Search results for "microbiota"

showing 10 items of 500 documents

Analysis of propionate‐degrading consortia from agricultural biogas plants

2016

Abstract In order to investigate the propionate‐degrading community of agricultural biogas plants, four propionate‐degrading consortia (Ap1a, N12, G12, and Wp2a) were established from different biogas plants which were fed with renewable resources. The consortia were cultivated in a batch for a period of 2–4 years and then analyzed in an 8‐week batch experiment for microbial succession during propionate degradation. Community shifts showed considerable propagation of Syntrophobacter sulfatireducens, Cryptanaerobacter sp./Pelotomaculum sp., and “Candidatus Cloacamonas sp.” in the course of decreasing propionate concentration. Methanogenic species belonged mainly to the genera Methanosarcina,…

0301 basic medicineDeltaproteobacteriafood.ingredient030106 microbiologyFirmicutesBiologyAcetatesMicrobiologyMethanosaeta03 medical and health sciencesfoodSyntrophyBiogasRNA Ribosomal 16SbiogaspropionatemethanogensOriginal Researchdegradationchemistry.chemical_classificationhomoacetogensWaste managementSewageMicrobiotaPelotomaculumMethanosarcinaMoorellabiology.organism_classificationQR1-502030104 developmental biologyMethanoculleusBiodegradation EnvironmentalchemistryEnvironmental chemistrysyntrophyMethanosarcinaPropionatecommunityPropionatesMethaneOxidation-ReductionHydrogenMicrobiologyOpen
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Environmental metabarcoding reveals contrasting microbial communities at two poplar phytomanagement sites

2016

The aim of the present study is to deepen the current understanding of the microbial communities at two poplar phytomanagement sites to reveal the environmental factors that drive the abundance, diversity and composition of microbial communities. A soil analysis revealed that the two soils displayed contrasting physico-chemical characteristics, with significant lower pH and higher Cd, Zn and Mn CaCl2-extractable fractions at Leforest site, compared with Pierrelaye site. The fungal and bacterial community profiles in the poplar roots and soils were assessed through Illumina MiSeq sequencing. Diversity indices and β-diversity measures illustrated that the root microbial communities were well …

0301 basic medicineEnvironmental EngineeringSoil test030106 microbiologyBiologyActinobacteria[ SDV.EE ] Life Sciences [q-bio]/Ecology environment03 medical and health sciencesDiversity indexMycorrhizaeBotanyEnvironmental ChemistryDominance (ecology)DNA Barcoding TaxonomicWaste Management and DisposalSoil MicrobiologyComputingMilieux_MISCELLANEOUS[SDV.EE]Life Sciences [q-bio]/Ecology environment2. Zero hungerAscomycotaBacteriaEcologyMicrobiotaAlphaproteobacteriaFungi15. Life on landbiology.organism_classificationPollutionWaste Disposal Facilities030104 developmental biologyBiodegradation EnvironmentalPopulusSoil waterFranceAcidobacteria
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Parasites, pathogens, and other symbionts of copepods.

2021

There is a large diversity of eukaryotic symbionts of copepods, dominated by epizootic protists such as ciliates, and metazoan parasites. Eukaryotic endoparasites, copepod-associated bacteria, and viruses are less well known, partly due to technical limitations. However, new molecular techniques, combined with a range of other approaches, provide a complementary toolkit for understanding the complete symbiome of copepods and how the symbiome relates to their ecological roles, relationships with other biota, and responses to environmental change. In this review we provide the most complete overview of the copepod symbiome to date, including microeukaryotes, metazoan parasites, bacteria, and …

0301 basic medicineEnvironmental changeRange (biology)030231 tropical medicineZoologyBiologyCopepoda03 medical and health sciences0302 clinical medicinemedicineAnimalsSymbiosisEpizooticEcosystemMicrobiotafungiDinoflagellateEukaryotaBiotamedicine.diseasebiology.organism_classification030104 developmental biologyInfectious DiseasesMicrosporidiaParasitologyhuman activitiesCopepodBacteriaTrends in parasitology
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Mining metagenomic whole genome sequences revealed subdominant but constant Lactobacillus population in the human gut microbiota

2016

The genus Lactobacillus includes over 215 species that colonize plants, foods, sewage and the gastrointestinal tract (GIT) of humans and animals. In the GIT, Lactobacillus population can be made by true inhabitants or by bacteria occasionally ingested with fermented or spoiled foods, or with probiotics. This study longitudinally surveyed Lactobacillus species and strains in the feces of a healthy subject through whole genome sequencing (WGS) data-mining, in order to identify members of the permanent or transient populations. In three time-points (0, 670 and 700 d), 58 different species were identified, 16 of them being retrieved for the first time in human feces. L. rhamnosus, L. ruminis, L…

0301 basic medicineEvolution030106 microbiologyPopulationGenomeMicrobiology03 medical and health sciencesBehavior and SystematicsLactobacillusHumansLongitudinal StudieseducationEcology Evolution Behavior and SystematicsFecesHuman fecesWhole genome sequencingeducation.field_of_studybiologyEcologyMicrobiotafood and beveragesbiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)Bacterial LoadEcology Evolution Behavior and Systematics; Agricultural and Biological Sciences (miscellaneous)Gastrointestinal TractLactobacillus030104 developmental biologyMetagenomicsMetagenomicsBacteria
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Towards Tailored Gut Microbiome-Based and Dietary Interventions for Promoting the Development and Maintenance of a Healthy Brain.

2021

Mental health is determined by a complex interplay between the Neurological Exposome and the Human Genome. Multiple genetic and non-genetic (exposome) factors interact early in life, modulating the risk of developing the most common complex neurodevelopmental disorders (NDDs), with potential long-term consequences on health. To date, the understating of the precise etiology underpinning these neurological alterations, and their clinical management pose a challenge. The crucial role played by diet and gut microbiota in brain development and functioning would indicate that modulating the gut-brain axis may help protect against the onset and progression of mental-health disorders. Some nutriti…

0301 basic medicineExposomePsychological interventionReviewGut floraBioinformaticsdigestive systemPediatricsRJ1-57003 medical and health sciences0302 clinical medicineMedicineHuman viromeMicrobiomeprecision nutritionviromebiologygut microbiotaneurodevelopmentbusiness.industrybiology.organism_classificationmedicine.diseaseMental healthGut microbiomegut bacterial microbiomepsychiatry and mental healthMalnutrition030104 developmental biologyPediatrics Perinatology and Child HealthGut microbiotabusinessdiet030217 neurology & neurosurgeryFrontiers in pediatrics
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Fatty Acids of Microbial Origin in the Perirenal Fat of Rats (Rattus norvegicus domestica) and Guinea Pigs (Cavia porcellus) Fed Various Diets.

2020

Guinea pigs are assumed to practice caecotrophy to a higher degree than rats. Studies from leporids suggest that through the practice of caecotrophy, hindgut fermenting species could build up microbial fatty acids (FA) in body tissues. We hypothesized that microbial FA would be detectable in the body tissue of guinea pigs and rats, and this to a higher degree in guinea pigs. Twenty-four rats and guinea pigs were fed with four different pelleted diets (lucerne-, meat-, meat-bone-, insect-based) in groups of six animals for 8 weeks. Perirenal adipose tissue differed in FA composition between the species in spite of the common diets. FA typically associated with microbial activity (saturated F…

0301 basic medicineFA10253 Department of Small Animals1303 BiochemistryRodentGuinea PigsCaviaAdipose tissuePerirenal fatBiochemistryGuinea pig1307 Cell Biology03 medical and health scienceschemistry.chemical_compoundAnimal scienceSpecies SpecificityRuminantbiology.animalCoprophagiaIsoAnimals2. Zero hunger030109 nutrition & dieteticsbiology630 AgricultureCaecotrophyalpha-Linolenic acidMicrobiotaOrganic ChemistryFatty AcidsHindgutCell BiologyRat.biology.organism_classificationGuinea pigAnimal FeedDietRats030104 developmental biologychemistryAdipose TissueDocosahexaenoic acidMicrobial fatty acids570 Life sciences; biology1605 Organic ChemistryLipidsReferences
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The gut microbiota of the wood-feeding termite Reticulitermes lucifugus (Isoptera; Rhinotermitidae)

2016

Termite gut is host to a complex microbial community consisting of prokaryotes, and in some cases flagellates, responsible for the degradation of lignocellulosic material. Here we report data concerning the analysis of the gut microbiota of Reticulitermes lucifugus (Rossi), a lower termite species that lives in underground environments and is widespread in Italy, where it causes damage to wood structures of historical and artistic monuments. A 16S rRNA gene clone library revealed that the R. lucifugus gut is colonized by members of five phyla in the domain Bacteria: Firmicutes (49 % of clones), Proteobacteria (24 %), Spirochaetes (14 %), the candidatus TG1 phylum (12 %), and Bacteroidetes (…

0301 basic medicineFirmicutesAerobic bacteria030106 microbiologySettore AGR/13 - Chimica AgrariaZoologyBacillusGut microbiotaSettore BIO/19 - Microbiologia GeneraleApplied Microbiology and BiotechnologyMicrobiology03 medical and health sciencesPaenibacillusCellulose degradation16S rDNATermite16S rDNA; Amplified ribosomal DNA restriction analysis (ARDRA); Cellulose degradation; Gut microbiota; Termites; Applied Microbiology and BiotechnologybiologyBacteroidetesbiology.organism_classificationSettore AGR/11 - Entomologia Generale E ApplicataAmplified ribosomal DNA restriction analysis (ARDRA)ProteobacteriaRhinotermitidaeBacteria
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Human milk and mucosa-associated disaccharides impact on cultured infant fecal microbiota

2020

Human milk oligosaccharides (HMOs) are a mixture of structurally diverse carbohydrates that contribute to shape a healthy gut microbiota composition. The great diversity of the HMOs structures does not allow the attribution of specific prebiotic characteristics to single milk oligosaccharides. We analyze here the utilization of four disaccharides, lacto-N-biose (LNB), galacto-N-biose (GNB), fucosyl-α1,3-GlcNAc (3FN) and fucosyl-α1,6-GlcNAc (6FN), that form part of HMOs and glycoprotein structures, by the infant fecal microbiota. LNB significantly increased the total levels of bifidobacteria and the species Bifidobacterium breve and Bifidobacterium bifidum. The Lactobacillus genus levels wer…

0301 basic medicineFormatesMolecular biologymedicine.medical_treatmentved/biology.organism_classification_rank.specieslcsh:MedicineMicrobiologiaGut floraAcetatesBifidobacterium breveDisaccharidesFecesfluids and secretionsFucosyl-α13-GlcNAcLactobacillusFood sciencelcsh:ScienceBifidobacterium2. Zero hungerClostridialesMultidisciplinaryBifidobacterium brevebiologyHuman milk oligosaccharidesfood and beveragesFucosyl-α16-GlcNAcEnterobacteriaceae3. Good healthDNA Bacterial030106 microbiologyGut microbiotaDisaccharidasesMicrobiologydigestive systemArticleAcetylglucosamine03 medical and health sciencesEnterobacteriaceaemedicineHumansLactic AcidGalacto-N-bioseBifidobacterium bifidumMilk Humanved/biologyPrebioticlcsh:RInfantbiology.organism_classificationLactobacilsGastrointestinal MicrobiomeLactobacillus030104 developmental biologyPrebioticslcsh:QFermentationBifidobacterium bifidumLacto-N-biose
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Uterine microbiome—low biomass and high expectations†

2018

AbstractThe existence of different bacterial communities throughout the female reproductive tract has challenged the traditional view of human fetal development as a sterile event. There is still no consensus on what physiological microbiota exists in the upper reproductive tract of the vast majority of women who are not in periods of infection or pregnancy, and the role of bacteria that colonize the upper reproductive tract in uterine diseases or pregnancy outcomes is not well established. Despite published studies and advances in uterine microbiome sequencing, some study aspects—such as study design, sampling method, DNA extraction, sequencing methods, downstream analysis, and assignment …

0301 basic medicineGenital Neoplasms Femalemedicine.medical_treatmentReproductive tractUterusPhysiologyBiology03 medical and health sciences0302 clinical medicinePregnancymedicineHumansBiomassPrecision MedicineUterine microbiomePregnancy outcomesPregnancy030219 obstetrics & reproductive medicineAssisted reproductive technologyMicrobiotaUterusFemale infertilityGenitalia FemaleCell BiologyGeneral Medicinemedicine.diseasePregnancy Complications030104 developmental biologymedicine.anatomical_structureReproductive MedicineHuman fetalFemaleGenital Diseases FemaleBiology of Reproduction
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Disentangling the effect of host genetics and gut microbiota on resistance to an intestinal parasite

2019

11 pages; International audience; Resistance to infection is a multifactorial trait, and recent work has suggested that the gut microbiota can also contribute to resistance. Here, we performed a fecal microbiota transplant to disentangle the contribution of the gut microbiota and host genetics as drivers of resistance to the intestinal nematode Heligmosomoides polygyrus. We transplanted the microbiota of a strain of mice (SJL), resistant to H. polygyrus, into a susceptible strain (CBA) and vice-versa. We predicted that if the microbiota shapes resistance to H. polygyrus, the FMT should reverse the pattern of resistance between the two host strains. The two host strains had different microbi…

0301 basic medicineHeligmosomoides polygyrusGut floramedicine.disease_causeFecal microbiota transplant0302 clinical medicinefluids and secretionsMESH: Fecal Microbiota TransplantationParasite hostingColonizationMESH: AnimalsMESH: Strongylida InfectionsDisease ResistanceGeneticsNematospiroides dubiusbiology[SDV.BA]Life Sciences [q-bio]/Animal biologyFecal Microbiota Transplantation3. Good healthInfectious DiseasesMESH: Nematospiroides dubiusGenetic Background030231 tropical medicineIntestinal parasiteHeterologousMice Inbred StrainsMESH: Disease ResistanceMESH: Host-Parasite InteractionsMESH: Mice Inbred Strainsdigestive systemMESH: Gastrointestinal MicrobiomeHost-Parasite Interactions03 medical and health sciencesImmunityparasitic diseasesmedicineAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyStrongylida InfectionsHost (biology)ImmunityLife history traitsMESH: Genetic Backgroundbiology.organism_classificationGastrointestinal MicrobiomeDisease Models Animalstomatognathic diseases030104 developmental biologyParasitologyHeligmosomoides polygyrusMESH: Disease Models Animal[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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