Bagge AM, Poulin R, Valtonen ET (2004) Fish population size, and not density, as the determining factor of parasite infection: a case study. Parasitology 128:305–313
PubMed
Article
CAS
Google Scholar
Bakke TA, Cable J, Harris PD (2007) The biology of gyrodactylid monogeneans: the “Russian-doll killers”. In: Baker JR. Muller R, Rollinson D (eds) Advances in parasitology, vol 64. Academic Press, New York, pp 161–460
Barber I, Hoare D, Krause J (2000) Effects of parasites on fish behaviour: a review and evolutionary perspective. Rev Fish Biol Fish 10:131–165
Article
Google Scholar
Cable J, Van Oosterhout C (2007a) The impact of parasites on the life history evolution of guppies (Poecilia reticulata): the effects of host size on parasite virulence. Int J Parasitol 37:1449–1458
PubMed
Article
CAS
Google Scholar
Cable J, van Oosterhout C (2007b) The role of innate and acquired resistance in two natural populations of guppies (Poecilia reticulata) infected with the ectoparasite Gyrodactylus turnbulli. Biol J Linn Soc 90:647–655
Article
Google Scholar
Cain AJ, Sheppard PM (1950) Selection in the polymorphic land snail Cepaea nemoralis. Heredity 4:275–294
PubMed
Article
CAS
Google Scholar
Crispo E, Bentzen P, Reznick DN, Kinnison MT, Hendry AP (2006) The relative influence of natural selection and geography on gene flow in guppies. Mol Ecol 15:49–62
PubMed
Article
CAS
Google Scholar
Decaestecker E, de Meester L, Ebert D (2002) In deep trouble: habitat selection constrained by multiple enemies in zooplankton. Proc Natl Acad Sci USA 99:5481–5485
PubMed
Article
CAS
Google Scholar
Dick JTA et al (2010) Parasitism may enhance rather than reduce the predatory impact of an invader. Biol Lett 6:636–638
PubMed
Article
Google Scholar
Endler JA (1978) A predator’s view of animal color patterns. Evol Biol 11:319–364
Google Scholar
Endler JA (1980) Natural selection on color patterns in Poecilia reticulata. Evolution 34:76–91
Article
Google Scholar
Endler JA (1990) On the measurement and classification of color in studies of animal color patterns. Biol J Linn Soc 41:315–352
Article
Google Scholar
Endler JA (1991) Variation in the appearance of guppy color patterns to guppies and their predators under different visual conditions. Vis Res 31:587–608
PubMed
Article
CAS
Google Scholar
Endler JA (1995) Multiple trait coevolution and environmental gradients in guppies. Trends Ecol Evol 10:22–29
PubMed
Article
CAS
Google Scholar
Endler JA, Houde AE (1995) Geographic variation in female preferences for male traits in Poecilia reticulata. Evolution 49:456–468
Article
Google Scholar
Fraser B, Neff B (2010) Parasite mediated homogenizing selection at the MHC in guppies. Genetica 138:273–278
PubMed
Article
CAS
Google Scholar
Fraser BA, Ramnarine IW, Neff BD (2010) Temporal variation at the MHC class IIB in wild populations of the guppy (Poecilia reticulata). Evolution 64:286–2096
Google Scholar
Ghalambor CK, McKay JK, Caroll SP, Reznick DN (2007) Adaptive versus non-adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments. Funct Ecol 21:394–407
Article
Google Scholar
Gheorgiu C, Marcogliese DJ, Scott M (2006) Concentration-dependent effects of waterborne zinc on population dynamics of Gyrodactylus turnbulli (Monogenea) on isolated guppies (Poecilia reticulata). Parasitology 132:225–232
PubMed
Article
CAS
Google Scholar
Gray SM, Robinson BW (2002) Experimental evidence that competition between stickleback species favours adaptive character divergence. Ecol Lett 5:264–272
Article
Google Scholar
Grether GF, Hudon J, Millie DF (1999) Carotenoid limitation of sexual coloration along an environmental gradient in guppies. Proc R Soc Lond B 266:1317–1322
Article
CAS
Google Scholar
Grether GF, Millie DF, Bryant MJ, Reznick DN, Mayea W (2001) Rain forest canopy cover, resource availability, and life history evolution in guppies. Ecology 82:1546–1559
Article
Google Scholar
Harris PD (1986) Species of Gyrodactylus von Nordmann, 1832 (Monogenea Gyrodactylidae) from poeciliid fishes, with a description of G. turnbulli sp. nov. from the guppy, Poecilia reticulata. Peters. J Nat Hist 20:183–191
Article
Google Scholar
Harris PD, Lyles AM (1992) Infections of Gyrodactylus bullatarudis and Gyrodactylus turnbulli on guppies (Poecilia reticulata) in Trinidad. J Parasitol 78:912–914
PubMed
Article
CAS
Google Scholar
Hatcher MJ, Dick JTA, Dunn AM (2006) How parasites affect interactions between competitors and predators. Ecol Lett 9:1253–1271
PubMed
Article
Google Scholar
Houde AE (1992) Sex-linked heritability of a sexually selected character in a natural popualtion of Poecilia reticulata (Pisces: Poeciliidae) (guppies). Heredity 69:229–235
Article
Google Scholar
Houde AE (1997) Sex, color, and mate choice in guppies. Princeton University Press, Princeton
Google Scholar
Houde AE, Torio AJ (1992) Effect of parasitic infection on male color pattern and female choice in guppies. Behav Ecol 3:346–351
Article
Google Scholar
Hughes KA, Rodd FH, Reznick DN (2005) Genetic and environmental effects on secondary sex traits in guppies (Poecilia reticulata). J Evol Biol 18:35–45
PubMed
Article
CAS
Google Scholar
Johnson PTJ et al (2010) When parasites become prey: ecological and epidemiological significance of eating parasites. Trends Ecol Evol 25:362–371
PubMed
Article
Google Scholar
Johnson MB, Lafferty KD, van Oosterhout C, Cable J (2011) Parasite transmission in social interacting hosts: Monogenean epidemics in guppies. PLoS ONE 6:e22634
PubMed
Article
CAS
Google Scholar
Jones JS, Leith BH, Rawlings P (1977) Polymorphism in Cepaea: a problem with too many solutions? Annu Rev Ecol Syst 8:109–143
Article
Google Scholar
Karino K, Haijima Y (2001) Heritability of male secondary sexual traits in feral guppies in Japan. J Ethol 19:33–37
Article
Google Scholar
Kemp DJ, Reznick DN, Grether GF (2008) Ornamental evolution in Trinidadian guppies (Poecilia reticulata): insights from sensory processing-based analyses of entire colour patterns. Biol J Linn Soc 95:734–747
Article
Google Scholar
Kennedy CR, Guégan JF (1994) Regional versus local helminth parasite richness in British freshwater fish—saturated or unsaturated parasite communities. Parasitology 109:175–185
PubMed
Article
Google Scholar
Kennedy CEJ, Endler JA, Poynton SL, McMinn H (1987) Parasite load predicts mate choice in guppies. Behav Ecol Sociobiol 21:291–295
Article
Google Scholar
Kerfoot WC, Sih A (1987) Predation: direct and indirect impacts on aquatic communities. University Press of New England, Hanover
Google Scholar
Kodric-Brown A (1989) Dietary carotenoids and male mating success in the guppy—an environmental component to female choice. Behav Ecol Sociobiol 25:393–401
Article
Google Scholar
Kolluru GR, Grether GF, Dunlop E, South SH (2009) Food availability and parasite infection influence mating tactics in guppies (Poecilia reticulata). Behav Ecol 20:131–137
Article
Google Scholar
Langerhans RB, Layman CA, Shokrollahi AM, DeWitt TJ (2004) Predator-driven phenotypic diversification in Gambusia affinis. Evolution 58:2305–2318
PubMed
Google Scholar
Lopez S (1998) Acquired resistance affects male sexual diplay and female choice in guppies in Trinindad. Proc R Soc Lond B 265:717–723
Article
Google Scholar
Lozano GA (1994) Carotenoids, parasites, and sexual selection. Oikos 70:309–311
Article
Google Scholar
MacColl ADC (2011) The ecological causes of evolution. Trends Ecol Evol 26:514–522
PubMed
Article
Google Scholar
Magurran AE (1990) The adaptive significance of schooling as an anti-predator derence in fish. Ann Zool Fenn 27:51–66
Google Scholar
Magurran AE (2005) Evolutionary ecology: the Trinidadian guppy. Oxford University Press, New York
Book
Google Scholar
Mandic M, Todgham AE, Richards JG (2009) Mechanisms and evolution of hypoxia tolerance in fish. Proc R Soc Lond B 276:735–744
Google Scholar
Martin CH, Johnsen S (2007) A field test of the Hamilton-Zuk hypothesis in the Trinidadian guppy (Poecilia reticulata). Behav Ecol Sociobiol 61:1897–1909
Article
Google Scholar
Millar N, Hendry A (2012) Population divergence of private and non-private signals in wild guppies. Environ Biol Fish 513–525
Millar NP, Reznick DN, Kinnison MT, Hendry AP (2006) Disentangling the selective factors that act on male colour in wild guppies. Oikos 113:1–12
Article
Google Scholar
Otti O, Gantenbein-Ritter I, Jacot A, Brinkhof MWG (2012) Immune response increases predation risk. Evolution 66:732–739
PubMed
Article
Google Scholar
Pérez-Jvostov F, Hendry AP, Fussmann GF, Scott ME (2012) Are host-parasite interactions influenced by adaptation to predators? A test with guppies and Gyrodactylus in experimental stream channels. Oecologia 170:77–88
PubMed
Article
Google Scholar
Porter JW, Muscatine L, Dubinsky Z, Falkowski PG (1984) Primary production and photoadaptation in light- and shade-adapted colonies of the symbiotic coral, Stylophora pistillata. Proc R Soc Lond B 222:161–180
Article
Google Scholar
Raffel TR, Hoverman JT, Halstead NT, Michel PJ, Rohr JR (2010) Parasitism in a community context: trait-mediated interactions with competition and predation. Ecology 91:1900–1907
PubMed
Article
Google Scholar
Reardon EE, Chapman LJ (2010) Hypoxia and energetics of mouth brooding: is parental care a costly affair? Comp Biochem Physiol A Comp Physiol 156:400–406
Google Scholar
Reznick D, Endler JA (1982) The impact of predation on life history evolution in Trinidadian guppies (Poecilia reticulata). Evolution 36:160–177
Article
Google Scholar
Reznick DN, Butler MJ, Rodd FH, Ross P (1996) Life-history evolution in guppies (Poecilia reticulata). VI. Differential mortality as a mechanism for natural selection. Evolution 50:1651–1660
Article
Google Scholar
Reznick D, Butler MJ IV, Rodd FH (2001) Life-history evolution in guppies. VII. The comparative ecology of high- and low-predation environments. Am Nat 157:126–140
PubMed
Article
CAS
Google Scholar
Rifkin JL, Nunn CL, Garamszegi LZ (2012) Do animals living in larger groups experience greater parasitism? A meta-analysis. Am Nat 180:70–82
PubMed
Article
Google Scholar
Rodd FH, Reznick DN (1997) Variation in the demography of guppy populations: the importance of predation and life histories. Ecology 78:405–418
Google Scholar
Rodd FH, Hughes KA, Grether GF, Baril CT (2002) A possible non-sexual origin of mate preference: are male guppies mimicking fruit? Proc R Soc Lond B 269:475–481
Article
Google Scholar
Roff DA (1992) The evolution of life histories: theory and analysis. Chapman and Hall, New York
Google Scholar
Schluter D (1994) Experimental evidence that competition promotes divergence in adaptive radiation. Science 266:798–801
PubMed
Article
CAS
Google Scholar
Schwartz AK, Hendry AP (2007) A test for the parallel co-evolution of male colour and female preference in Trinidadian guppies (Poecilia reticulata). Evol Ecol Res 9:71–90
Google Scholar
Schwartz AK, Hendry AP (2010) Testing the influence of local forest canopy clearing on phenotypic variation in Trinidadian guppies. Funct Ecol 24:354–364
Article
Google Scholar
Scott ME (1985) Dynamics of challenge infections of Gyrodactylus bullatarudis Turnbull (Monogenea) on guppies, Poecilia reticulata (Peters). J Fish Dis 8:495–503
Article
Google Scholar
Scott ME (1987) Temporal changes in aggregation: a laboratory study. Parasitology 94:583–595
PubMed
Article
Google Scholar
Scott ME, Anderson RM (1984) The population dynamics of Gyrodactylus bullatarudis within laboratory populations of the fish host Poecilia reticulata. Parasitology 89:159–195
PubMed
Article
Google Scholar
Scott ME, Nokes DJ (1984) Temperature-dependent reproduction and survival of Gyrodactylus
bullatarudis (Monogenea) on guppies (Poecilia reticulata). Parasitology 89:221–229
Article
Google Scholar
Strauss RE (1990) Predation and life-history variation in Poecilia reticulata (Cyprinodontiformes: Poeciliidae). Environ Biol Fish 27:121–130
Article
Google Scholar
Thomas F, Renaud F, Meeüs TD, Cézilly F, Cézilly F (2009) Parasites, age and the Hamilton-Zuk hypothesis: inferential fallacy? Oikos 74:305–309
Article
Google Scholar
Tripathi N, Hoffmann M, Willing EM, Lanz C, Weigel D, Dreyer C (2009) Genetic linkage map of the guppy, Poecilia reticulata, and quantitative trait loci analysis of male size and colour variation. Proc R Soc Lond B 276:2195–2208
Article
CAS
Google Scholar
van Oosterhout C et al (2006) Balancing selection, random genetic drift, and genetic variation at the major histocompatibility complex in two wild populations of guppies (Poecilia reticulata). Evolution 60:2562–2574
PubMed
Article
Google Scholar
van Oosterhout C et al (2007) Selection by parasites in spate conditions in wild Trinidadian guppies (Poecilia reticulata). Int J Parasitol 37:805–812
PubMed
Article
Google Scholar
van Oosterhout C, Potter R, Wright H, Cable J (2008) Gyro-scope: an individual-based computer model to forecast gyrodactylid infections on fish hosts. Int J Parasitol 38:541–548
PubMed
Article
Google Scholar
Vergara P, Martinez-Padilla J, Redpath SM, Mougeot F (2011) The ornament-condition relationship varies with parasite abundance at population level in a female bird. Naturwissenschaften 98:897–902
PubMed
Article
CAS
Google Scholar
Weese DJ, Gordon SP, Hendry AP, Kinnison MT (2010) Spatiotemporal variation in linear natural selection on body color in wild guppies (Poecilia reticulata). Evolution 64:1802–1815
PubMed
Article
Google Scholar