Behavioral plasticity in an invaded system: non-native whelks recognize risk from native crabs
暂无分享,去创建一个
[1] K. L. Alstyne,et al. Spatial and temporal variation in DMSP content in the invasive seaweed Codium fragile ssp. fragile : effects of temperature, light and grazing , 2010 .
[2] John L. Orrock,et al. Predator-prey naïveté, antipredator behavior, and the ecology of predator invasions , 2010 .
[3] P. E. Bourdeau. Prioritized phenotypic responses to combined predators in a marine snail. , 2009, Ecology.
[4] R. Tollrian,et al. Inducible defences as key adaptations for the successful invasion of Daphnia lumholtzi in North America? , 2009, Proceedings of the Royal Society B: Biological Sciences.
[5] J. Ruesink,et al. Impacts of Invasive Oyster Drills on Olympia Oyster (Ostrea lurida Carpenter 1864) Recovery in Willapa Bay, Washington, United States , 2009 .
[6] E. Grosholz,et al. Invasive species cause large-scale loss of native California oyster habitat by disrupting trophic cascades , 2009, Oecologia.
[7] Erkki Korpimäki,et al. Risk induced by a native top predator reduces alien mink movements. , 2008, The Journal of animal ecology.
[8] Y. Outreman,et al. Predation risk cues associated with killed conspecifics affect the behavior and reproduction of prey animals , 2008 .
[9] Benjamin M. Bolker,et al. Ecological Models and Data in R , 2008 .
[10] P. Abrams. Defining and measuring the impact of dynamic traits on interspecific interactions. , 2007, Ecology.
[11] M. W. McCoy. Conspecific density determines the magnitude and character of predator-induced phenotype , 2007, Oecologia.
[12] P. Mcdonald,et al. Biotic resistance to green crab, Carcinus maenas, in California bays , 2007 .
[13] S. Peacor,et al. Large nonlethal effects of an invasive invertebrate predator on zooplankton population growth rate. , 2007, Ecology.
[14] P. Ewanchuk,et al. The fear of being eaten reduces energy transfer in a simple food chain. , 2006, Ecology.
[15] W. E. Snyder,et al. Ecological Effects of Invasive Arthropod Generalist Predators , 2006 .
[16] P. Ewanchuk,et al. Habitat effects on the relative importance of trait- and density-mediated indirect interactions. , 2006, Ecology letters.
[17] S. Peacor,et al. Non-lethal effect of the invasive predator Bythotrephes longimanus on Daphnia mendotae , 2006 .
[18] C. Laforsch,et al. Inducible defenses: The relevance of chemical alarm cues in Daphnia , 2006 .
[19] M. Weissburg,et al. Hard Clams (Mercenaria mercenaria) Evaluate Predation Risk Using Chemical Signals from Predators and Injured Conspecifics , 2006, Journal of Chemical Ecology.
[20] S. Dalesman,et al. Cue association and antipredator behaviour in a pulmonate snail, Lymnaea stagnalis , 2006, Animal Behaviour.
[21] L. Kautsky,et al. Increased chemical resistance explains low herbivore colonization of introduced seaweed , 2006, Oecologia.
[22] K. B. Suttle,et al. Engineering Enemy-free Space: An Invasive Pest that Kills its Predators , 2006, Biological Invasions.
[23] K. Holsman,et al. Intertidal migration and habitat use by subadult Dungeness crab Cancer magister in a NE Pacific estuary , 2006 .
[24] R. Pereira,et al. Chemical defense of an exotic coral as invasion strategy , 2006 .
[25] Sarah E. Dudas,et al. Selective crab predation on native and introduced bivalves in British Columbia , 2005 .
[26] R. Relyea,et al. Damage, digestion, and defence: the roles of alarm cues and kairomones for inducing prey defences. , 2005, Ecology letters.
[27] Christina M. Payne,et al. Recognition systems and biological invasions , 2004 .
[28] P. Sauriau,et al. Invasion by the marine gastropod Ocinebrellus inornatus in France. III. Comparison of biological traits with the resident species Ocenebra erinacea , 2004 .
[29] R. D. Moore,et al. Induced defences in an endangered amphibian in response to an introduced snake predator , 2004, Oecologia.
[30] F. Viard,et al. Invasion by the marine gastropod Ocinebrellus inornatus in France: I. Scenario for the source of introduction , 2004 .
[31] Kathryn E. L. Smith,et al. TRAIT COMPENSATION IN MARINE GASTROPODS: SHELL SHAPE, AVOIDANCE BEHAVIOR, AND SUSCEPTIBILITY TO PREDATION , 2004 .
[32] P. Shin,et al. Chemical cues from predators and damaged conspecifics affect byssus production in the green-lipped mussel perna viridis , 2004 .
[33] S. Downes,et al. Antipredatory behaviour in lizards: interactions between group size and predation risk , 2004, Animal Behaviour.
[34] M. J. Adams,et al. Behavioral Responses of Anuran Larvae to Chemical Cues of Native and Introduced Predators in the Pacific Northwestern United States , 2003 .
[35] S. Peacor,et al. A REVIEW OF TRAIT-MEDIATED INDIRECT INTERACTIONS IN ECOLOGICAL COMMUNITIES , 2003 .
[36] Vlastimil Křivan,et al. CONNECTING THEORETICAL AND EMPIRICAL STUDIES OF TRAIT‐MEDIATED INTERACTIONS , 2003 .
[37] C. Hunt,et al. Biotic resistance experienced by an invasive crustacean in a temperate estuary , 2003, Biological Invasions.
[38] S. Peacor. Phenotypic modifications to conspecific density arising from predation risk assessment , 2003 .
[39] R. Relyea. COMPETITOR-INDUCED PLASTICITY IN TADPOLES: CONSEQUENCES, CUES, AND CONNECTIONS TO PREDATOR-INDUCED PLASTICITY , 2002 .
[40] G. Trussell,et al. CUE SENSITIVITY, INDUCIBLE DEFENSE, AND TRADE-OFFS IN A MARINE SNAIL , 2002 .
[41] G. Quinn,et al. Experimental Design and Data Analysis for Biologists , 2002 .
[42] F. Gherardi,et al. Behavioural responses to alarm odours in indigenous and non-indigenous crayfish species: a case study from Western Australia , 2002 .
[43] Tamara C. Grand,et al. The effect of group size on the foraging behaviour of juvenile coho salmon: reduction of predation risk or increased competition? , 1999, Animal Behaviour.
[44] M. Ślusarczyk. Predator-induced diapause in Daphnia magna may require two chemical cues , 1999, Oecologia.
[45] A Sih,et al. Emergent impacts of multiple predators on prey. , 1998, Trends in ecology & evolution.
[46] J. Kiesecker,et al. POPULATION DIFFERENCES IN RESPONSES OF RED-LEGGED FROGS (RANA AURORA) TO INTRODUCED BULLFROGS , 1997 .
[47] G. Roberts. Why individual vigilance declines as group size increases , 1996, Animal Behaviour.
[48] A. Covich,et al. Predation Risk and Avoidance Behavior in Two Freshwater Snails. , 1991, The Biological bulletin.
[49] R. Tollrian,et al. The Ecology and Evolution of Inducible Defenses , 1990, The Quarterly Review of Biology.
[50] A. R. Palmer,et al. Effect of crab effluent and scent of damaged conspecifics on feeding, growth, and shell morphology of the Atlantic dogwhelk Nucella lapillus (L.) , 1990, Hydrobiologia.
[51] Appleton Rd,et al. Water-borne stimuli released by predatory crabs and damaged prey induce more predator-resistant shells in a marine gastropod. , 1988 .
[52] A. Sih. Evolution, Predator Avoidance, and Unsuccessful Predation , 1985, The American Naturalist.
[53] Pulliam Hr,et al. On the advantages of flocking , 1973 .
[54] J. Manzi. COMBINED EFFECTS OF SALINITY AND TEMPERATURE ON THE FEEDING, REPRODUCTIVE, AND SURVIVAL RATES OF EUPLEURA CAUDATA (SAY) AND UROSALPINX CINEREA (SAY) (PROSOBRANCHIA: MURICIDAE) , 1970 .
[55] J. Hanks. The rate of feeding of the common oyster drill, Urosalpinx cinerea (Say), at controlled water temperatures. , 1957 .
[56] R. Relyea. FINE‐TUNED PHENOTYPES: TADPOLE PLASTICITY UNDER 16 COMBINATIONS OF PREDATORS AND COMPETITORS , 2004 .
[57] W. Flueck. Observations of Interactions between Puma, Puma concolor , and Introduced European Red Deer, Cervus elaphus , in Patagonia , 2004 .
[58] O. Stabell,et al. Antipredator behaviour mediated by chemical cues: the role of conspecific alarm signalling and predator labelling in the avoidance response of a marine gastropod , 2004 .
[59] Scott D. Bryan,et al. Behavioral Responses of a Small Native Fish to Multiple Introduced Predators , 2004, Environmental Biology of Fishes.
[60] D. Chivers,et al. Chemical alarm signalling in aquatic predator-prey systems: A review and prospectus , 1998 .
[61] A. R. Palmer,et al. Water-borne stimuli released by predatory crabs and damaged prey induce more predator-resistant shells in a marine gastropod. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[62] H. Pulliam,et al. On the advantages of flocking. , 1973, Journal of theoretical biology.
[63] J.,et al. An Agenda for Invasion Biology , 2022 .