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  3. Timing and synchrony of migration in a freshwater fish: consequences for survival.
 

Timing and synchrony of migration in a freshwater fish: consequences for survival.

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BORIS DOI
10.48350/171633
Date of Publication
October 2022
Publication Type
Article
Division/Institute

Institut für Ökologie...

Contributor
Hulthén, Kaj
Chapman, Ben B
Nilsson, P Anders
Hansson, Lars-Anders
Skov, Christian
Brodersen, Jakob
Institut für Ökologie und Evolution (IEE)
Brönmark, Christer
Subject(s)

500 - Science::570 - ...

Series
Journal of animal ecology
ISSN or ISBN (if monograph)
1365-2656
Publisher
Wiley
Language
English
Publisher DOI
10.1111/1365-2656.13790
PubMed ID
35899786
Uncontrolled Keywords

aquatic ecology indiv...

Description
Animal migration is one of the most spectacular and visible behavioural phenomena in nature with profound implications for a range of ecological and evolutionary processes. Successful migration hinges on the ability to exploit temporary resources (e.g. food) and evade threats (e.g. predators) as they arise, and thus the timing of migration is often regarded as a dominant predictor of individual migratory success. However, with the exception of intensively studied taxa (mainly birds), relatively few studies have investigated inter-individual annual and seasonal variation in migratory timing and performance, or tested predictions on how migration across high and low predation-risk habitats may exert selection on migratory timing. In particular, studies that assess the survival consequences of variation in migratory timing remain rare, which is most likely due to the logistical challenges associated with monitoring survival success and population-level characteristics simultaneously. Here, we address the above-mentioned questions using roach Rutilus rutilus, a fish that migrates from lakes characterised by high-predation risk into low-risk streams during winter. Specifically, we used individual-based tracking of roach in two European lake systems over multiple migration periods (9 and 7 years, respectively), to obtain highly detailed (year-round scheduling, repeat journeys and the fate of individuals) data on the variability/synchrony of migratory timing in spring and autumn respectively. We report seasonal differences in the variability of migratory timing, with lower variance and higher migration synchrony in spring lake arrival timing as compared to autumn lake departure timing. Furthermore, the timing of autumn migration is more variable across years than the timing of spring migration. Secondly, we find that later arrival to the lake habitat is positively associated with apparent survival from one year to the next, whereas we found no effect of lake departure timing on survival probability. These findings represent rare evidence showing how intraspecific variation in timing in migratory fish differs across years and seasons, and how variation in timing can translate into survival consequences for prey in systems characterised by high predation risk.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/86425
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Journal_of_Animal_Ecology_-_2022_-_Hulth_n_-_Timing_and_synchrony_of_migration_in_a_freshwater_fish_consequences_for.pdftextAdobe PDF574.87 KBacceptedOpen
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