Behavioural inertia places a top marine predator at risk from environmental change in the Benguela upwelling system

被引:0
作者
Lorien Pichegru
Peter G. Ryan
Robert J. M. Crawford
Carl D. van der Lingen
David Grémillet
机构
[1] DEPE-IPHC,Centre National de la Recherche Scientifique
[2] University of Cape Town,DST/NRF Centre of Excellence at the Percy FitzPatrick Institute of African Ornithology
[3] Marine and Coastal Management,Department of Environmental Affairs and Tourism
[4] University of Cape Town,Marine Research Institute
[5] University of Cape Town,Marine Research Institute
[6] CEFE-UMR 5175,Centre National de la Recherche Scientifique
来源
Marine Biology | 2010年 / 157卷
关键词
Basal Metabolic Rate; Breeding Site; Pelagic Fish; Natural Prey; Adult Body Mass;
D O I
暂无
中图分类号
学科分类号
摘要
In variable environments, organisms are bound to track environmental changes if they are to survive. Most marine mammals and seabirds are colonial, central-place foragers with long-term breeding-site fidelity. When confronted with environmental change, such species are potentially constrained in their ability to respond to these changes. For example, if environmental conditions deteriorate within their limited foraging range, long-lived species favour adult survival and abandon their current breeding effort, which ultimately influences population dynamics. Should poor conditions persist over several seasons, breeding-site fidelity may force animals to continue breeding in low-quality habitats instead of emigrating towards more profitable grounds. We assessed the behavioural response of a site-faithful central-place forager, the Cape gannet Morus capensis, endemic to the Benguela upwelling system, to a rapid shift in the distribution and abundance of its preferred prey, small pelagic shoaling fish. We studied the distribution and the abundance of prey species, and the diet, foraging distribution, foraging effort, energy requirements, and breeding success of gannets at Malgas Island (South Africa) over four consecutive breeding seasons. Facing a rapid depletion of preferred food within their foraging range, Cape gannets initially increased their foraging effort in search of their natural prey. However, as pelagic fish became progressively scarcer, breeding birds resorted to scavenging readily available discards from a nearby demersal fishery. Their chicks cannot survive on such a diet, and during our 4-year study, numbers of breeding birds at the colony decreased by 40% and breeding success of the remaining birds was very low. Such behavioural inflexibility caused numbers of Cape gannets breeding in Namibia to crash by 95% following over-fishing of pelagic fish in the 1970s. In the context of rapid environmental changes, breeding-site fidelity of long-lived species may increase the risk of local or even global extinction, rendering these species particularly vulnerable to global change.
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页码:537 / 544
页数:7
相关论文
共 160 条
[1]  
Adams NJ(2005)Foraging of a coastal seabird: flight patterns and movements of breeding Cape gannets Afr J Mar Sci 27 239-248
[2]  
Navarro RA(1991)Energy expenditure and food consumption by breeding Cape gannets Mar Ecol Prog Ser 70 1-9
[3]  
Adams NJ(2006)Wasp-waist populations and marine ecosystem dynamics: navigating the “predator pit” topographies Progr Oceanogr 68 271-288
[4]  
Abrams RW(1999)Trends in the abundance and distribution of anchovy and sardine on the South African continental shelf in the 1990s, deduced from acoustic surveys S Afr J Mar Sci 21 367-391
[5]  
Siegfried WR(1984)The diet and implications of dietary change of Cape gannets on Bird Island, Nelson Mandela Bay Ostrich 55 45-63
[6]  
Nagy KA(1991)Comparison of the diet of breeding and non-breeding Cape Gannets Ostrich 62 183-192
[7]  
Kaplan IR(1993)Seasonal and interannual variation in the diet of two colonies of the Cape gannet ( Colonial Waterbirds 16 158-175
[8]  
Bakun A(2004)) between 1977–1978 and 1989 Integr Comp Biol 44 140-151
[9]  
Barange M(1997)Keeping pace with fast climate change: can Arctic life count on evolution? Evol Ecol 11 505-517
[10]  
Hampton I(2008)The use of conspecific reproductive success for breeding patch selection in terrestrial migratory species ICES J Mar Sci 65 1676-1688