Species-specific vulnerability to angling and its size-selectivity in sympatric stream salmonids

Author:

Tsuboi Jun-ichi1,Morita Kentaro2,Sahashi Genki3,Kuroki Mari4,Baba Shinya5,Arlinghaus Robert67

Affiliation:

1. Fisheries Technology Institute, Japan Fisheries Research and Education Agency, Nikko 321-1661, Japan.

2. Field Science Center for Northern Biosphere, Hokkaido University, Horokanai 074-0741, Japan.

3. Fisheries Resources Institute, Japan Fisheries Research and Education Agency, Sapporo 062-0922, Japan.

4. Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo 113-8657, Japan.

5. Logics of Blue, Hyogo 650-0025, Japan.

6. Department of Biology and Ecology of Fishes, Leibniz Institute of Freshwater Ecology and Inland Fisheries, Müggelseedamm 310, Berlin 12587, Germany.

7. Division of Integrative Fisheries Management, Albrecht-Daniel-Thaer Institute of Agricultural and Horticultural Sciences, Department for Crop and Animal Sciences, Faculty of Life Sciences, Humboldt-Universität zu Berlin, Invalidenstrasse 42, Berlin 10115, Germany.

Abstract

In mixed fisheries where multiple species are caught, to manage resources sustainably, knowledge about the species-specific vulnerability to fishing is equally or even more important than knowledge of size selectivity of the gear. We compared the vulnerability to bait recreational angling in four salmonid species in natural streams in Japan. The ranking of species-specific angling vulnerability was as follows (from highest to lowest): rainbow trout (Oncorhynchus mykiss), masu salmon (Oncorhynchus masou), white-spotted char (Salvelinus leucomaenis), and southern Asian Dolly Varden (Salvelinus curilus). In all species, larger individuals were more vulnerable to angling, but there were differences in the size dependence between species. In rainbow trout and Dolly Varden (which have a nonanadromous life history in the study area), the probability of being caught monotonically increased with body size, while the vulnerability to angling in masu salmon and white-spotted char (which have an anadromous life history in the study area) showed a domed-shaped pattern. We found that across the species the catch per unit effort showed a hyperstable relationship with population density. Therefore, diminishing local populations are prone to collapse, and this collapse would be hard to foresee based on catch rate data alone.

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

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