Intraspecific variation in diet, growth, and morphology of landlocked Galaxias maculatus during its larval period: the role of food availability ... View Full Text


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Article Info

DATE

2011-08-20

AUTHORS

Juan Pablo Barriga, Miguel Ángel Battini, Martín García-Asorey, Cecilia Carrea, Patricio Jorge Macchi, Víctor Enrique Cussac

ABSTRACT

Food availability and predation risk have been shown to affect phenotypes during early life history of fishes. Galaxias maculatus, a small fish widely distributed around the southern hemisphere, clearly exhibits a complex trade-off between feeding and predation avoidance during growth over the larval period. We studied the effect of different environmental variables on diet, growth, mortality, and morphology through field surveys and data revision in the literature for limnetic G. maculatus larvae in five oligotrophic lakes of Patagonia. Both number of food categories and prey ingested by larvae were directly related to zooplankton density. Larval growth rate was related with zooplankton density and temperature. Lakes with high zooplankton densities and low predation risk had larvae with deeper bodies and shorter caudal peduncles, while in lakes with less food and high predation risk larvae were slender with shallower bodies and longer peduncles. Food availability and predation risk seem to operate on the swimming performance of G. maculatus larvae through the slenderness of the body and the length of the caudal peduncle. The observed phenotypic variation in growth and morphology could be a key feature that has allowed this species to successfully colonize a wide variety of environments in the southern hemisphere. More... »

PAGES

27-41

References to SciGraph publications

  • 1999-09. Alternative Ways to Become a Juvenile or a Definitive Phenotype (and on Some Persisting Linguistic Offenses) in ENVIRONMENTAL BIOLOGY OF FISHES
  • 2003-09. Effects of Galaxias maculatus on Nutrient Dynamics and Phytoplankton Biomass in a North Patagonian Oligotrophic Lake in ENVIRONMENTAL BIOLOGY OF FISHES
  • 2002-03-01. Effects of habitat and food resources on morphology and ontogenetic growth trajectories in perch in OECOLOGIA
  • 1998. Model Selection and Inference, A Practical Information-Theoretic Approach in NONE
  • 1999. When do fishes become juveniles? in NONE
  • 1994-06. Development of predator defences in fishes in REVIEWS IN FISH BIOLOGY AND FISHERIES
  • 1992-10. Intralacustrine movements of Galaxias maculatus (Galaxiidae) and Ondontesthes microlepidotus (Atherinidae) during their early life history in ENVIRONMENTAL BIOLOGY OF FISHES
  • 1993-03. Ontogenetic shifts in the diet ofGalaxias maculatus (Galaxiidae) andOdontesthes microlepidotus (Atherinidae) in ENVIRONMENTAL BIOLOGY OF FISHES
  • 2010-09-14. Extensive diel fish migrations in a deep ultraoligotrophic lake of Patagonia Argentina in HYDROBIOLOGIA
  • 2006-07-08. Variation in Life History of Land-Locked Lacustrine and Riverine Populations of Galaxias maculatus (Jenyns 1842) in Western Australia in ENVIRONMENTAL BIOLOGY OF FISHES
  • 2000-03. Abundance and daytime vertical distribution of planktonic fish larvae in an oligotrophic South Island lake in HYDROBIOLOGIA
  • 1998-01. Influence of abiotic and biotic factors on morphological variation of Keratella cochlearis (Gosse) in a small Andean lake in HYDROBIOLOGIA
  • 2003-04. Variation in Vertebral Number in Galaxiid Fishes (Teleostei: Galaxiidae): A Legacy of Life History, Latitude and Length in ENVIRONMENTAL BIOLOGY OF FISHES
  • 1997. Natural selection and the evolution of growth rate in the early life history: what are the trade-offs? in EARLY LIFE HISTORY AND RECRUITMENT IN FISH POPULATIONS
  • 1997. Ontogeny, growth and the recruitment process in EARLY LIFE HISTORY AND RECRUITMENT IN FISH POPULATIONS
  • 1993-03. Effect of the selective feeding ofGalaxias maculatus (Salmoniformes, Galaxiidae) on zooplankton of a South Andes lake in AQUATIC SCIENCES
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    http://scigraph.springernature.com/pub.10.1007/s10750-011-0849-3

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    83 phenotypic variation
    84 predation avoidance
    85 predation risk
    86 predation risk larvae
    87 prey
    88 rate
    89 revision
    90 risk
    91 risk larvae
    92 role
    93 shallow body
    94 short caudal peduncle
    95 slenderness
    96 small fish
    97 species
    98 survey
    99 swimming performance
    100 temperature
    101 variables
    102 variation
    103 variety
    104 wide variety
    105 zooplankton density
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