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Journal Article

Interspecific competitive interactions affect body size and oxidative status of two nonnative salmonid species

Marco Parolini; Rocco Iacobuzio; Bruno Bassano; Roberta Pennati
Fish Physiology and Biochemistry · Vol. 50, Issue 2 · pp. 721-732 · 2024

Abstract

In fish, interspecific interactions between nonnative and other sympatric species are considered determinants in shaping species assemblages. Such interactions can also arise between nonnative fish species only, including salmonids such as the brown trout ( Salmo trutta , Linnaeus, 1758) and the rainbow trout ( Oncorhynchus mykiss , Walbaum, 1792), returning contrasting outcomes. The present manipulative experiment was aimed at exploring the effect of interspecific competition on the body growth and the oxidative status of parr (2 + -year-old individuals) of the brown trout and the rainbow trout. Allopatric (intraspecific competition) and sympatric (interspecific competition) populations of these species were experimentally recreated in two wild streams. At the end of a 2-month-long experiment, changes in specific growth rate (SGR), oxidative status (i.e., levels of reactive oxygen species and activity of antioxidant enzymes such as superoxide dismutase — SOD, catalase — CAT and glutathione peroxidase — GPx) and oxidative damage (i.e., lipid peroxidation) were investigated in brown and rainbow trout individuals maintained in allopatric or sympatric populations. Sympatric interactions between rainbow and brown trout parr resulted in a significant decrease in SGR of brown trout individuals only. Moreover, an overall modulation of the oxidative status, in terms of an increase in ROS levels coupled with the activation of SOD and CAT activity, occurred in brown trout individuals under sympatric conditions. These findings might suggest that, under sympatric conditions, parr of the rainbow trout are more competitive than brown trout for food acquisition. However, this competition affected the antioxidant defenses of the brown trout only, probably because of reduced ingestion of dietary antioxidants or increased physical activity and aggressive behavior. Thus, interspecific interactions can induce physiological and phenotypic effects on parr of nonnative salmonids, with potential consequences on the establishment of populations of these species in freshwater ecosystems.

Bibliographic Information

JournalFish Physiology and Biochemistry
PublisherSpringer
Publication Date2024-04-01
Publication Year2024
Volume50
Issue2
Pages721-732
Document TypeJournal Article
Print ISSN0920-1742
eISSN1573-5168
DOI10.1007/s10695-024-01301-0

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10695
Publisher PageOpen Publisher Page
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