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University of Idaho

Since 1889, the University of Idaho has provided motivated students with a transformative higher education experience that prepares them to solve real-world problems and achieve success in their lives and careers.

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Thermal tolerance and cardiac phenotypes

Adaptation to local environments involves the evolution of ecologically important traits and underlying physiological processes. Here, we used low coverage whole-genome resequencing (lcWGR) on individuals to identify genome regions involved in thermal adaptation in wild redband trout Oncorhynchus mykiss gairdneri, a subspecies of rainbow trout that inhabits ecosystems ranging from cold montane forests to high elevation deserts. This study includes allele frequency-based analyses for selective sweeps among populations, followed by multiple association tests for specific sets of phenotypes measured under thermal stress (acute and chronic survival/mortality; high or low cardiac performance groups). Depending on the groups in each set of analyses, sequencing reads covered between 43-75% of the genome at ≥15X and each analysis included millions of SNPs across the genome. In tests for selective sweeps among populations, a total of six chromosomal regions were significant. However, association tests for specific phenotypes revealed that the region on chromosome 4 was consistently the most significant and contains the cerk gene (ceramide kinase). This study provides insight into a potential genetic mechanism of local thermal adaptation and suggests cerk may be an important candidate gene. However, further validation of this cerk gene is necessary to determine if the association with cardiac performance results in a functional role to influence thermal performance when exposed to high water temperatures and hypoxic conditions.

FieldValue
Modified
2023-08-16
Release Date
2022-03-03
Publisher
Identifier
ea822082-a43a-4365-8670-ef1995cc19c7
Spatial / Geographical Coverage Location
Idaho (USA)
Temporal Coverage
Friday, January 1, 2010 - 00:00 to Sunday, December 31, 2017 - 00:00
Language
English (United States)
License
Author
Zhongqi Chen
Contact Name
Zhongqi Chen
Contact Email
Public Access Level
Public
DOI
10.5061/dryad.xwdbrv1c7
Data available on:: 
Wednesday, October 14, 2020