Search results for "Plastic"

showing 10 items of 7296 documents

Chasing phthalates in tissues of marine turtles from the Mediterranean sea

2018

Tissues from thirteen specimens of marine turtles, one Dermochelys coriacea and twelve Caretta caretta, found dead along the Sicilian coasts in 2016 were analyzed for the presence of phthalates. Four phthalates (DEP, DBP, BBP, and DEHP) were found at different significant concentrations in liver and gonads, while only DBP was found in muscle tissues and at a fourfold lower concentration than other phthalates in Dermochelys coriacea. No traces of DEP were detected in C. caretta tissues where DOTP was also revealed. The presence of phthalates in fat tissue in specimens of C. caretta showed a major prevalence of the most lipophilic phthalates DEHP and DOTP. The total concentration of all analy…

0106 biological sciencesMicroplasticsPhthalic AcidsZoology010501 environmental sciencesBiologyAquatic ScienceOceanography01 natural sciencesDermochelys coriaceaMediterranean seaPhthalatesMediterranean SeaAnimalsGonads0105 earth and related environmental sciencesCaretta caretta010604 marine biology & hydrobiologyMicroplasticSettore CHIM/06 - Chimica OrganicaPollutionTurtlesAdipose TissueLiverPhthalateSample collectionhuman activitiesPlasticsWater Pollutants ChemicalEnvironmental Monitoring
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First Assessment of Plasticizers in Marine Coastal Litter-Feeder Fauna in the Mediterranean Sea

2021

Micro and nanoplastics are harmful to marine life due to their high level of fragmentation and resistance to degradation. Over the past two decades, marine coastal sediment has shown an increasing amount of microplastics being a sort of trap for debris wastes or chemicals. In such an environment some species may be successful candidates to be used as monitors of environmental and health hazards and can be considered a mirror of threats of natural habitats. Such species play a key role in the food web of littoral systems since they are litter-feeders, and are prey for fishes or higher trophic level species. A preliminary investigation was conducted on five species of small-sized amphipod cru…

0106 biological sciencesMicroplasticsmarine litterHealth Toxicology and MutagenesisFaunaMarine life010501 environmental scienceslcsh:Chemical technologyToxicologycoastal areas010603 evolutionary biology01 natural sciencesArticleplastic pollutionMediterranean seaMarine debrisMediterranean Sealcsh:TP1-11850105 earth and related environmental sciencesTrophic levelChemical Health and Safetyplastic pollution; marine litter; coastal areas; Crustacea Amphipoda; Mediterranean SeaEcologyFood webCrustacea AmphipodaEnvironmental sciencePlastic pollutionToxics
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Using Boops boops (osteichthyes) to assess microplastic ingestion in the Mediterranean Sea

2020

Abstract This study assesses microplastic ingestion in Boops boops at different geographical areas in the Mediterranean Sea. A total of 884 fish were caught at 20 coastal sites in Spain, France, Italy and Greece and analyzed using a common methodological protocol. Microplastics were found in 46.8% of the sampled fish, with an average number of items per individual of 1.17 ± 0.07. Filaments were the predominant shape type, while polyethylene and polypropylene were indicated by FTIR as the most common polymer types of ingested microplastics. The frequency of occurrence, as well as the abundance and proportion of types (size, shape, color and polymer) of ingested microplastics, varied among ge…

0106 biological sciencesMicroplasticsmarine litterMicroplasticsmicrolitter010501 environmental sciencesAquatic ScienceOceanography01 natural sciencesMediterranean seaAbundance (ecology)Marine debrisAnimalsbioindicator0105 earth and related environmental sciencesfishbiologyGreece010604 marine biology & hydrobiologyboguemarine litter; microlitter; fish; bogue; bioindicator; Mediterranean seaBoops boopsbiology.organism_classificationPollutionSpatial heterogeneityFisheryItalySpainMediterranean seaEnvironmental scienceFranceBioindicatorPlasticsWater Pollutants ChemicalBoopsEnvironmental Monitoring
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The way wear goes: phytolith-based wear on the dentine–enamel system in guinea pigs (Cavia porcellus)

2019

The effect of phytoliths on tooth wear and function has been contested in studies of animal–plant interactions. For herbivores whose occlusal chewing surface consists of enamel ridges and dentine tissue, the phytoliths might particularly erode the softer dentine, exposing the enamel ridges to different occlusal forces and thus contributing to enamel wear. To test this hypothesis, we fed guinea pigs (Cavia porcellus; n = 36 in six groups) for threeweeks exclusively on dry or fresh forage of low(lucerne), moderate (fresh timothy grass) or very high (bamboo leaves) silica content representing corresponding levels of phytoliths. We quantified the effect of these treatments with measuremen…

0106 biological sciencesMolar10253 Department of Small AnimalsDentistry01 natural sciences2300 General Environmental ScienceLower body2400 General Immunology and MicrobiologyphytolithsGeneral Environmental Science2. Zero hunger630 AgricultureEcologybiologyEnamel paintOcclusal forcesGeneral Medicinemedicine.anatomical_structurePhytolithvisual_artvisual_art.visual_art_mediumGeneral Agricultural and Biological Sciences010506 paleontologygrowthGuinea PigsCaviaGenetics and Molecular Biology1100 General Agricultural and Biological Sciences010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular Biologystomatognathic systemIncisor1300 General Biochemistry Genetics and Molecular BiologymedicineAnimalsHerbivoryDental Enamel0105 earth and related environmental sciencesGeneral Immunology and Microbiologybusiness.industrybiology.organism_classificationAnimal FeedMolarDietstomatognathic diseasesTooth wearplasticityGeneral BiochemistryDentin570 Life sciences; biologyMasticationTooth Weardental wearbusinessProceedings of the Royal Society B: Biological Sciences
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Differential impact of marine debris ingestion during ontogenetic dietary shift of green turtles in Uruguayan waters

2018

Anthropogenic debris ingestion has been reported for green turtles in all their life stages worldwide. The aim of the present study is to evaluate the marine debris ingestion by green turtles stranded in Uruguayan coast between 2005 and 2013. Debris items were categorized and quantified by frequency of occurrence, relative weight, volume and number of items. A total of 96 dead stranded turtles were analyzed and 70% presented debris in their guts. The majority of debris found were plastic, being hard plastics the most abundant in weight. We found no differences in debris ingestion in stranded turtles a long the Uruguayan coast. However we detected a negative correlation between the presence …

0106 biological sciencesOntogenyOtras Ciencias de la Tierra y relacionadas con el Medio AmbienteZoologyRelative weight010501 environmental sciencesAquatic ScienceBiologyOceanography01 natural sciencesSOUTHWESTERN ATLANTICCiencias de la Tierra y relacionadas con el Medio Ambientelaw.inventionEatingSEA TURTLESlawMarine debrisCHELONIA MYDASAnimalsIngestionTurtle (robot)0105 earth and related environmental sciencesDifferential impact010604 marine biology & hydrobiologyPLASTIC INGESTIONPollutionDebrisGastrointestinal ContentsLife stageDietTurtlesUruguayPlasticsCIENCIAS NATURALES Y EXACTASWater Pollutants ChemicalEnvironmental MonitoringMarine Pollution Bulletin
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A review of transgenerational effects of ocean acidification on marine bivalves and their implications for sclerochronology

2020

Abstract Ocean acidification can negatively impact marine bivalves, especially their shell mineralization processes. Consequently, whether marine bivalves can rapidly acclimate and eventually adapt in an acidifying ocean is now increasingly receiving considerable attention. Projecting the fate of this vulnerable taxonomic group is also pivotal for the science of sclerochronology – the study which seeks to deduce records of past environmental changes and organismal life-history traits from various geochemical properties of periodically layered hard tissues (bivalve shells, corals, fish otoliths, etc.). In this review, we provide a concise overview of the long-term and transgenerational respo…

0106 biological sciencesPhenotypic plasticity010504 meteorology & atmospheric sciencesEcology010604 marine biology & hydrobiologyClimate changeOcean acidificationAquatic ScienceBiologyOceanography01 natural sciencesAcclimatizationIsotopes of oxygenTransgenerational epigeneticsIsotopes of carbonSclerochronology0105 earth and related environmental sciencesEstuarine, Coastal and Shelf Science
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Estimation of fitness from energetics and life-history data: An example using mussels.

2017

Changing environments have the potential to alter the fitness of organisms through effects on components of fitness such as energy acquisition, metabolic cost, growth rate, survivorship, and reproductive output. Organisms, on the other hand, can alter aspects of their physiology and life histories through phenotypic plasticity as well as through genetic change in populations (selection). Researchers examining the effects of environmental variables frequently concentrate on individual components of fitness, although methods exist to combine these into a population level estimate of average fitness, as the per capita rate of population growth for a set of identical individuals with a particul…

0106 biological sciencesPhenotypic plasticityEcology010604 marine biology & hydrobiologyBiology010603 evolutionary biology01 natural sciencesSurvivorship curveStatisticsPer capitaPopulation growthProduction (economics)Set (psychology)Ecology Evolution Behavior and SystematicsSelection (genetic algorithm)OrganismNature and Landscape ConservationEcology and evolution
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Empirical evidence for fast temperature-dependent body size evolution in rotifers

2017

Organisms tend to decrease in size with increasing temperature by phenotypic plasticity (the temperature-size rule; ectotherms) and/or genetically (Bergmann’s rule; all organisms). In this study, the evolutionary response of body size to temperature was examined in the cyclically parthenogenetic rotifer Brachionus plicatilis. Our aim was to investigate whether this species, already known to decrease in size with increasing temperature by phenotypic plasticity, presents a similar pattern at the genetic level. We exposed a multiclonal mixture of B. plicatilis to experimental evolution at low and high temperature and monitored body size weekly. Within a month, we observed a smaller size at hig…

0106 biological sciencesPhenotypic plasticityExperimental evolutionbiologyEcology010604 marine biology & hydrobiologyBergmann’s ruleZoologyEcologia animalRotiferParthenogenesisAquatic SciencePlasticityBrachionusbiology.organism_classificationRotífers010603 evolutionary biology01 natural sciencesBergmann's ruletemperature-size ruleEctothermBrachionus plicatilisexperimental evolutionbody size
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2019

Trade-offs have been shown to play an important role in the divergence of mating strategies and sexual ornamentation, but their importance in explaining warning signal diversity has received less attention. In aposematic organisms, allocation costs of producing the conspicuous warning signal pigmentation under nutritional stress could potentially trade-off with life-history traits and maintain variation in warning coloration. We studied this with an aposematic herbivore Arctia plantaginis (Arctiidae), whose larvae and adults show extensive variation in aposematic coloration. In larvae, less melanic coloration (i.e. larger orange patterns) produces a more efficient warning signal against pre…

0106 biological sciencesPhenotypic plasticityLarvaHerbivoreLow protein010604 marine biology & hydrobiologyMelanismZoologyAposematismBiology010603 evolutionary biology01 natural sciencesLife history theoryAnimal Science and ZoologyGene–environment interactionEcology Evolution Behavior and SystematicsJournal of Animal Ecology
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Measuring phenotypes in fluctuating environments

2020

Despite considerable theoretical interest in how the evolution of phenotypic plasticity should be shaped by environmental variability and stochasticity, how individuals actually respond to these aspects of the environment within their own lifetimes remains unclear. We propose that this understanding has been hampered by experimental approaches that expose organisms to fluctuating environments (typically treatments where fluctuations in the environment are cyclical vs. erratic) for a pre‐determined duration while ensuring that the mean environment over that the entire exposure period is invariable. This approach implicitly assumes that responses to the mean and variance/predictability in the…

0106 biological sciencesPhenotypic plasticitybiologyfungiConfoundingDaphnia magnabiology.organism_classification010603 evolutionary biology01 natural sciencesDaphniaHeat toleranceEnvironment variableStatisticsPredictabilityMean radiant temperatureEcology Evolution Behavior and Systematics010606 plant biology & botanyFunctional Ecology
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