Search results for "Bion"

showing 10 items of 130 documents

A niche perspective on the range expansion of symbionts.

2020

Range expansion results from complex eco-evolutionary processes where range dynamics and niche shifts interact in a novel physical space and/or environment, with scale playing a major role. Obligate symbionts (i.e. organisms permanently living on hosts) differ from free-living organisms in that they depend on strong biotic interactions with their hosts which alter their niche and spatial dynamics. A symbiotic lifestyle modifies organism–environment relationships across levels of organisation, from individuals to geographical ranges. These changes influence how symbionts experience colonisation and, by extension, range expansion. Here, we investigate the potential implications of a symbiotic…

0106 biological sciencesBiotopeRange (biology)Enemy releaseNichePhoresyMetapopulationBiology010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesHost switchingAnimalsSymbiosisEcosystem030304 developmental biologyDemography0303 health sciencesObligateHost (biology)EcologyBiological EvolutionNiche constructionSymbiont organisation levelsEcological fittingBiological dispersalMetapopulationNiche constructionEnvironmental stabilityGeneral Agricultural and Biological SciencesEcological fittingColonisation processBiological reviews of the Cambridge Philosophical SocietyXII. REFERENCES
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Epizoic Algae Distribution on the Carapace and Plastron of the European Pond Turtle (Emys orbicularis, Linnaeus, 1758): A Study from the Camargue, Fr…

2016

12 pages; International audience; We investigated epizoic algal assemblages on the shell of European pond turtles (Emys orbicularis) during two years (2013–2014). A total of 60 Emys orbicularis were captured in the three shallow Mediterranean wetlands located in Camargue. Epizoic algae on the plastron (below the shell) and carapace (above the shell) were sampled, identified and counted. Seventy-seven epizoic algal species were identified on the carapace and plastron and comprised in 51 Bacillariophyta, 11 Chlorophyta, 7 Cyanophyta, 6 Euglenophyta, 1 Dinophyta and1Xanthophyta taxa. Our findings indicated a distinct distribution of epizoic algae according to taxonomical group density; Chlorop…

0106 biological sciencesEmys orbicularisepibiontesCamarguePlant ScienceChlorophytaAquatic Sciencemarais temporairesEpizoic algae010603 evolutionary biology01 natural scienceslaw.inventionAlgaeGenuslaw[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/Symbiosis14. Life underwaterCarapaceTurtle (robot)Ecology Evolution Behavior and SystematicsVaucheria[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyAlgues épizoiquesbiologyEmys orbicularisEcology010604 marine biology & hydrobiology15. Life on landbiology.organism_classificationplastronTaxonEpibiontsdossièretemporary wetland[SDE.BE]Environmental Sciences/Biodiversity and Ecologycarapace[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisCryptogamie, Algologie
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No exception to the rule: Candidatus Portiera aleyrodidarum cell wall revisited

2014

International audience; Many insect endosymbionts described so far are gram-negative bacteria. Primary endosymbionts are obligatory bacteria usually harboured by insects inside vacuoles in specialized cells called bacteriocytes. This combination produces a typical three-membrane system with one membrane derived from the insect vacuole and the other two from the bacterial gram-negative cell envelope, composed by the cell wall (the outer membrane plus the periplasmic space) and the plasma membrane (the inner membrane). For the last 21 years, the primary endosymbiont of whiteflies 'Candidatus Portiera aleyrodidarum' was considered an exception to this rule. Previous works stated that only two …

0106 biological sciencesGram-negative bacteriacell envelopeCandidatus Carsonella ruddii[SDV]Life Sciences [q-bio]Bemisia tabaci endosymbiont01 natural sciencesMicrobiologyMicrobiologyHemipteraCell membrane03 medical and health sciencesMicroscopy Electron TransmissionCell WallGeneticsmedicineAnimalsInner membraneMolecular Biology030304 developmental biology0303 health sciencesbiologyfungiPeriplasmic spacebiochemical phenomena metabolism and nutritionbiology.organism_classificationHalomonadaceaemedicine.anatomical_structureGenes Bacterialendosymbiont membranesCandidatusbacteriaCell envelopeBacterial outer membrane010606 plant biology & botany
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Genome reduction and potential metabolic complementation of the dual endosymbionts in the whitefly Bemisia tabaci

2015

Background The whitefly Bemisia tabaci is an important agricultural pest with global distribution. This phloem-sap feeder harbors a primary symbiont, “Candidatus Portiera aleyrodidarum”, which compensates for the deficient nutritional composition of its food sources, and a variety of secondary symbionts. Interestingly, all of these secondary symbionts are found in co-localization with the primary symbiont within the same bacteriocytes, which should favor the evolution of strong interactions between symbionts. Results In this paper, we analyzed the genome sequences of the primary symbiont Portiera and of the secondary symbiont Hamiltonella in the B. tabaci Mediterranean (MED) species in orde…

0106 biological sciencesHamiltonellaCandidatus Portiera aleyrodidarum[SDV]Life Sciences [q-bio]Molecular Sequence DataWhiteflyPortiera010603 evolutionary biology01 natural sciencesGenomeHemiptera03 medical and health sciencesMetabolic complementationSymbiosisEnterobacteriaceaeBotanyGeneticsAnimalsAmino AcidsSymbiosisIn Situ Hybridization Fluorescence030304 developmental biology2. Zero hungerGenetics0303 health sciencesEndosymbiontGenomebiologyfungifood and beveragesHigh-Throughput Nucleotide SequencingDNASequence Analysis DNAVitaminsbiochemical phenomena metabolism and nutritionbiology.organism_classificationEnterobacteriaceaeHemipteraWhiteflyComplementationHalomonadaceaeGlobal distribution[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM]Genome BacterialMetabolic Networks and PathwaysBiotechnologyResearch ArticleBMC Genomics
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Parasitic outbreak of the copepod Balaenophilus manatorum in neonate loggerhead sea turtles (Caretta caretta) from a head-starting program

2017

Abstract Background Diseases associated to external parasitosis are scarcely reported in sea turtles. During the last decades several organism have been documented as a part of normal epibiont community connected to sea turtles. The copepod Balaenophilus manatorum has been cited as a part of epibiont fauna with some concern about its parasitic capacity. This study serves three purposes, i.e. (i) it sheds light on the type of life style that B. manatorum has developed with its hosts, particularly turtles; (ii) it makes a cautionary note of the potential health risks associated with B. manatorum in sea turtles under captivity conditions and in the wild, and (iii) it provides data on effective…

0106 biological sciencesMaleConservation of Natural Resources040301 veterinary sciencesEctoparasiteFaunaZoologyCaptivityParasitic infestation010603 evolutionary biology01 natural sciencesLoggerhead sea turtleHead-startingDisease Outbreaks0403 veterinary scienceCopepodaAnimalsCarapaceSkin Diseases ParasiticBalaenophilus manatorumEpibiontHatchlingCaretta carettalcsh:Veterinary medicineGeneral VeterinarybiologyOutbreak04 agricultural and veterinary sciencesGeneral MedicineSea turtlebiology.organism_classificationTurtlesFisherySea turtleSpainlcsh:SF600-1100FemaleCopepodResearch ArticleBMC Veterinary Research
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Plant-phenotypic changes induced by parasitoid ichnoviruses enhance the performance of both unparasitized and parasitized caterpillars

2021

Early Access; International audience; There is increasing awareness that interactions between plants and insects can be mediated by microbial symbionts. Nonetheless, evidence showing that symbionts associated with organisms beyond the second trophic level affect plant-insect interactions are restricted to a few cases belonging to parasitoid-associated bracoviruses. Insect parasitoids harbor a wide array of symbionts which, like bracoviruses, can be injected into their herbivorous hosts to manipulate their physiology and behavior. Yet, the function of these symbionts in plant-based trophic webs remains largely overlooked. Here we provide the first evidence of a parasitoid-associated symbiont…

0106 biological sciencesProteomics[SDV]Life Sciences [q-bio]Waspsplant-mediated species interactionsInsect01 natural sciencesParasitoidLaboratory of Entomologymedia_commonTrophic levelparasitoid-associated symbiont2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesparasitoid‐associated symbiontsbiologyfood and beveragesPE&RChost-parasitoid interaction[SDV] Life Sciences [q-bio][SDV.EE] Life Sciences [q-bio]/Ecology environmentLarvapolydnaviruseOriginal Articleplant‐mediated species interactionsBracovirusfood.ingredientmedia_common.quotation_subjectZoologyContext (language use)Ecological Interactions010603 evolutionary biologyplant-herbivore-microbe interactionsHost-Parasite Interactions03 medical and health sciencesfoodplant-herbivore-microbe interactionGeneticsAnimalsHerbivoryCaterpillarplant‐herbivore‐microbe interactionsEcology Evolution Behavior and Systematics030304 developmental biologyHerbivorefungiOriginal Articlesbiology.organism_classificationLaboratorium voor EntomologiepolydnavirusesPolydnaviridaeparasitoid-associated symbiontsIchnovirusEPShost‐parasitoid interactionplant-mediated species interaction
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Thallus Growth Stage and Geographic Origin Shape Microalgal Diversity in Ramalina farinacea Lichen Holobionts

2021

Lichen symbioses are microecosystems hosting many other living organisms besides the two major lichen symbionts (i.e., lichenized fungi [the mycobiont] and green microalgae or cyanobacteria [the photobiont]). Recent investigations evidenced that other fungi, non-photosynthetic bacteria, and microalgae co-inhabit within the lichen thalli, but their diversity and their roles are still underinvestigated. Here we present an ad hoc stratified sampling design and in-depth Illumina paired-end metabarcoding approach to explore microalgal diversity in lichen thalli of the model species Ramalina farinacea from different ecologies. Lichen thalli were surveyed according to three different sizes, and di…

0106 biological sciencesTrebouxiaCyanobacteriasymbiosimycobiontLichensmedia_common.quotation_subjectLichenPlant ScienceAquatic Sciencehigh-throughput sequencing; metabarcoding; mycobiont; photobiont; symbiosis; Trebouxia; Symbiosis; Ascomycota; Chlorophyta; Lichens; Microalgae010603 evolutionary biology01 natural sciencesRamalina farinaceaSymbiosisAscomycotaChlorophytaBotanyMicroalgaeLichenSymbiosismedia_commonbiology010604 marine biology & hydrobiologyhigh-throughput sequencingbiology.organism_classificationThallusHabitatmetabarcodingTrebouxiaphotobiontDiversity (politics)
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Responses of above- and below-ground fungal symbionts to cessation of mowing in subalpine grassland

2017

Abstract The cessation of mowing in subalpine grasslands promotes the dominance of Festuca paniculata leading to the reduction in plant diversity. Moreover, it affects positively the abundance of Epichloe sp. inhabiting F. paniculata leaves and negatively the soil density of arbuscular mycorrhizal fungi (AMF). We explored how the cessation of mowing influences root AMF communities in F. paniculata and the neighboring plants, and Epichloe sp alkaloids. Thirteen AMF operational taxonomical units were found. The neighboring plants affected positively the abundances of Aalpin and GLOM_7 whereas the interaction plant/management type influenced significantly Claroide_1 , GLOM_1 and GLOM_7 . The N…

0106 biological sciencesprairie alpine[SDV]Life Sciences [q-bio]alpine grasslandsPlant ScienceBiologychampignon mycorhizien010603 evolutionary biology01 natural sciencesEndophyteGrasslandEpichloe sp.BotanyFestuca paniculataDominance (ecology)symbioteEcology Evolution Behavior and SystematicsArbuscular mycorrhizal fungal communityPlant diversity2. Zero hungergeographygeography.geographical_feature_categoryEcology[ SDV ] Life Sciences [q-bio]Ecological ModelingEndophyte fungi15. Life on landbiology.organism_classificationBulk densityGrassland dynamicssymbiontMontane ecologychampignon endophyte010606 plant biology & botany
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Beyond cells – The virome in the human holobiont

2019

Viromics, or viral metagenomics, is a relatively new and burgeoning field of research that studies the complete collection of viruses forming part of the microbiota in any given niche. It has strong foundations rooted in over a century of discoveries in the field of virology and recent advances in molecular biology and sequencing technologies. Historically, most studies have deconstructed the concept of viruses into a simplified perception of viral agents as mere pathogens, which demerits the scope of large-scale viromic analyses. Viruses are, in fact, much more than regular parasites. They are by far the most dynamic and abundant entity and the greatest killers on the planet, as well as th…

0209 industrial biotechnologyViral metagenomicsHistorybacteriophagesdatabases02 engineering and technologyReviewBiochemistry Genetics and Molecular Biology (miscellaneous)MicrobiologyApplied Microbiology and BiotechnologyGenetic engineeringtaxonomy020901 industrial engineering & automationVirology0202 electrical engineering electronic engineering information engineeringGeneticsmicrobiotaHuman viromeMolecular Biologylcsh:QH301-705.5020208 electrical & electronic engineeringEnvironmental ethicsCell BiologyHolobiontlcsh:Biology (General)MetagenomicsViral studiesParasitologyviral metagenomicsMicrobial Cell
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Unity Makes Strength: A Review on Mutualistic Symbiosis in Representative Insect Clades

2019

Settled on the foundations laid by zoologists and embryologists more than a century ago, the study of symbiosis between prokaryotes and eukaryotes is an expanding field. In this review, we present several models of insect–bacteria symbioses that allow for the detangling of most known features of this distinctive way of living, using a combination of very diverse screening approaches, including molecular, microscopic, and genomic techniques. With the increasing the amount of endosymbiotic bacteria genomes available, it has been possible to develop evolutionary models explaining the changes undergone by these bacteria in their adaptation to the intracellular host environment. The establishmen…

0301 basic medicine<i>Buchnera</i>Sulcia030106 microbiologyPopulationminimal genomesSymbiotic replacementconsortium<i>Tremblaya</i>Reviewsymbiotic replacementPrimary endosymbiontGenomeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesMinimal genomesBuchneraSymbiosisgenome-reduction syndromelcsh:ScienceCladeeducationEcology Evolution Behavior and Systematicseducation.field_of_studyendosymbiosisEndosymbiosisEndosymbiosisbiologyHost (biology)secondary endosymbiontPaleontologyprimary endosymbiontTremblayaGenome-reduction syndromebiology.organism_classificationSecondary endosymbiont030104 developmental biology<i>Sulcia</i>Space and Planetary ScienceEvolutionary biologylcsh:QAdaptationBuchneraConsortiumLife
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