Search results for "Metatranscriptomics"

showing 5 items of 5 documents

Linking extreme seasonality and gene expression in arctic marine protists

2021

ABSTRACTAt high latitudes, strong seasonal differences in light availability affect marine organisms and restrict the timing of ecosystem processes. Marine protists are key players in Arctic aquatic ecosystems, yet little is known about their ecological roles over yearly cycles. This is especially true for the dark polar night period, which up until recently was assumed to be devoid of biological activity. A 12 million transcripts catalogue was built from 0.45-10 μm protist assemblages sampled over 13 months in a time series station in an arctic fjord in Svalbard. Community gene expression was correlated with seasonality, with light as the main driving factor. Transcript diversity and evenn…

0106 biological sciencesClimate changemicrobial eukaryotesBiologyunicellular eukaryotesmedicine.disease_cause01 natural sciences03 medical and health sciencespolar daymedicineEcosystem14. Life underwater030304 developmental biology[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesmetatranscriptomicsPolar nightpolar nightEcology010604 marine biology & hydrobiologyAquatic ecosystemProtistSeasonalitymedicine.disease[SDV.BIBS]Life Sciences [q-bio]/Quantitative Methods [q-bio.QM]Arctic13. Climate actionSpecies evennesstime seriesgeographic locations
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Metabolic adaptation in the human gut microbiota during pregnancy and the first year of life

2018

Abstract Background The relationship between the gut microbiome and the human host is dynamic and we may expect adjustments in microbiome function if host physiology changes. Metatranscriptomic approaches should be key in unraveling how such adjustments occur. Methods We employ metatranscriptomic sequencing analyses to study gene expression in the gut microbiota of infants through their first year of life, and of their mothers days before delivery and one year afterwards. Findings In infants, hallmarks of aerobic metabolism disappear from the microbial metatranscriptome as development proceeds, while the expression of functions related to carbohydrate transport and metabolism increases and …

AdultMale0301 basic medicineResearch paperCarbohydrate transportPregnancy Trimester ThirdPhysiologyFirst year of lifeButyrateGut floraGeneral Biochemistry Genetics and Molecular BiologyFeces03 medical and health sciences0302 clinical medicineBacterial ProteinsPregnancymedicineHumansGutMicrobiomeMetatranscriptomicsPregnancyBacteriabiologySequence Analysis RNAGene Expression ProfilingMicrobiotaInfant NewbornInfantGene Expression Regulation BacterialGeneral MedicineMetabolismLipid Metabolismbiology.organism_classificationmedicine.diseaseIntestinal epitheliumGastrointestinal MicrobiomeButyratesMetabolism030104 developmental biology030220 oncology & carcinogenesisFemaleMaternal AgeEBioMedicine
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Metagenomics of human microbiome: beyond 16s rDNA.

2012

Clin Microbiol Infect 2012; 18 (Suppl. 4): 4749 Abstract The gut microbiota presents a symbiotic relationship with the human host playing a beneficial role in human health. Since its establishment, the bacterial community is subjected to the influence of many different factors that shape its composition within each individual. However, an important convergence is observed at functional level in the gut microbiota. A metatranscriptomic study of healthy individuals showed homogeneity in the composition of the active microbiota that increased further at functional level.

Microbiology (medical)intestinal microbiotametabolic functionsBiologyGut floraevolutionary developmentdigestive systemDNA RibosomalHuman healthRNA Ribosomal 16SEpigenetic landscapeHumansmetatranscriptomicsEcologyHuman microbiomeGeneral MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationInfectious DiseasesEvolutionary biologyMetagenomicsHealthy individualsMetagenomeMetagenomicsTranscriptomeClinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases
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Omics approaches to study the oral microbiome

2015

Introducción La visión clásica de los microorganismos como agentes infecciosos ha propiciado que se consideren como meros agentes causales de enfermedades. Sin embargo, la larga historia de coexistencia entre microorganismos y los seres humanos, ha hecho que ambos se hayan adaptado mutuamente y coevolucionen (Dubos et al. 1965, McFall-Ngai 2002)⁠. De hecho, en el cuerpo humano habitan 1014 células bacterianas, un orden de magnitud más que células humanas (Savage 1977)⁠. Entre los beneficios que la microbiota aporta, están su contribución a digerir alimentos y a aportar nutrientes, regulación del metabolismo, maduración del sistema inmune, etc. Por ello, hoy en día las enfermedades de origen…

Oral MicrobiologyMetaproteomicsUNESCO::CIENCIAS DE LA VIDA::Microbiología ::Metabolismo bacterianoDental cariesMetagenomics:CIENCIAS DE LA VIDA::Biología molecular ::Biología molecular de microorganismos [UNESCO]UNESCO::CIENCIAS DE LA VIDA::Biología molecular ::Biología molecular de microorganismos:CIENCIAS DE LA VIDA::Microbiología ::Metabolismo bacteriano [UNESCO]Metatranscriptomics
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Variability of the human gut microbiota in space, time, and associated with the irritable bowel syndrome

2013

Esta tesis doctoral se centra en el estudio de una de las comunidades microbianas más complejas y de mayor interés biomédico: la microbiota asociada al intestino distal de humanos. El objetivo principal ha sido estudiar las alteraciones potenciales de la microbiota intestinal en relación con el síndrome del intestino irritable (SII), el desorden funcional del tracto gastrointestinal más común en sociedades occidentales. Nuestra aproximación forma parte de una visión actual sobre las relaciones entre microorganismos y hospedadores que trasciende la clásica y estrecha mirada sobre patógenos concretos y enfermedades infecciosas y la desplaza hacia una concepción más de conjunto, que valora los…

irritable bowel syndromeobesitymetagenomics:CIENCIAS DE LA VIDA::Simbiosis [UNESCO]metatranscriptomicsUNESCO::CIENCIAS DE LA VIDA::Microbiología::OtrasUNESCO::CIENCIAS DE LA VIDA::SimbiosisUNESCO::CIENCIAS DE LA VIDA::Genética::Otrascolonic mucosatemporal variationmicrobiota:CIENCIAS DE LA VIDA::Microbiología::Otras [UNESCO]:CIENCIAS DE LA VIDA::Genética::Otras [UNESCO]16S rRNA genefaeceshuman gut
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