Variation in Heat Shock Protein 40kDa relates to divergence in thermotolerance among cryptic rotifer species

Author:

Kiemel Katrin1,Gurke Marie2,Paraskevopoulou Sofia3,Havenstein Katja1,Weithoff Guntram1,Tiedemann Ralph1

Affiliation:

1. University of Potsdam

2. Humboldt-Universität zu Berlin

3. Tel Aviv University

Abstract

Abstract Genetic divergence and the frequency of hybridization are central for defining species delimitations, especially among cryptic species where morphological differences are merely absent. Rotifers are known for their high cryptic diversity and therefore are ideal model organisms to investigate such patterns. Here, we used the recently resolved Brachionus calyciflorus species complex to investigate whether previously observed between species differences in thermotolerance and gene expression are also reflected in their genomic footprint. We identified a Heat Shock Protein gene (HSP 40kDa) which exhibits cross species pronounced structural variation. This gene exhibits species-specific fixed sites, alleles, and sites putatively under positive selection. These sites are located in protein binding regions involved in chaperoning and may therefore reflect adaptive diversification. By comparing three genetic markers (ITS, COI, HSP 40kDa), we revealed hybridization events between the cryptic species. The low frequency of introgressive haplotypes/alleles suggest a tight, but not fully impermeable boundary between the cryptic species.

Publisher

Research Square Platform LLC

Reference132 articles.

1. Basic local alignment search tool;Altschul SF;Molecular Biology,1990

2. The molecular elements that underlie developmental evolution;Alonso CR;Nature Reviews Genetics,2005

3. Angilletta, M.J. (ed.) (2009). Thermal adaptation. A theoretical and empirical synthesis. Oxford University Press, Oxford, 289 p.

4. Ashburner, M., Ball, C.A., Blake, J.A., Botstein, D., Butler, H., Cherry, J.M., Davis, A.P., Dolinski, K., Dwight, S.S., Eppig, J.T., Harris, M.A., Hill, D.P., Issel-Tarver, L., Kasarskis, A., Lewis, S, Matese, J.C., Richardson, J.E., Ringwald, M., Rubin, G.M., Sherlock, G. (2000). Gene ontology: tool for the unification of biology. The Gene Ontology Consortium. Nature genetics, 25 (1), 25–29.

5. Atkinson, D. (1994). Temperature and Organism Size—A Biological Law for Ectotherms? Elsevier, p. 1–58.

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