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Large‐scale, seasonal habitat use and movements of yellow American eels in the St. Lawrence River revealed by acoustic telemetry
Author(s) -
BéguerPon Mélanie,
Castonguay Martin,
Benchetrit José,
Hatin Daniel,
Legault Michel,
Verreault Guy,
Mailhot Yves,
Tremblay Valérie,
Dodson Julian J.
Publication year - 2015
Publication title -
ecology of freshwater fish
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.667
H-Index - 55
eISSN - 1600-0633
pISSN - 0906-6691
DOI - 10.1111/eff.12129
Subject(s) - estuary , anguilla rostrata , brackish water , spawn (biology) , home range , foraging , nocturnal , habitat , fish migration , fishery , discharge , oceanography , ecology , geography , environmental science , biology , geology , drainage basin , cartography , salinity
Large‐scale habitat use and movements of yellow American eels ( Anguilla rostrata ) from the St. Lawrence River were examined using acoustic telemetry from early summer to late fall in 2010 and 2011. Sixty‐seven eels were tagged, and their passage or presence was recorded using fixed acoustic arrays covering a 400 km distance along the St. Lawrence River and Estuary. Sixty‐four per cent of the 67 tagged eels were detected. Most eels were detected at only one array; the closest to their release location and at several occasions during the tracking period, suggesting a high proportion of freshwater residency in the upstream part of the St. Lawrence River. Downstream movements towards the brackish estuary (63–418 km distance) were demonstrated for 16.4% of the eels, particularly for those caught at the most downstream site that is close to the brackish estuary. Our results strongly suggest a lower activity of freshwater resident yellow eels during summer, a behaviour that may be related to day length, which defines time available for their nocturnal foraging. Indeed, yellow eels were detected primarily at night; no effect of moon phase was revealed. Movements in the vicinity of arrays (up to 116 km in the fluvial estuary) were suggested and smaller‐scale movements within Lac St. Louis were demonstrated, highlighting a yellow‐eel home range far more extensive than previously reported in smaller systems. Evidence for within‐season homing and site fidelity is also reported.

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