Search results for "GENOMICS"

showing 10 items of 1255 documents

Analyzing Illumina Gene Expression Microarray Data from Different Tissues: Methodological Aspects of Data Analysis in the MetaXpress Consortium

2012

Microarray profiling of gene expression is widely applied in molecular biology and functional genomics. Experimental and technical variations make meta-analysis of different studies challenging. In a total of 3358 samples, all from German population-based cohorts, we investigated the effect of data preprocessing and the variability due to sample processing in whole blood cell and blood monocyte gene expression data, measured on the Illumina HumanHT-12 v3 BeadChip array. Gene expression signal intensities were similar after applying the log(2) or the variance-stabilizing transformation. In all cohorts, the first principal component (PC) explained more than 95% of the total variation. Technic…

MicroarraysArray ProcessingClinical Research DesignScienceGene ExpressionSingle-nucleotide polymorphismBiologyPolymorphism Single NucleotideMolecular Genetics03 medical and health sciencesEngineering0302 clinical medicineGenome Analysis ToolsGermanyWhite blood cellGene expressionGenome-Wide Association StudiesGeneticsmedicineHumansGenome SequencingStatistical MethodsBiologyOligonucleotide Array Sequence Analysis030304 developmental biologyWhole bloodGenetics0303 health sciencesMultidisciplinaryGene Expression ProfilingQRComputational BiologyReproducibility of ResultsHuman GeneticsGenomicsGene expression profilingMinor allele frequencymedicine.anatomical_structure030220 oncology & carcinogenesisSignal ProcessingMedicineRNA extractionFunctional genomicsResearch ArticlePLoS ONE
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Listeria monocytogenes Differential Transcriptome Analysis Reveals Temperature-Dependent Agr Regulation and Suggests Overlaps with Other Regulons

2012

Listeria monocytogenes is a ubiquitous, opportunistic pathogenic organism. Environmental adaptation requires constant regulation of gene expression. Among transcriptional regulators, AgrA is part of an auto-induction system. Temperature is an environmental cue critical for in vivo adaptation. In order to investigate how temperature may affect AgrA-dependent transcription, we compared the transcriptomes of the parental strain L. monocytogenes EGD-e and its Delta agrA mutant at the saprophytic temperature of 25 degrees C and in vivo temperature of 37 degrees C. Variations of transcriptome were higher at 37 degrees C than at 25 degrees C. Results suggested that AgrA may be involved in the regu…

MicroarraysOperonMutantmedicine.disease_causeTranscriptomesTranscriptomeMolecular Cell BiologyTranscriptional regulationCluster AnalysisAmino AcidsCellular Stress ResponsesGeneticsRegulation of gene expression0303 health sciencesMultidisciplinaryQRTemperatureSalt ToleranceGenomicsPlanktonFunctional GenomicsBacterial Pathogens[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyMedicineResearch Articleagr-alisteria monocytogenes;pathogenic organism;transcriptome;temperature;agr-aScienceSigma FactorBiologyRegulonMicrobiologyMicrobial Ecology03 medical and health sciencesListeria monocytogenes[ SDV.SA.AGRO ] Life Sciences [q-bio]/Agricultural sciences/AgronomyGenome Analysis ToolsmedicinePathogenic organismGene SilencingBiology030304 developmental biologyGram Positive[ SDV ] Life Sciences [q-bio]030306 microbiologyGene Expression ProfilingComputational BiologyBiological TransportGene Expression Regulation BacterialListeria monocytogenesGene expression profilingRegulonBiofilmsTranscriptomelisteria monocytogènesGene DeletionTranscription Factors
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A New Method for Extracting Skin Microbes Allows Metagenomic Analysis of Whole-Deep Skin

2013

In the last decade, an extensive effort has been made to characterize the human microbiota, due to its clinical and economic interests. However, a metagenomic approach to the skin microbiota is hampered by the high proportion of host DNA that is recovered. In contrast with the burgeoning field of gut metagenomics, skin metagenomics has been hindered by the absence of an efficient method to avoid sequencing the host DNA. We present here a method for recovering microbial DNA from skin samples, based on a combination of molecular techniques. We have applied this method to mouse skin, and have validated it by standard, quantitative PCR and amplicon sequencing of 16S rRNA. The taxonomic diversit…

Microbial DNAScienceComputational biologyBiologyPolymerase Chain ReactionGTP Phosphohydrolaseslaw.inventionMicelawRNA Ribosomal 16SPell -- MicrobiologiaAnimalsHumansMicrobiomePhylogenyPolymerase chain reactionSkinGeneticsGenètica bacterianaMultidisciplinaryBacteriaintegumentary systemMicrobiotaQRBacterial taxonomyHuman microbiomeDNADNA extractionMice Inbred C57BLMetagenomicsEarth Microbiome ProjectMedicineMetagenomicsResearch ArticleGensPLoS ONE
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Recentrifuge

2019

Robust comparative analysis and contamination removal for metagenomics.

Microbial ecologyMetagenomicsMetagenomic sequencing
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Metagenomics of the Mucosal Microbiota of European Eels

2014

ABSTRACT European eels are an economically important and threatened species that are prone to rapid collapse in farm conditions. Using metagenomics, we show that the eel mucosal microbiota has specific features distinguishing it from the surrounding aquatic community. This is a first step in dissecting the resident microbiota of this critical barrier that may have implications for maintenance of healthy eel populations.

Microbiologia marinaendocrine systemanimal structuresMetagenomicsEcologyThreatened speciesGeneticsMicrobiologiaProkaryotesBiologyEcologia marinaMolecular BiologyGenome Announcements
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Past, Present, and Future of Gastrointestinal Microbiota Research in Cats

2020

The relationship between microbial community and host has profound effects on the health of animals. A balanced gastrointestinal (GI) microbial population provides nutritional and metabolic benefits to its host, regulates the immune system and various signaling molecules, protects the intestine from pathogen invasion, and promotes a healthy intestinal structure and an optimal intestinal function. With the fast development of next-generation sequencing, molecular techniques have become standard tools for microbiota research, having been used to demonstrate the complex intestinal ecosystem. Similarly to other mammals, the vast majority of GI microbiota in cats (over 99%) is composed of the pr…

Microbiology (medical)Agriculture and Food SciencesDOMESTIC CATFirmicutesPopulationlcsh:QR1-502PROTEINmicrobiomeDiseaseReviewGut floraMicrobiologylcsh:Microbiology03 medical and health sciencesImmunityINTESTINAL MICROBIOTAMicrobiomeBACTERIAL-FLORAfelineBacterial phylaeducation030304 developmental biology0303 health scienceseducation.field_of_studyHEALTHY CATSbiology030306 microbiologyGUT MICROBIOTAGENE-CENTRIC METAGENOMICSbiology.organism_classificationCHAIN FATTY-ACIDSImmunologyFECAL MICROBIOTAgastrointestinal tractProteobacteriaDIETARY SUPPLEMENTATIONnutrition and diseasesmolecular techniquesFrontiers in Microbiology
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The link between independent acquisition of intracellular gamma-endosymbionts and concerted evolution in Tremblaya princeps

2015

Many insect species establish mutualistic symbiosis with intracellular bacteria that complement their unbalanced diets. The betaproteobacterium "Candidatus Tremblaya" maintains an ancient symbiosis with mealybugs (Hemiptera: Pseudococcidae), which are classified in subfamilies Phenacoccinae and Pseudococcinae. Most Phenacoccinae mealybugs have "Candidatus Tremblaya phenacola" as their unique endosymbiont, while most Pseudococcinae mealybugs show a nested symbiosis (a bacterial symbiont placed inside another one) where every "Candidatus Tremblaya princeps" cell harbors several cells of a gammaproteobacterium. Genomic characterization of the endosymbiotic consortium from Planococcus citri, co…

Microbiology (medical)Comparative genomicsGeneticsmealybugsConcerted evolutionbiologyEndosymbiosisCandidatus Tremblayalcsh:QR1-502homologous recombinationbiochemical phenomena metabolism and nutritionbiology.organism_classificationGenomeMicrobiologyPseudococcus viburnilcsh:Microbiologynested endosymbiosisSymbiosisPlanococcus citriBotanyCandidatusconcerted evolutionOriginal ResearchFrontiers in Microbiology
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Replicating phages in the epidermal mucosa of the eel (Anguilla anguilla)

2015

In this work, we used the eel (Anguilla anguilla) as an animal model to test the hypothesis of Barr et al. (2013a,b) about the putative role of the epidermal mucosa as a phage enrichment layer. To this end, we analyzed the microbial content of the skin mucus of wild and farmed eels by using a metagenomic approach. We found a great abundance of replicating phage genomes (concatemers) in all the samples. They were assembled in four complete genomes of three Myovirus and one Podovirus. We also found evidences that ΦKZ and Podovirus phages could be part of the resident microbiota associated to the eel mucosal surface and persist on them over the time. Moreover, the viral abundance estimated by …

Microbiology (medical)Concatemereellcsh:QR1-502MicrobiologiaBiologyMicrobiologyGenomelcsh:MicrobiologyMicrobiologyMucosachemistry.chemical_compoundAnimal modelImmunityOriginal Research ArticleGeneticsInnate immune systemImmunityPeixosMucuschemistryMetagenomicsBacteris patògensPhageMetagenomicsFrontiers in Microbiology
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Mealybugs nested endosymbiosis: going into the 'matryoshka' system in Planococcus citri in depth.

2013

Abstract Background In all branches of life there are plenty of symbiotic associations. Insects are particularly well suited to establishing intracellular symbiosis with bacteria, providing them with metabolic capabilities they lack. Essential primary endosymbionts can coexist with facultative secondary symbionts which can, eventually, establish metabolic complementation with the primary endosymbiont, becoming a co-primary. Usually, both endosymbionts maintain their cellular identity. An exception is the endosymbiosis found in mealybugs of the subfamily Pseudoccinae, such as Planococcus citri, with Moranella endobia located inside Tremblaya princeps. Results We report the genome sequencing …

Microbiology (medical)DNA BacterialSubfamilyMoranella endobiaMolecular Sequence DataMicrobiologyGenomeDNA sequencingBacterial geneticsMicrobiologyHemipteraEnterobacteriaceaePlanococcus citriNested endosymbiosisAnimalsSymbiosisTremblaya princepsOrganismComparative genomicsEndosymbiosisbiologyBetaproteobacteriaSequence Analysis DNAbiology.organism_classificationPlanococcus citriEvolutionary biologyfunctional complementationGenome BacterialResearch ArticleBMC microbiology
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Metagenomics Analysis Reveals an Extraordinary Inner Bacterial Diversity in Anisakids (Nematoda: Anisakidae) L3 Larvae

2021

This article belongs to the Special Issue Parasitic Diseases from Wild Animals with Emphasis in Zoonotic Infections.

Microbiology (medical)FirmicutesQH301-705.5AnisakidsZoologyMicrobiologyArticleActinobacteria03 medical and health sciencesDiversity indexVirologynematode-bacteria associationmicrobiotaBiology (General)030304 developmental biology0303 health sciencesbiology030306 microbiologyPhylumMicrobiotabiology.organism_classificationAnisakidaeMetagenomicsAquificaeanisakidsProteobacteriaNematode-bacteria associationMicroorganisms
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