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Journal article

Linking spawning ground extent to environmental factors - patterns and dispersal during the egg phase of four North Sea fishes

From

Section for Ocean Ecology and Climate, National Institute of Aquatic Resources, Technical University of Denmark1

National Institute of Aquatic Resources, Technical University of Denmark2

Institute of Marine Research3

Wageningen University & Research4

Scottish Association for Marine Science5

Institut français de recherche pour l'exploitation de la mer6

Marine Scotland Science7

Section for Marine Ecology and Oceanography, National Institute of Aquatic Resources, Technical University of Denmark8

Previous studies have shown that four commercially important demersal species, namely cod (Gadus morhua), haddock (Melanogrammus aeglefinus), whiting (Merlangius merlangus) and plaice (Pleuronectes platessa) spawn in distinct areas across the North Sea. Based on two comprehensive ichthyoplankton surveys in 2004 and 2009, the present study uses Generalized Additive Mixed Models (GAMMs) to delimit these spawning grounds using the distribution of recently spawned eggs, investigates their relationship to specific environmental conditions and examines egg dispersal during their development.

Results indicate that presence/absence of early stage eggs is more related to temporal and topographic variables, while egg densities are closely linked with hydrography. Egg distribution patterns were relatively consistent during development and only changed near hatching. Compared to historic observations, the location of the spawning grounds appeared stable on the broad scale but centres of egg abundance varied between the surveyed years.

Potential effects of long-term climate change and anthropogenic short-term disturbances, such as seismic surveys, on fish reproduction are discussed, pointing out the demand for multi-species studies on these issue

Language: English
Publisher: NRC Research Press
Year: 2018
Pages: 357-374
ISSN: 12057533 and 0706652x
Types: Journal article
DOI: 10.1139/cjfas-2016-0310
ORCIDs: Munk, Peter

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