxiv Science⌕ Search

Biology subjects

Bracamonte, S. E.

Publications and source records attributed to Bracamonte, S. E..

2 recordsLinked to original sources

Expression diversity of cichlid MHC alleles

Diversification by natural selection is a major source of biodiversity. The selective pressures imposed by parasites on their hosts have the potential to increase diversity at immunologically relevant genes and maintain high polymorphism within and among populations. The immune genes of the major histocompatibility complex (MHC) are a hallmark of parasite-mediated selection. These genes frequently show local adaptation to the prevailing parasites. Although associations between parasites and alleles have been identified, they are often imperfect, indicating that parasite-mediated selection goes beyond sequence identity. Here, we explored allele-specific expression of MHC class IIB in cichlid fish and its relationship with sequence diversity. This revealed a few highly abundant alleles with consistently low expression, and many relatively rare alleles with high expression levels that were variable among individuals. Alleles that formed functional supertypes also had similar expression. This suggests that rare alleles may be those responding to parasites and that similar functionality may be provided by different alleles in different individuals. Our results further suggest that there could be an optimal number of MHC alleles per individual and that deviations from this optimum are compensated by adjusting expression levels. The common and lowly expressed alleles may have attained different functions, a patterns that appears to be consistent in Neotropical and African cichlids. Our study shows that MHC expression is highly variable among alleles potentially interacting with parasites, providing an additional substrate for selection. Furthermore, our study exemplifies how combining genetic diversity with detailed expression information can help identifying functionally relevant diversity.

evolutionary biology↗

Exploring phenotypic diversity: a comparative analysis of cichlid convergence

Convergent evolution of similar phenotypes suggests some predictability in the evolutionary trajectories of organisms, due to strong and repeated selective pressures, and/or developmental constraints. In adaptive radiations, particularly in cichlid fish radiations, convergent phenotypes are commonly found within and across geographical settings. There are some main axes of cichlid morphological diversification. Recurrent changes in body patterns reveal adaption to alternative habitats, and modifications of the trophic apparatus respond to the exploitation of different food resources. Here we compare two Neotropical cichlid assemblages, the Mexican desert cichlid, and the Nicaraguan Midas cichlid, with similar polymorphic body and trophic apparatus patterns despite their independent evolution and evaluate morphological and gene expression convergence and divergence. We found a single morphological axis of differentiation in pharyngeal jaws with equivalent papilliform and molariform morphotypes in both cichlid radiations. In contrast, we found two different axes of differentiation in the shape of the body, defining two alternative limnetic body patterns. Genetic differences between morphotypes seem to be specific to each radiation, with no clear patterns of convergence.

evolutionary biology↗