Ontogenetic shape trajectory of Trichomycterus areolatus varies in response to water velocity environment

Author:

Searle Peter C.ORCID,Mercer Margaret,Habit Evelyn,Belk Mark C.

Abstract

Body and head shape among fishes both vary between environments influenced by water velocity and across ontogeny. Although the shape changes associated with variation in average water velocity and ontogeny are well documented, few studies have tested for the interaction between these two variables (i.e., does ontogenetic shape variation differ between velocity environments). We use geometric morphometrics to characterize shape differences in Trichomycterus areolatus, a freshwater catfish found in high and low-velocity environments in Chile. We identify a significant interaction between velocity environment and body size (i.e., ontogeny). Ontogenetic patterns of shape change are consistent with other studies, but velocity environment differentially affects the ontogenetic trajectory of shape development in T. areolatus. Shape change over ontogeny appears more constrained in high-velocity environments compared to low-velocity environments.

Funder

Department of Biology, Brigham Young Univeristy

Roger and Victoria Sant Foundation

Dirección de Investigación, Universidad del Bío-Bío

Dirección de Investigación, Universidad de Concepción

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference96 articles.

1. Testing the ecomorphological hypothesis in a headwater riffles fish assemblage of the Rio Sao Francisco, Southeastern Brazil;L Casatti;Neotrop Ichthyol,2006

2. Concepts and methods in ecomorphology;WJ Bock;J Biosci,1994

3. Ecomorphological correlates in tropical stream fishes of southern India;A. Bhat;Environmental Biology of Fishes,2005

4. Correlative, experimental, and comparative evolutionary approaches in ecomorphology;P Motta;Netherlands Journal of Zoology,1992

5. Rapid morphological change of a top predator with the invasion of a novel prey;CE Cattau;Nature Ecology & Evolution,2018

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