Climate warming leads to replacement of Limecola balthica by Abra tenuis on high tidal flats of the Wadden Sea

Journal of Sea Research - Tập 178 - Trang 102137 - 2021
R. Dekker1, J.J. Beukema2
1NIOZ Royal Netherlands Institute for Sea Research, Department of Coastal Systems, PO Box 59, NL-1790AB Den Burg, Texel, the Netherlands
2Linieweg 19, NL-1783BA Den Helder, the Netherlands

Tài liệu tham khảo

Bachelet, 1980, Growth and recruitment of the tellinid bivalve Macoma balthica at the southern limit of its geographical distribution, the Gironde Estuary (S W France), Mar. Biol., 59, 105, 10.1007/BF00405460 Bates, 2014, Defining and observing stages of climate-mediated range shifts in marine systems, Glob. Environ. Change, 26, 27, 10.1016/j.gloenvcha.2014.03.009 Beukema, 1993, Successive changes in distribution patterns as an adaptive strategy in the bivalve Macoma balthica (L.) in the Wadden Sea, Helgol Meeresunters, 47, 287, 10.1007/BF02367170 Beukema, 1997, Local differences on macrozoobenthic response to enhanced food supply caused by mild eutrophication in a Wadden Sea area: food is only locally a limiting factor, Limnol. Oceanogr., 42, 1424, 10.4319/lo.1997.42.6.1424 Beukema, 2014, Variability in predator abundance links winter temperatures and bivalve recruitment: correlative evidence from long-term data in a tidal flat, Mar. Ecol. Progr. Ser., 513, 1, 10.3354/meps10978 Beukema, 2011, Increasing species richness of the macrozoobenthic fauna on tidal flats of the Wadden Sea by local range expansion and invasion of exotic species, Helgol. Mar. Res., 65, 155, 10.1007/s10152-010-0210-7 Beukema, 2020, Winters not too cold, summers not too warm: long-term effects of climate change on the dynamics of a dominant species in the Wadden Sea: the cockle Cerastoderma edule L, Mar. Biol., 167, 44, 10.1007/s00227-020-3659-1 Beukema, 2020, Half a century of monitoring macrobenthic animals on tidal flats in the Dutch Wadden Sea, Mar. Ecol. Prog. Ser., 656, 1, 10.3354/meps13555 Beukema, 2009, Some like it cold: populations of the tellinid bivalve Macoma balthica (L.) suffer in various ways from a warming climate, Mar. Ecol. Prog. Ser., 384, 135, 10.3354/meps07952 Beukema, 2017, Dynamics of a Limecola (Macoma) balthica population in a tidal flat area in the western Wadden Sea: effects of declining survival and recruitment, Helgol. Mar. Res., 71, 18, 10.1186/s10152-017-0498-7 Beukema, 2017, Parallel changes in Limecola (Macoma) balthica populations in the Dutch Wadden Sea, Mar. Ecol. Prog. Ser., 585, 71, 10.3354/meps12360 Bocher, 2007, Site- and species-specific distribution patterns of molluscs at five intertidal soft-sediment areas in northwest Europe during a single winter, Mar. Biol., 151, 577, 10.1007/s00227-006-0500-4 Compton, 2017, Shifting baselines in the Ems Dollard estuary: a comparison across three decades reveals changing benthic communities, J. Sea Res., 127, 119, 10.1016/j.seares.2017.06.014 Dairain, 2020, High prevalence of disseminated neoplasia in the Baltic tellin Limecola balthica in the Wadden Sea, Dis. Aquat. Org., 138, 89, 10.3354/dao03448 Dekker, 1993, Dynamics and growth of a bivalve, Abra tenuis, at the northern edge of its distribution, J. Mar. Biol. Ass. UK, 73, 497, 10.1017/S0025315400033063 Dekker, 1999, Relations of summer and winter temperatures with dynamics and growth of two bivalves, Tellina tenuis and Abra tenuis, on the northern edge of their intertidal distribution, J. Sea Res., 42, 207, 10.1016/S1385-1101(99)00026-X Hale, 2017, Subtidal benthic invertebrates shifting northward along the US Atlantic coast, Est. Coasts, 40, 1744, 10.1007/s12237-017-0236-z Hiddink, 2015, Temperature tracking by North Sea benthic invertebrates in response to climate change, Glob. Chang. Biol., 21, 117, 10.1111/gcb.12726 Hummel, 2000, The respiratory performance and survival of the bivalve Macoma balthica (L.) at the southern limit of its distribution area: a translocation experiment, J. Exp. Mar. Biol. Ecol., 251, 85, 10.1016/S0022-0981(00)00208-2 Jansen, 2007, Macoma balthica in Spain, a few decades back in history, J. Exp. Mar. Biol. Ecol., 344, 161, 10.1016/j.jembe.2006.12.014 Lenoir, 2020, Species better track climate warming in the oceans than on land, Nat. Ecol. Evol., 4, 1044, 10.1038/s41559-020-1198-2 Mieszkowska, 2016, Climate-driven range shifts within benthic habitats across a marine biogeographic transition zone, Adv. Ecol. Res., 55, 325, 10.1016/bs.aecr.2016.08.007 Pinsky, 2020, Climate-driven shifts in marine species ranges: scaling from organisms to communities, Annu. Rev. Mar. Sci., 12, 153, 10.1146/annurev-marine-010419-010916 Pitt, 2010, Climate-driven range changes in Tasmanian intertidal fauna, Mar. Freshw. Res., 61, 963, 10.1071/MF09225 Philippart, 2003, Climate-related changes in recruitment of the bivalve Macoma balthica, Limnol. Oceanogr., 48, 2171, 10.4319/lo.2003.48.6.2171 Vader, 1961 Wolff, 1983, Preliminary checklist of the zoobenthos and nekton species of the Wadden Sea, 24