Back

Genome composition predicts physiological response to environmental change in polyploid salamanders

Burger, I.; Itgen, M.; Tan, L.; Woodward, P.; Rivas, L.; Hunt, T.; Ready, H.; Martin Geronimo, X.; Denton, R.; Riddell, E.

2024-09-08 physiology
10.1101/2024.09.06.611688 bioRxiv
Show abstract

Multi-trait analyses can be used to measure the differential performance of phenotypic traits in species complexes. Hybridization within these complexes can result in a mismatch between mitochondrial and nuclear DNA that may lead to reduced performance and acclimation capacity in hybrids. To test the effect of this mismatch on physiology, we compared physiological performance and acclimation capacity of metabolic rate (VCO2) and total resistance to water loss (rT) between two sexual Ambystoma species and a closely related unisexual lineage. We also separated unisexuals by their unique biotypes to determine how physiology varies with subgenomic composition. We found that unisexual biotypes exhibited phenotypes more like their related sexual species than to other unisexuals. We also found a trade-off between rT and VCO2, with increasing rT resulting in a decrease in VCO2. Although we did not find evidence for mitonuclear mismatch, our results indicate that genomic composition of hybrids may be a suitable predictor of hybrid trait performance. Multi-trait analyses are imperative for understanding variation in phenotypic diversity, providing insight into how this diversity affects species responses to environmental change.

Matching journals

The top 4 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.