0000000000618622

AUTHOR

Martin ČEch

0000-0003-1350-4286

showing 4 related works from this author

European catfish (Silurus glanis) as a freshwater apex predator drives ecosystem via its diet adaptability

2017

AbstractApex predators play a key role in ecosystem stability across environments but their numbers in general are decreasing. By contrast, European catfish (Silurus glanis), the European freshwater apex predator, is on the increase. However, studies concerning apex predators in freshwaters are scarce in comparison to those in terrestrial and marine ecosystems. The present study combines stomach content and stable isotope analyses with diet preferences of catfish to reveal its impact on the ecosystem since stocking. Catfish niche width is extremely wide in comparison to the typical model predator, Northern pike (Esox lucius). Catfish and pike have different individual dietary specialization…

0106 biological sciencespredatory fishes:Zoology and botany: 480 [VDP]lcsh:MedicineFresh Water01 natural sciencesPredationFood chainBiomasslcsh:ScienceCatfishesApex predatorBiomass (ecology)education.field_of_studyCarbon IsotopesMultidisciplinaryEcologyStomachvesiekosysteemitSilurus glanisAdaptation PhysiologicalSeasonsCatfishanimal structuresFood Chainfood chainsPopulationBiology010603 evolutionary biologyArticleFood PreferencesAnimalsEcosystemMarine ecosystem14. Life underwatereducation:Zoologiske og botaniske fag: 480 [VDP]ravintoketjutEcosystemaquatic ecosystemsNitrogen Isotopes010604 marine biology & hydrobiologylcsh:Rfungiapex predatorDietLakesPredatory BehaviorEsocidaelcsh:QpetokalatmonniScientific Reports
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Distribution of Herbivorous Fish Is Frozen by Low Temperature.

2016

AbstractThe number of herbivores in populations of ectothermic vertebrates decreases with increasing latitude. At higher latitudes, fish consuming plant matter are exclusively omnivorous. We assess whether omnivorous fish readily shift to herbivory or whether animal prey is typically preferred. We address temperature as the key factor causing their absence at higher latitudes and discuss the potential poleward dispersion caused by climate changes. A controlled experiment illustrates that rudd (Scardinius erythrophthalmus) readily utilize plant matter at water temperatures above 20 °C and avoid its consumption below 20 °C. Field data support these results, showing that plant matter dominates…

0106 biological sciencesScardiniusClimate ChangePopulation DynamicsBiologyrudd010603 evolutionary biology01 natural sciencesArticleLatitudePredationIntestinal mucosawater temperatureScardinius erythrophthalmusAnimalsBiomassHerbivoryIntestinal MucosaEcosystemCzech RepublicProbabilityfishHerbivoreMultidisciplinaryGeographyEcologyherbivory010604 marine biology & hydrobiologyFishesTropicsWaterBiodiversity15. Life on landPlantsbiology.organism_classificationomnivorySeaweedInvertebratesCold Temperature13. Climate actionEctothermLinear Modelsta1181OmnivoreSeasonsdietScientific reports
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Macrophytes shape trophic niche variation among generalist fishes.

2017

Generalist species commonly have a fundamental role in ecosystems as they can integrate spatially distinct habitats and food-web compartments, as well as control the composition, abundance and behavior of organisms at different trophic levels. Generalist populations typically consist of specialized individuals, but the potential for and hence degree of individual niche variation can be largely determined by habitat complexity. We compared individual niche variation within three generalist fishes between two comparable lakes in the Czech Republic differing in macrophyte cover, i.e. macrophyte-rich Milada and macrophyte-poor Most. We tested the hypothesis that large individual niche variation…

0106 biological sciencesecological nichesgeneralist specieshiili:Zoology and botany: 480 [VDP]Marine and Aquatic SciencesPredationlcsh:MedicinePlant ScienceGeneralist and specialist species01 natural sciencesekosysteemittyppiFood Web StructureMedicine and Health Sciencesahvensärkilcsh:ScienceTrophic levelCzech RepublickalatlajistokartoitusPerchMultidisciplinarybiologyEcologyEcologyFishesBiodiversityPlantsPlanktonsorvaTrophic Interactionsekologinen lokeroCommunity EcologyForage fishVertebratesRutilusResearch ArticleFreshwater EnvironmentsScardiniusFood ChainNicherudd010603 evolutionary biologyjärvetZooplanktonPlant-Animal InteractionsTšekkiAnimalsHerbivory:Zoologiske og botaniske fag: 480 [VDP]EcosystempopulaatiobiologiaNutritionEcological nichefishisotoopitNitrogen Isotopes010604 marine biology & hydrobiologyPlant EcologyEcology and Environmental Scienceslcsh:ROrganismsBiology and Life SciencesAquatic EnvironmentsBodies of Waterbiology.organism_classificationInvertebratesDietmacrophytesekosysteemit (ekologia)LakesFoodEarth Sciencesta1181lcsh:QvesikasvitravintoverkotPLoS ONE
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Some like it deep : Intraspecific niche segregation in ruffe (Gymnocephalus cernua)

2017

Generalist fishes commonly show intraspecific niche segregation along the littoral–pelagic resource axis in lakes. Recent studies have shown that the deep, cold and seemingly unproductive profundal zone can also offer underutilised resources and facilitate specialised individuals, and can contribute to lake food webs via methane-derived carbon pathways. Despite numerous examples from salmonid fish species, such intraspecific niche segregation along a littoral–profundal resource axis has not been reported in percids or other predominantly littoral benthivorous fishes. Here, we describe a case of ruffe (Gymnocephalus cernua: Percidae) populations consisting of shallow- and deep-water dwelling…

0106 biological sciencesEcological nicheEcology010604 marine biology & hydrobiologyLake ecosystemNiche segregationhabitatInterspecific competitionAquatic ScienceBiologyGeneralist and specialist speciesbiology.organism_classification010603 evolutionary biology01 natural sciencesPercidaeprofundal zonespacialisationLittoral zonehabitat couplingstable isotope analysista1181individual specialisationProfundal zonecarbon transferisotopesFreshwater Biology
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