Is Dikerogammarus villosus (Crustacea, Gammaridae) a ‘killer shrimp’ in the River Rhine system?
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[1] K. Rothhaupt,et al. Invasive species as driving factors for the structure of benthic communities in Lake Constance, Germany , 2015, Hydrobiologia.
[2] R. Gergs,et al. No evidence for intraguild predation of Dikerogammarus villosus (Sowinsky, 1894) at an invasion front in the Untere Lorze, Switzerland , 2014 .
[3] T. Rewicz,et al. The profile of a 'perfect' invader - the case of killer shrimp, Dikerogammarus villosus , 2014 .
[4] A. Truhlar,et al. Differential leaf‐litter processing by native (Gammarus pulex) and invasive (Dikerogammarus villosus) freshwater crustaceans under environmental extremes , 2014 .
[5] D. Richardson,et al. Misleading criticisms of invasion science: a field guide , 2013 .
[6] J. Dick,et al. Predicting the ecological impacts of a new freshwater invader: functional responses and prey selectivity of the ‘killer shrimp’,Dikerogammarus villosus, compared to the nativeGammarus pulex , 2013, Freshwater Biology.
[7] R. Gergs,et al. Establishment of group-specific PCR primers for the identification of freshwater macroinvertebrates , 2013, Conservation Genetics Resources.
[8] R. Schulz,et al. Do differences in sensitivity between native and invasive amphipods explain their coexistence in Lake Constance? A case study with lambda-cyhalothrin. , 2013, Chemosphere.
[9] J. Lesutienė,et al. Feeding strategies and elemental composition in Ponto-Caspian peracaridans from contrasting environments: can stoichiometric plasticity promote invasion success? , 2013 .
[10] G. Velde,et al. There is more than one ‘killer shrimp’: trophic positions and predatory abilities of invasive amphipods of Ponto-Caspian origin , 2013 .
[11] K. Rothhaupt,et al. Different ammonia tolerances may facilitate spatial coexistence of Gammarus roeselii and the strong invader Dikerogammarus villosus , 2013, Biological Invasions.
[12] M. Jackson,et al. Population-Level Metrics of Trophic Structure Based on Stable Isotopes and Their Application to Invasion Ecology , 2012, PloS one.
[13] F. Hervant,et al. Ecophysiological responses to temperature of the "killer shrimp" Dikerogammarus villosus: is the invader really stronger than the native Gammarus pulex? , 2011, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[14] R. Keller,et al. Invasive species in Europe: ecology, status, and policy , 2011 .
[15] Andrew L Jackson,et al. Comparing isotopic niche widths among and within communities: SIBER - Stable Isotope Bayesian Ellipses in R. , 2011, The Journal of animal ecology.
[16] X. Garcia,et al. Differential effect of wave stress on the physiology and behaviour of native versus non-native benthic invertebrates , 2011, Biological Invasions.
[17] C. Piscart,et al. Potential impact of invasive amphipods on leaf litter recycling in aquatic ecosystems , 2011, Biological Invasions.
[18] Gerd Mayer,et al. Density and temperature dependent feeding rates in an established and an alien freshwater gammarid fed on chironomid larvae , 2011 .
[19] J. Dick,et al. Direct and indirect effects of species displacements: an invading freshwater amphipod can disrupt leaf-litter processing and shredder efficiency , 2010, Journal of the North American Benthological Society.
[20] J. Dick,et al. The Ponto-Caspian ‘killer shrimp’, Dikerogammarus villosus (Sowinsky, 1894), invades the British Isles , 2010 .
[21] C. Piscart,et al. Are amphipod invaders a threat to regional biodiversity? , 2010, Biological Invasions.
[22] C. Piscart,et al. Effect of habitat-related resources on fatty acid composition and body weight of the invasive Dikerogammarus villosus in an artificial reservoir. , 2009 .
[23] K. Rinke,et al. Zebra mussels mediate benthic–pelagic coupling by biodeposition and changing detrital stoichiometry , 2009 .
[24] M. Huijbregts,et al. Environmental and morphological factors influencing predatory behaviour by invasive non-indigenous gammaridean species , 2009, Biological Invasions.
[25] Rob S. E. W. Leuven,et al. The river Rhine: a global highway for dispersal of aquatic invasive species , 2009, Biological Invasions.
[26] J. Dick,et al. Flexible omnivory in dikerogammarus villosus (Sowinsky, 1894) (Amphipoda) - amphipod pilot species project (ampis) report 5 , 2009 .
[27] Gerd Mayer,et al. Mutual predation between and cannibalism within several freshwater gammarids: Dikerogammarus villosus versus one native and three invasives , 2009, Aquatic Ecology.
[28] Gerd Mayer,et al. Mouthpart Morphology of Gammarus roeselii Compared to a Successful Invader, Dikerogammarus villosus (Amphipoda) , 2009 .
[29] S. Jarman,et al. A molecular approach to identify prey of the southern rock lobster , 2008, Bulletin of Entomological Research.
[30] L. Bollache,et al. Comparison of the functional responses of invasive and native amphipods , 2008, Biology Letters.
[31] S. Chandra,et al. Invasive species in aquatic ecosystems: issue of global concern , 2008 .
[32] S. Jennings,et al. The importance of quantifying inherent variability when interpreting stable isotope field data , 2008, Oecologia.
[33] M. Grabowski,et al. How to be an invasive gammarid (Amphipoda: Gammaroidea)–comparison of life history traits , 2007, Hydrobiologia.
[34] D. Tautz,et al. An evaluation of LSU rDNA D1-D2 sequences for their use in species identification , 2007, Frontiers in Zoology.
[35] J. Dick,et al. Feeding on micro-algae in the invasive Ponto-Caspian amphipod Dikerogammarus villosus (Sowinsky, 1894) , 2006, Aquatic Ecology.
[36] G. Velde,et al. Trophic Relationships in the Rhine Food Web during Invasion and after Establishment of the Ponto-Caspian Invader Dikerogammarus villosus , 2006, Hydrobiologia.
[37] G. Maier,et al. Reproductive characteristics of invasive gammarids in the Rhine-Main-Danube catchment, South Germany , 2006 .
[38] S. Jarman,et al. Group‐specific primers for amplifying DNA sequences that identify Amphipoda, Cephalopoda, Echinodermata, Gastropoda, Isopoda, Ostracoda and Thoracica , 2006 .
[39] K. Rothhaupt,et al. An efficient in situ method for sampling periphyton in lakes and streams , 2005 .
[40] R. Fuller,et al. Determining trophic niche width: a novel approach using stable isotope analysis , 2004 .
[41] Mark P. Johnson,et al. A species invasion mediated through habitat structure, intraguild predation, and parasitism , 2004 .
[42] B. Deagle,et al. Group‐specific polymerase chain reaction for DNA‐based analysis of species diversity and identity in dietary samples , 2004, Molecular ecology.
[43] S. Devin,et al. Ecological traits of the amphipod invader Dikerogammarus villosus on a mesohabitat scale , 2003 .
[44] G. van der Velde,et al. Geographical patterns in range extension of Ponto-Caspian macroinvertebrate species in Europe , 2002 .
[45] J. Dick,et al. Predatory impact of the freshwater invader Dikerogammarus villosus (Crustacea : Amphipoda) , 2002 .
[46] D. Post. USING STABLE ISOTOPES TO ESTIMATE TROPHIC POSITION: MODELS, METHODS, AND ASSUMPTIONS , 2002 .
[47] G. Velde,et al. Oxygen consumption, temperature and salinity tolerance of the invasive amphipod Dikerogammarus villosus: Indicators of further dispersal via ballast water transport , 2001 .
[48] J. Dick,et al. Invading predatory crustacean Dikerogammarus villosus eliminates both native and exotic species , 2000, Proceedings of the Royal Society of London. Series B: Biological Sciences.
[49] R. B. Jackson,et al. Global biodiversity scenarios for the year 2100. , 2000, Science.
[50] MacIsaac,et al. Recent mass invasion of the North American Great Lakes by Ponto-Caspian species. , 2000, Trends in ecology & evolution.
[51] J. Casselman,et al. Stable isotope evidence for the food web consequences of species invasions in lakes , 1999, Nature.
[52] M. J. V. Zanden,et al. PRIMARY CONSUMER δ13C AND δ15N AND THE TROPHIC POSITION OF AQUATIC CONSUMERS , 1999 .
[53] J. Dick,et al. Intraguild predation and species exclusions in amphipods: the interaction of behaviour, physiology and environment. , 1996 .
[54] E. Mehler,et al. The trophic function of Dikerogammarus villosus (Sowinsky, 1894) in invaded rivers: a case study in the Elbe and Rhine. , 2015 .
[55] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[56] P. Goethals,et al. Potential effects of the invasive 'killer shrimp' (Dikerogammarus villosus) on macroinvertebrate assemblages and biomonitoring indices , 2013 .
[57] D. Roblin. Comparative Biochemistry and Physiology, Part A , 2013 .
[58] C. Cossu-Leguille,et al. Effects of sublethal copper exposure on two gammarid species: which is the best competitor? , 2011, Ecotoxicology.
[59] D. Minchin,et al. Alien Invertebrates and Fish in European Inland Waters , 2009 .
[60] M. Pöckl. Strategies of a successful new invader in European fresh waters: fecundity and reproductive potential of the Ponto‐Caspian amphipod Dikerogammarus villosus in the Austrian Danube, compared with the indigenous Gammarus fossarum and G. roeseli , 2007 .