Affiliation:
1. University of British Columbia
Abstract
Summary
Determining which underlying traits contribute to differences in whole-animal performance can be difficult when many traits differ between individuals with high and low capacities. We have previously found that migratory (anadromous marine) and non-migratory (stream-resident) threespine stickleback (Gasterosteus aculeatus) populations have genetically based differences in prolonged swimming performance (Ucrit) that are associated with divergence of a number of candidate morphological and physiological traits (pectoral fin size and shape, body shape, pectoral muscle and heart size, and pectoral muscle metabolic enzyme activities). Here, we use F2 hybrid crosses to determine which traits are correlated with Ucrit when expressed in a largely randomized genetic background and a range of trait values for other divergent traits. We found that four of our 12 candidate traits were positively correlated with Ucrit in F2 hybrids and that the combined effects of ventricle mass, pectoral adductor mass, and adductor citrate synthase activity accounted for 17.9% of the variation in Ucrit. These data provide additional support for a causal role of muscle and heart size in mediating intra-specific differences in Ucrit, but indicate that many candidate morphological and biochemical traits do not have a strong effect on Ucrit when disassociated other divergent traits. However, the limited variation in Ucrit in our F2 hybrid families may have decreased our ability to detect correlations among these candidate traits and Ucrit. These data suggest that many traits, interactions among traits, and traits not measured in this study, affect prolonged swimming performance in threespine stickleback.
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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