Journal
BIOLOGY LETTERS
Volume 19, Issue 3, Pages -Publisher
ROYAL SOC
DOI: 10.1098/rsbl.2022.0533
Keywords
bird-mediated colonization; freshwater; Perca fluviatilis
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Understanding how obligate freshwater organisms colonize seemingly isolated ecosystems has long fascinated ecologists. Recent investigations reveal that fish eggs can survive the digestive tract of birds and hatch successfully once deposited. This study provides multiple lines of evidence supporting the avian zoochory as a probable pathway for fish colonization of remote or newly-formed freshwater ecosystems, using European perch as a case study.
Understanding how obligate freshwater organisms colonize seemingly isolated ecosystems has long fascinated ecologists. While recent investigations reveal that fish eggs can survive the digestive tract of birds and successfully hatch once deposited, evidence for avian zoochory in natura is still lacking. Here, we used a 'multiple lines and levels of evidence' approach to demonstrate possible bird-mediated colonization of lakes by the European perch (Perca fluviatilis). We studied a set of newly-formed and isolated artificial lakes that the public is either prohibited to access because of gravel extraction or allowed to access (mainly for angling). The motivating observation is that a large proportion of prohibited-access lakes (greater than 80%) were colonized by European perch even though stocking by anglers and managers never occurred. Three supplementary lines of evidence supported avian zoochory. First, European perch spawning occurs when waterfowl abundance is very high. Second, European perch lays sticky eggs at shallow depths where they can be eaten by waterfowls or attached to their bodies. Third, genetic analyses suggested that European perch actually migrate among lakes, and that distances moved match with daily flight range of foraging waterfowl. Together, multiple lines of evidence point to avian zoochory as a probable pathway for fish colonizing remote or newly-formed freshwater ecosystems.
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