Stress response gene family expansions correlate with invasive potential in teleost fish

Author:

Stanley Taylor R.1,Guisbert Karen S. Kim1ORCID,Perez Sabrina M.1ORCID,Oneka Morgan1,Kernin Isabela1ORCID,Higgins Nicole R.1,Lobo Alexandra1,Subasi Munevver M.2,Carroll David J.1ORCID,Turingan Ralph G.3,Guisbert Eric1ORCID

Affiliation:

1. Department of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, Melbourne, FL 32937, USA

2. Department of Mathematical Sciences, Florida Institute of Technology, Melbourne, FL 32937, USA

3. Department of Ocean Engineering and Marine Sciences, Florida Institute of Technology, Melbourne, FL 32937, USA

Abstract

ABSTRACT The bluegill sunfish Lepomis macrochirus and the closely related redear sunfish Lepomis microlophus have important ecological and recreational value and are widely used for research and aquaculture. While both species have been introduced outside of their native ranges, only the bluegill is considered invasive. Here, we report de novo transcriptome assemblies for these fish as a resource for sunfish biology. Comparative analyses of the transcriptomes revealed an unexpected, bluegill-specific expansion in the HSP70 and HSP90 molecular chaperone gene families. These expansions were not unique to the bluegill as expansions in HSP70s and HSP90s were identified in the genomes of other teleost fish using the NCBI RefSeq database. To determine whether gene family expansions are specific for thermal stress responses, GST and SOD gene families that are associated with oxidative stress responses were also analyzed. Species-specific expansions were also observed for these gene families in distinct fish species. Validating our approach, previously described expansions in the MHC gene family were also identified. Intriguingly, the number of HSP70 paralogs was positively correlated with thermotolerance range for each species, suggesting that these expansions can impact organismal physiology. Furthermore, fish that are considered invasive contained a higher average number of HSP70 paralogs than non-invasive fish. Invasive fish also had higher average numbers of HSP90, MHC and GST paralogs, but not SOD paralogs. Taken together, we propose that expansions in key cellular stress response gene families represent novel genetic signatures that correlate with invasive potential.

Funder

National Science Foundation

National Institutes of Health

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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