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  4. Isotope geochemistry as a natural tag of fish in Patagonian freshwater environments: The invasive Chinook salmon case
 
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Isotope geochemistry as a natural tag of fish in Patagonian freshwater environments: The invasive Chinook salmon case

Journal
The Science of the total environment
Journal Volume
873
Date Issued
2023-05-15
Author(s)
Avigliano, Esteban
Niklitschek, Edwin
MING-TSUNG CHUNG  
Diaz, Boris
Chalde, Tomás
Di Prinzio, Cecilia
Solimano, Patricio
Llompart, Facundo
Garcés, Cristóbal
Ochoa, Javier Diaz
Aldea, Cristian
Huang, Kuo-Fang
Duquenoy, Camille
Leisen, Mathieu
Volpedo, Alejandra
DOI
10.1016/j.scitotenv.2023.162395
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/629439
URL
https://api.elsevier.com/content/abstract/scopus_id/85149172682
Abstract
Patagonian aquatic environments have been invaded since the end of the last century by different species of salmonids. Knowing the natal origin and homing/straying rate of the salmonids in colonised environments is essential to understanding the dispersal mechanisms and developing management plans. In the last two decades, Chinook salmon Oncorhynchus tshawytscha showed the greatest natural dispersal capacity in Patagonia. The main goal of this study was to evaluate the environmental strontium isotope ratio (87Sr/86Sr) as a potential natural tag to infer the natal origin and ontogenetic habitat use of salmonids in Patagonia, specifically Chinook salmon. 87Sr/86Sr ratio was determined in water samples from 26 sites distributed in 14 Atlantic and Pacific basins in low and high water seasons. Environmental 87Sr/86Sr showed greater spatial than temporal variation, revealing great potential as a tool to infer the natal origin and life history of several migratory fish species in Patagonia. Otolith core-to-edge 87Sr/86Sr profiles were also analysed in 108 Chinook salmon from six basins. A cluster analysis based on the Unweighted Pair Group method (UPGMA) and Euclidean distances without prior classification grouped the sampled rivers into five main groups with significantly different (p < 0.05) isotopic ratios, sometimes integrated basins with different slopes (Atlantic or Pacific). The cluster analysis (UPGMA) based on the natal 87Sr/86Sr period in otolith (~natal origin) showed clear segregation between the Atlantic and Pacific samples. A mismatch between water and otolith natal 87Sr/86Sr ratio was detected in some Atlantic (e.g. De las Vueltas River in Santa Cruz Basin) and Pacific (e.g. Liquiñe Basin) basins and, which could be explained either by straying behaviours or by large geochemical variability between tributaries, within river systems. Our results showed that 87Sr/86Sr is a useful natural tag to trace the life history of migratory fishes in Patagonia, especially for invasive species such as Chinook salmon.
Subjects
Alien species; Microchemistry; Natal source; Otolith; Strontium
SDGs

[SDGs]SDG14

[SDGs]SDG15

Type
journal article

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