Effects of zooplankton abundance on the spawning phenology of winter-spawning Downs herring (Clupea harengus)

We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring ( Clupea harengus ) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey ( Calanus finmarchicus , Calanus h...

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Published inPloS one Vol. 20; no. 2; p. e0310388
Main Authors Marchal, Paul, Giraldo, Carolina, Johns, David, Lefebvre, Sébastien, Loots, Christophe, Toomey, Lola
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 05.02.2025
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Abstract We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring ( Clupea harengus ) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey ( Calanus finmarchicus , Calanus helgolandicus , Temora longicornis ). A two-tiered approach building on the monthly distribution of commercial herring landings was developed, which consisted of, (1) calculating the timing and duration of spawning season based on estimated deviations from basic harmonic signals and, (2) analysing their inter-annual variations in relation to biotic (zooplankton abundance) and abiotic (temperature) environmental variables through time series analyses. The start, midpoint and ending of herring spawning season were increasingly delayed over the period 1999–2021, a process which was correlated with the abundance of Calanus finmarchicus . The resulting duration of spawning season slightly decreased. Direct effects of sea temperatures on any phenological metrics could not be clearly evidenced. Different ecological processes were likely involved in the start and ending of spawning season. Additional covariates (including size/age composition, the biotic and abiotic factors other than those examined in our study) could contribute to a better explanation of the phenological drift in Downs herring spawning.
AbstractList We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring (Clupea harengus) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey (Calanus finmarchicus, Calanus helgolandicus, Temora longicornis). A two-tiered approach building on the monthly distribution of commercial herring landings was developed, which consisted of, (1) calculating the timing and duration of spawning season based on estimated deviations from basic harmonic signals and, (2) analysing their inter-annual variations in relation to biotic (zooplankton abundance) and abiotic (temperature) environmental variables through time series analyses. The start, midpoint and ending of herring spawning season were increasingly delayed over the period 1999-2021, a process which was correlated with the abundance of Calanus finmarchicus. The resulting duration of spawning season slightly decreased. Direct effects of sea temperatures on any phenological metrics could not be clearly evidenced. Different ecological processes were likely involved in the start and ending of spawning season. Additional covariates (including size/age composition, the biotic and abiotic factors other than those examined in our study) could contribute to a better explanation of the phenological drift in Downs herring spawning.
We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring ( Clupea harengus ) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey ( Calanus finmarchicus , Calanus helgolandicus , Temora longicornis ). A two-tiered approach building on the monthly distribution of commercial herring landings was developed, which consisted of, (1) calculating the timing and duration of spawning season based on estimated deviations from basic harmonic signals and, (2) analysing their inter-annual variations in relation to biotic (zooplankton abundance) and abiotic (temperature) environmental variables through time series analyses. The start, midpoint and ending of herring spawning season were increasingly delayed over the period 1999–2021, a process which was correlated with the abundance of Calanus finmarchicus . The resulting duration of spawning season slightly decreased. Direct effects of sea temperatures on any phenological metrics could not be clearly evidenced. Different ecological processes were likely involved in the start and ending of spawning season. Additional covariates (including size/age composition, the biotic and abiotic factors other than those examined in our study) could contribute to a better explanation of the phenological drift in Downs herring spawning.
We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring (Clupea harengus) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey (Calanus finmarchicus, Calanus helgolandicus, Temora longicornis). A two-tiered approach building on the monthly distribution of commercial herring landings was developed, which consisted of, (1) calculating the timing and duration of spawning season based on estimated deviations from basic harmonic signals and, (2) analysing their inter-annual variations in relation to biotic (zooplankton abundance) and abiotic (temperature) environmental variables through time series analyses. The start, midpoint and ending of herring spawning season were increasingly delayed over the period 1999-2021, a process which was correlated with the abundance of Calanus finmarchicus. The resulting duration of spawning season slightly decreased. Direct effects of sea temperatures on any phenological metrics could not be clearly evidenced. Different ecological processes were likely involved in the start and ending of spawning season. Additional covariates (including size/age composition, the biotic and abiotic factors other than those examined in our study) could contribute to a better explanation of the phenological drift in Downs herring spawning.We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring (Clupea harengus) in the Eastern English Channel and the Southern North Sea (Downs component), in relation to temperature and the availability of potential zooplanktonic prey (Calanus finmarchicus, Calanus helgolandicus, Temora longicornis). A two-tiered approach building on the monthly distribution of commercial herring landings was developed, which consisted of, (1) calculating the timing and duration of spawning season based on estimated deviations from basic harmonic signals and, (2) analysing their inter-annual variations in relation to biotic (zooplankton abundance) and abiotic (temperature) environmental variables through time series analyses. The start, midpoint and ending of herring spawning season were increasingly delayed over the period 1999-2021, a process which was correlated with the abundance of Calanus finmarchicus. The resulting duration of spawning season slightly decreased. Direct effects of sea temperatures on any phenological metrics could not be clearly evidenced. Different ecological processes were likely involved in the start and ending of spawning season. Additional covariates (including size/age composition, the biotic and abiotic factors other than those examined in our study) could contribute to a better explanation of the phenological drift in Downs herring spawning.
Audience Academic
Author Lefebvre, Sébastien
Johns, David
Loots, Christophe
Toomey, Lola
Giraldo, Carolina
Marchal, Paul
AuthorAffiliation 2 The Laboratory, Marine Biological Association, Plymouth, Devon, United Kingdom
1 Channel and North Sea Fisheries Research Unit, Institut Français pour la Recherche et l’Exploitation de la Mer, Boulogne s/mer, France
4 Coispa Technology and Research, Bari, Italy
Havforskningsinstituttet, NORWAY
3 Laboratoire d’Océanologie et Géosciences, Université de Lille, Centre National pour la Recherche Scientifique, Université du Littoral Côte d’Opale, Institut pour la Recherche et le Développement, Lille, France
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Competing Interests: The authors have declared that no competing interests exist.
ORCID 0000-0003-3270-6764
0000-0003-2047-4599
0000-0001-7060-6698
0000-0003-0278-522X
0000-0002-7344-1777
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Snippet We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring ( Clupea harengus ) in the Eastern English Channel and the Southern...
We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring (Clupea harengus) in the Eastern English Channel and the Southern...
We have investigated phenological shifts in autumn- and winter-spawning Atlantic herring ( Clupea harengus ) in the Eastern English Channel and the Southern...
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SubjectTerms Abiotic factors
Abundance
Age composition
Agricultural sciences
Animal biology
Animals
Annual variations
Autumn
Biology and Life Sciences
Calanus finmarchicus
Clupea harengus
Earth Sciences
Ecological effects
Ecological research
Ecology, environment
Engineering and Technology
Environmental aspects
Fish
Fisheries
Fishes - physiology
Fishing
Global warming
Interannual variations
Investigations
Life Sciences
Monthly distribution
North Sea
Phenology
Physical Sciences
Physiological aspects
Plankton
Reproduction - physiology
Research and Analysis Methods
Sciences and technics of fishery
Seasons
Social Sciences
Spawning
Symbiosis
Temperature
Temperature effects
Time series
Vertebrate Zoology
Winter
Zooplankton
Zooplankton - physiology
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Title Effects of zooplankton abundance on the spawning phenology of winter-spawning Downs herring (Clupea harengus)
URI https://www.ncbi.nlm.nih.gov/pubmed/39908261
https://www.proquest.com/docview/3163756580
https://www.proquest.com/docview/3163847309
https://hal.science/hal-05063281
https://pubmed.ncbi.nlm.nih.gov/PMC11798473
https://doaj.org/article/f9755d135b2c4aa2bea7e06f62fad6bc
http://dx.doi.org/10.1371/journal.pone.0310388
Volume 20
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