Complex effect of projected sea temperature and wind change on flatfish dispersal

scientific article

Complex effect of projected sea temperature and wind change on flatfish dispersal is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1111/GCB.13915
P698PubMed publication ID28940907

P50authorGeneviève LacroixQ95947984
Léo BarbutQ95947986
Filip A M VolckaertQ95947987
P2093author name stringFilip A M Volckaert
Geneviève Lacroix
Léo Barbut
P2860cites workSensitivity of marine protected area network connectivity to atmospheric variabilityQ28584761
Evolutionary and biogeographical patterns of barnacles from deep-sea hydrothermal ventsQ28596500
Signature of ocean warming in global fisheries catchQ30626763
Mechanistic insights into the effects of climate change on larval cod.Q30716989
Trophodynamic linkage between river runoff and coastal fishery yield elucidated by stable isotope data in the Gulf of Lions (NW Mediterranean).Q30886607
Impact of climate change on marine pelagic phenology and trophic mismatchQ30952772
Strengthened currents override the effect of warming on lobster larval dispersal and survivalQ30987037
Climate change and larval transport in the ocean: fractional effects from physical and physiological factorsQ31020796
Anthropogenic climate change drives shift and shuffle in North Atlantic phytoplankton communities.Q31048347
Reorganization of North Atlantic marine copepod biodiversity and climate.Q31065365
Consistent response of bird populations to climate change on two continentsQ31066294
Solutions for ecosystem-level protection of ocean systems under climate change.Q31113670
The broad footprint of climate change from genes to biomes to people.Q31142453
Coral reef fish larvae settle close to homeQ33220547
Temperature control of larval dispersal and the implications for marine ecology, evolution, and conservationQ33268724
Global change ecotoxicology: Identification of early life history bottlenecks in marine invertebrates, variable species responses and variable experimental approachesQ34095485
Plankton effect on cod recruitment in the North Sea.Q34282875
Individual dispersal, landscape connectivity and ecological networksQ34487113
Slow adaptation in the face of rapid warming leads to collapse of the Gulf of Maine cod fisheryQ34499922
Climate change scenarios experiments predict a future reduction in small pelagic fish recruitment in the Humboldt Current systemQ34647495
Physiological ecology meets climate changeQ35192065
Bet hedging in a warming ocean: predictability of maternal environment shapes offspring size variation in marine sticklebacks.Q35693820
Patterns, causes, and consequences of marine larval dispersalQ35823879
Will life find a way? Evolution of marine species under global changeQ36151448
Local replenishment of coral reef fish populations in a marine reserveQ38870174
Genetic spatial structure in a butterfly metapopulation correlates better with past than present demographic structureQ42029320
Evolution of dispersal distance: maternal investment leads to bimodal dispersal kernelsQ46806473
Marine Dispersal Scales Are Congruent over Evolutionary and Ecological TimeQ46919826
Recent progress in understanding larval dispersal: new directions and digressions.Q48445452
Marine biological shifts and climate.Q51282574
Meta-ecosystem dynamics and functioning on finite spatial networks.Q51480029
Open and closed seascapes: where does habitat patchiness create populations with high fractions of self-recruitment?Q51555596
Metapopulation dynamicsQ55878875
Climate change and deepening of the North Sea fish assemblage: a biotic indicator of warming seasQ56774029
Resolving the effect of climate change on fish populationsQ56780600
On the use of IPCC-class models to assess the impact of climate on Living Marine ResourcesQ56782918
Spatial variation in growth, maturation schedules and reproductive investment of female sole Solea solea in the Northeast AtlanticQ57236670
How and how not to investigate the oxygen and capacity limitation of thermal tolerance (OCLTT) and aerobic scope - remarks on the article by Grans et alQ57525188
Climate change and coral reef connectivityQ57596567
Mothers matter: contribution to local replenishment is linked to female size, mate replacement and fecundity in a fish metapopulationQ58044673
Connectivity dominates larval replenishment in a coastal reef fish metapopulationQ58044855
Projecting future changes in distributions of pelagic fish species of Northeast Pacific shelf seasQ58062161
P433issue1
P921main subjectbiological dispersalQ778143
P1104number of pages16
P304page(s)85-100
P577publication date2017-09-23
P1433published inGlobal Change BiologyQ1531580
P1476titleComplex effect of projected sea temperature and wind change on flatfish dispersal
P478volume24

Reverse relations

Q92186342A novel integrative approach elucidates fine-scale dispersal patchiness in marine populationscites workP2860

Search more.