Search results for "IOS"

showing 10 items of 8115 documents

Convergent Evolution in Intracellular Elements: Plasmids as Model Endosymbionts

2018

Endosymbionts are organisms that live inside the cells of other species. This lifestyle is ubiquitous across the tree of life and is featured by unicellular eukaryotes, prokaryotes, and by extrachromosomal genetic elements such as plasmids. Given that all of these elements dwell in the cytoplasm of their host cell, they should be subject to similar selection pressures. Here we show that strikingly similar features have evolved in both bacterial endosymbionts and plasmids. Since host and endosymbiont are often metabolically tightly intertwined, they are difficult to disentangle experimentally. We propose that using plasmids as tractable model systems can help to solve this problem, thus allo…

0301 basic medicineMicrobiology (medical)CytoplasmGenome evolutionGene Transfer HorizontalTree of life (biology)030106 microbiologyBiologyMicrobiologyEvolution Molecular03 medical and health sciencesPlasmidChromosome SegregationVirologyConvergent evolutionExtrachromosomal DNASymbiosisBacteriaHost Microbial InteractionsEndosymbiosisfungiEukaryotaInfectious DiseasesCytoplasmEvolutionary biologyMutationDNA Transposable ElementsEvolutionary ecologyPlasmidsTrends in Microbiology
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The macroecology of cancer incidences in humans is associated with large-scale assemblages of endemic infections.

2018

8 pages; International audience; It is now well supported that 20% of human cancers have an infectious causation (i.e., oncogenic agents). Accumulating evidence suggests that aside from this direct role, other infectious agents may also indirectly affect cancer epidemiology through interactions with the oncogenic agents within the wider infection community. Here, we address this hypothesis via analysis of large-scale global data to identify associations between human cancer incidence and assemblages of neglected infectious agents. We focus on a gradient of three widely-distributed cancers with an infectious cause: bladder (~2% of recorded cancer cases are due to Shistosoma haematobium), liv…

0301 basic medicineMicrobiology (medical)Endemic Diseases[SDV.CAN]Life Sciences [q-bio]/CancerMicrobiologyBiomesHelicobacter Infections[ SDV.CAN ] Life Sciences [q-bio]/Cancer03 medical and health sciencesSchistosomiasis haematobiaEnvironmental healthNeoplasmsPathogen-cancer interactionsEpidemiology of cancerGeneticsmedicine[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsHumansStomach cancerMolecular BiologyData miningEcology Evolution Behavior and SystematicsHuman cancer incidencesBladder cancerCancer preventionbiologyIncidenceCancerHelicobacter pyloriHepatitis Bmedicine.diseasebiology.organism_classificationHepatitis BHepatitis C3. Good health030104 developmental biologyInfectious DiseasesNeglected diseasesHost-Pathogen InteractionsFemalePublic HealthPublic health strategiesLiver cancer[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Functional Redundancy-Induced Stability of Gut Microbiota Subjected to Disturbance.

2016

The microbiota should be considered as just another component of the human epigenetic landscape. Thus, health is also a reflection of the diversity and composition of gut microbiota and its metabolic status. In defining host health, it remains unclear whether diversity is paramount, or whether greater weight is held by gut microbiota composition or mono- or multiple-functional capacity of the different taxa and the mechanisms involved. A network-biology approach may shed light on the key gut players acting to protect against, or promote, disorders or diseases. This could be achieved by integrating data on total and active species, proteins and molecules, and their association with host resp…

0301 basic medicineMicrobiology (medical)Gastrointestinal Diseases030106 microbiologyHost responseGut floradigestive systemMicrobiology03 medical and health sciencesVirologymedicineAnimalsHumansEpigeneticsbiologyEcologyFunctional redundancyGastrointestinal MicrobiomeBiodiversitybiology.organism_classificationmedicine.diseaseBiotaGastrointestinal MicrobiomeGastrointestinal Tract030104 developmental biologyInfectious DiseasesDisturbance (ecology)Evolutionary biologyDysbiosisTrends in microbiology
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Symbiont Acquisition and Replacement as a Source of Ecological Innovation

2017

Nutritional symbionts play a major role in the ecology and evolution of insects. The recent accumulation of knowledge on the identity, function, genomics, and phylogenetic relationships of insect-bacteria symbioses provides the opportunity to assess the effects of symbiont acquisitions and replacements on the shift into novel ecological niches and subsequent lineage diversification. The megadiverse insect order Hemiptera presents a particularly large diversity of symbiotic associations that has frequently undergone shifts in symbiont localization and identity, which have contributed to the exploitation of nutritionally imbalanced diets such as plant saps or vertebrate blood. Here we review …

0301 basic medicineMicrobiology (medical)GenomicsBiologyMicrobiologyEvolution MolecularHemiptera03 medical and health sciencesSymbiosisVirologybiology.animalAnimalsSymbiosisPhylogenyCoevolutionEcological nicheMutualism (biology)BacteriaPhylogenetic treeEcologyMicrobiotafungifood and beveragesVertebrateGenomicsAdaptation PhysiologicalBiological EvolutionGastrointestinal Microbiome030104 developmental biologyInfectious DiseasesEvolutionary ecologyGenome BacterialTrends in Microbiology
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Determinism and contingency shape metabolic complementation in an endosymbiotic consortium

2017

Bacterial endosymbionts and their insect hosts establish an intimate metabolic relationship. Bacteria offer a variety of essential nutrients to their hosts, whereas insect cells provide the necessary sources of matter and energy to their tiny metabolic allies. These nutritional complementations sustain themselves on a diversity of metabolite exchanges between the cell host and the reduced yet highly specialized bacterial metabolism-which, for instance, overproduces a small set of essential amino acids and vitamins. A well-known case of metabolic complementation is provided by the cedar aphid Cinara cedri that harbors two co-primary endosymbionts, Buchnera aphidicola BCc and Ca. Serratia sym…

0301 basic medicineMicrobiology (medical)In silicolcsh:QR1-502Metabolic networkGenomeMicrobiologylcsh:MicrobiologyMetabolic modelingStoichiometric analysis03 medical and health scienceschemistry.chemical_compoundBiosynthesisCross-feedingEndosymbiotic bacteriaOriginal ResearchGeneticsMetabolic evolutionbiologyBiochemistry and Molecular Biologybiology.organism_classificationComplementationMetabolic pathway030104 developmental biologychemistryBuchneraBacteriaBiokemi och molekylärbiologi
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Aerobic growth of Rhodococcus aetherivorans BCP1 using selected naphthenic acids as the sole carbon and energy sources

2018

Naphthenic acids (NAs) are an important group of toxic organic compounds naturally occurring in hydrocarbon deposits. This work shows that Rhodococcus aetherivorans BCP1 cells not only utilize a mixture of eight different NAs (8XNAs) for growth but they are also capable of marked degradation of two model NAs, cyclohexanecarboxylic acid (CHCA) and cyclopentanecarboxylic acid (CPCA) when supplied at concentrations from 50 to 500 mgL−1 . The growth curves of BCP1 on 8XNAs, CHCA, and CPCA showed an initial lag phase not present in growth on glucose, which presumably was related to the toxic effects of NAs on the cell membrane permeability. BCP1 cell adaptation responses that allowed survi…

0301 basic medicineMicrobiology (medical)Inclusion bodie030106 microbiologylcsh:QR1-502Settore BIO/19 - Microbiologia Generale7. Clean energyMicrobiologylcsh:Microbiology03 medical and health scienceschemistry.chemical_compoundBiosynthesisRhodococcus aetherivorans naphthenic acids stress response b-oxidation transmission electron microscopy fatty acids methyl esters inclusion bodiesnaphthenic acidsBeta oxidationchemistry.chemical_classificationbiologyStress responseRhodococcus aetherivoranNaphthenic acidCyclohexanecarboxylic acidbiology.organism_classificationRhodococcus aetherivoranschemistryBiochemistryFatty acids methyl esterβ-oxidationfatty acids methyl estersEnergy sourceRhodococcusBacteriaIntracellularTransmission electron microscopyPolyunsaturated fatty acid
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Time Series Analysis of the Microbiota of Children Suffering From Acute Infectious Diarrhea and Their Recovery After Treatment

2018

WOS: 000434952800001

0301 basic medicineMicrobiology (medical)Rotavirusmedicine.medical_specialtytemporal analysis030106 microbiologylcsh:QR1-502acute infectious diarrheaDiseaseGut floramedicine.disease_causeMicrobiologylcsh:Microbiologylaw.invention03 medical and health sciencesProbioticAcute infectious diarrhealawInternal medicineRotavirusmedicinemicrobiotaFecesOriginal Researchbiologybusiness.industryMicrobiotasystems biologyTemporal analysisbiology.organism_classificationmedicine.diseaseDiarrhea030104 developmental biologyrotavirusmedicine.symptombusinessSystems biologyDysbiosisSaccharomyces boulardiiFrontiers in Microbiology
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Genomic traits of Klebsiella oxytoca DSM 29614, an uncommon metal-nanoparticle producer strain isolated from acid mine drainages

2018

Background Klebsiella oxytoca DSM 29614 - isolated from acid mine drainages - grows anaerobically using Fe(III)-citrate as sole carbon and energy source, unlike other enterobacteria and K. oxytoca clinical isolates. The DSM 29614 strain is multi metal resistant and produces metal nanoparticles that are embedded in its very peculiar capsular exopolysaccharide. These metal nanoparticles were effective as antimicrobial and anticancer compounds, chemical catalysts and nano-fertilizers. Results The DSM 29614 strain genome was sequenced and analysed by a combination of in silico procedures. Comparative genomics, performed between 85 K. oxytoca representatives and K. oxytoca DSM 29614, revealed th…

0301 basic medicineMicrobiology (medical)SiderophoreCarbohydrate transportIronGenome Capsular exopolysaccharide Ferric-hydroxide gel Iron Metal resistance Metal nanoparticles030106 microbiologylcsh:QR1-502Ferric-hydroxide gelMetal nanoparticlesWastewaterCapsular exopolysaccharideSettore BIO/19 - Microbiologia GeneraleFerric CompoundsMicrobiologyCitric AcidMininglcsh:MicrobiologyMetal resistance03 medical and health sciencesAnaerobiosisGenome; Capsular Exopolysaccharide; Ferric-hydroxide Gel; Iron; Metal Resistance; Metal NanoparticlesPhylogenyComparative genomicschemistry.chemical_classificationGenomebiologyKlebsiella oxytocaKlebsiella oxytocaGenomicsbiology.organism_classificationAmino acid030104 developmental biologyBiochemistrychemistryProteomeCoenzyme transportEnergy sourceGenome BacterialMetal nanoparticleResearch Article
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To B or Not to B: Comparative Genomics Suggests Arsenophonus as a Source of B Vitamins in Whiteflies

2018

Insect lineages feeding on nutritionally restricted diets such as phloem sap, xylem sap, or blood, were able to diversify by acquiring bacterial species that complement lacking nutrients. These bacteria, considered obligate/primary endosymbionts, share a long evolutionary history with their hosts. In some cases, however, these endosymbionts are not able to fulfill all of their host's nutritional requirements, driving the acquisition of additional symbiotic species. Phloem-feeding members of the insect family Aleyrodidae (whiteflies) established an obligate relationship with Candidatus Portiera aleyrodidarum, which provides its hots with essential amino acids and carotenoids. In addition, ma…

0301 basic medicineMicrobiology (medical)food.ingredientPseudogeneRiboflavin[SDV]Life Sciences [q-bio]030106 microbiologyArsenophonuslcsh:QR1-502GenomeMicrobiologylcsh:Microbiology03 medical and health sciencesMetabolic complementationfooda section of the journal Frontiers in Microbiology whiteflywhiteflyriboflavinSymbiosisgenome reductionGeneticsComparative genomicsGenome reductionbiologyObligatefungiVitaminsbiochemical phenomena metabolism and nutritionbiology.organism_classificationvitaminsWhiteflysymbiosismetabolic complementationB vitamins030104 developmental biologyAleurodicus dispersusWolbachiaThis article was submitted to Evolutionary and Genomic MicrobiologyArsenophonusWolbachiaFrontiers in Microbiology
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Bacterial symbionts in Lepidoptera: Their diversity, transmission, and impact on the host

2018

The insect's microbiota is well acknowledged as a “hidden” player influencing essential insect traits. The gut microbiome of butterflies and moths (Lepidoptera) has been shown to be highly variable between and within species, resulting in a controversy on the functional relevance of gut microbes in this insect order. Here, we aim to (i) review current knowledge on the composition of gut microbial communities across Lepidoptera and (ii) elucidate the drivers of the variability in the lepidopteran gut microbiome and provide an overview on (iii) routes of transfer and (iv) the putative functions of microbes in Lepidoptera. To find out whether Lepidopterans possess a core gut microbiome, we com…

0301 basic medicineMicrobiology (medical)gut bacteriaanimal structuresmedia_common.quotation_subject030106 microbiology590lcsh:QR1-502Horizontal transferZoologySpiroplasmaMothReviewInsectGut floraMicrobiologylcsh:MicrobiologyLepidoptera genitalia03 medical and health sciencesendosymbiontsEndosymbiontsbutterflyMicrobiomematernal transfermothGut bacteriaSymbiosishorizontal transfermedia_commonButterflybiologyHost (biology)Intracellular parasiteMaternal transferfungibiology.organism_classificationBiosystematieksymbiosis030104 developmental biologyBiosystematicsWolbachiaEPS
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