Inter-Research > MEPS > v751 > p153-171  
MEPS
Marine Ecology Progress Series

via Mailchimp

MEPS 751:153-171 (2024)  -  DOI: https://doi.org/10.3354/meps14744

Eurytemora unmasked: trophic role of a cryptic copepod complex in larval rainbow smelt

Luis Avila1,*, Maria Martinez-Silva1, Pascal Sirois2, Gesche Winkler1

1Institut des Sciences de la Mer de Rimouski, Québec-Océan, Université du Québec à Rimouski (UQAR), 310 Allée des Ursulines, Rimouski, QC G5L3A1, Canada
2Chaire de recherche sur les espèces aquatiques exploitées, Département des sciences fondamentales, Université du Québec à Chicoutimi, 555 Boulevard de l’Université, Chicoutimi, QC G7H2B1, Canada
*Corresponding author:

ABSTRACT: Rainbow smelt Osmerus mordax uses the maximum turbidity zone (MTZ) of the St. Lawrence Estuary as a nursery area, with its prey field dominated by the calanoid copepod complex Eurytemora affinis. This cryptic species complex is a vital link between primary production and higher trophic levels, serving as crucial prey for fish larvae. We evaluated the contribution of the North Atlantic clade (NAC) of E. affinis and the Atlantic clade (now described as E. carolleeae) to the diet of early stages of rainbow smelt across MTZ habitats. In summer 2021, 4 surveys revealed a heterogeneous distribution of smelt and its copepod prey, with highest mean abundances found in the oligohaline habitat compared to the limnetic and mesohaline habitats. Ontogenetic diet shifts were observed; the E. affinis complex was the predominant prey in June and July, while the mysid Neomysis americana increased in importance in August. Using a newly developed qPCR assay, we revealed that E. affinis NAC was the predominant prey, with 72% of stomachs containing only this Eurytemora species; thus, E. carolleeae played a minor role in energy transfer. Similarly, E. affinis NAC dominated in the environment, indicating that rainbow smelt larvae exploit the most abundant resource available. This study highlights the critical role of E. affinis NAC in sustaining energy transfer pathways towards larval rainbow smelt for 1 yr; however, interannual variation within the cryptic complex in the MTZ should be further assessed.


KEY WORDS: Fish larvae · Osmerus mordax · Eurytemora affinis · Cryptic species complex · Diet · qPCR identification


Full text in pdf format
Supplementary Material
Cite this article as: Avila L, Martinez-Silva M, Sirois P, Winkler G (2024) Eurytemora unmasked: trophic role of a cryptic copepod complex in larval rainbow smelt. Mar Ecol Prog Ser 751:153-171. https://doi.org/10.3354/meps14744

Export citation
Share:    Facebook - - Bluesky - linkedIn

 Previous article Next article