Search results for "Clonality"

showing 7 items of 7 documents

Glomeromycotina: what is a species and why should we care?

2018

International audience; A workshop at the recent International Conference on Mycorrhiza was focused on species recognition in Glomeromycotina and parts of their basic biology that define species. The workshop was motivated by the paradigm-shifting evidence derived from genomic data for sex and for the lack of heterokaryosis, and by published exchanges in Science that were based on different species concepts and have led to differing views of dispersal and endemism in these fungi. Although a lively discussion ensued, there was general agreement that species recognition in the group is in need of more attention, and that many basic assumptions about the biology of these important fungi includ…

0106 biological sciences0301 basic medicinePhysiologyGenomic data[SDV]Life Sciences [q-bio]educationarbuscular mycorrhizal fungiclonalityPlant ScienceArbuscular mycorrhizal fungi01 natural sciences03 medical and health sciencesSpecies Specificityspecies recognitionSimilarity (psychology)Clonal reproductionsex[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyEndemismGlomeromycotaPhylogenyheterokaryosisGlomeromycotina030104 developmental biologyGeographyEvolutionary biology[SDE]Environmental SciencesBiological dispersal010606 plant biology & botany
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A practical method for barcoding and size-trimming PCR templates for amplicon sequencing

2016

Sample barcoding facilitates the analysis of tens or even hundreds of samples in a single next-generation sequencing (NGS) run, but more efficient methods are needed for high-throughput barcoding and size-trimming of long PCR products. Here we present a two-step PCR approach for barcoding followed by pool shearing, adapter ligation, and 5′ end selection for trimming sets of DNA templates of any size. Our new trimming method offers clear benefits for phylogenetic studies, since targeting exactly the same region maximizes the alignment and enables the use of operational taxonomic unit (OTU)-based algorithms.

0301 basic medicineOperational taxonomic unitComputer science030106 microbiologyLong pcrComputational biologyPolymerase Chain ReactionGeneral Biochemistry Genetics and Molecular BiologyDNA sequencinglaw.invention03 medical and health scienceslawDNA Barcoding TaxonomicGenomic libraryligationPolymerase chain reactionGene Libraryta1184ta1182High-Throughput Nucleotide SequencingDNAMolecular biologyprimer030104 developmental biologyTemplatePCRpolyclonalityAmplicon sequencingTrimmingnext-generation sequencingAlgorithmsBiotechnology
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T-Cell Lymphoma Clonality by Copy Number Variation Analysis of T-Cell Receptor Genes

2021

Simple Summary T-cells defend the human body from pathogenic invasion via specific recognition by T-cell receptors (TCRs). The TCR genes undergo recombination (rearrangement) in a myriad of possible ways to generate different TCRs that can recognize a wide diversity of foreign antigens. However, in patients with T-cell lymphoma (TCL), a particular T-cell becomes malignant and proliferates, resulting in a population of genetically identical cells with same TCR rearrangement pattern. To help diagnose patients with TCL, a polymerase chain reaction (PCR)-based assay is currently used to determine if neoplastic cells in patient samples are of T-cell origin and bear identical (monoclonal) TCR rea…

0301 basic medicineclone (Java method)Cancer ResearchclonalityBiologylcsh:RC254-282Article03 medical and health sciences0302 clinical medicinemedicineT-cell lymphomaT-cell receptorCopy-number variationcopy number variation analysisGeneWhole genome sequencingwhole genome sequencingT-cell receptorlcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.diseaseMolecular biology030104 developmental biologyOncology030220 oncology & carcinogenesisT-Cell Receptor GeneMonoclonalT-cell lymphomaClonality Copy number variation analysis T-cell lymphoma T-cell receptor Whole genome sequencingCancers
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Carbapenem-Susceptible OXA-23-Producing Proteus mirabilis in the French Community

2019

International audience; Nineteen Proteus mirabilis isolates producing the carbapenemase OXA-23 were recovered over a 2-year period in 19 French hospitalized patients, of whom 12 had community onset infections. The isolates exhibited a slightly reduced susceptibility to carbapenems. Whole-genome analysis revealed that all 19 isolates formed a cluster compared to 149 other P. mirabilis isolates. Because of its susceptibility to carbapenems, this clone may be misidentified as a penicillinase producer while it constitutes a reservoir of the OXA-23-encoding gene in the community.

CarbapenemHospitalized patientsspreadclonalityMicrobial Sensitivity Testsbeta-LactamasesEpidemiology and SurveillanceMicrobiology03 medical and health sciencescarbapenemasemedicinepolycyclic compoundsHumansPharmacology (medical)Proteus mirabilis030304 developmental biologyCommunity onsetPharmacology0303 health sciencesbiologyOXA-23030306 microbiologybiochemical phenomena metabolism and nutritionbiology.organism_classificationProteus mirabilisAnti-Bacterial AgentsInfectious DiseasesReduced susceptibility[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyCarbapenemsbacteriaFranceProteus Infectionsmedicine.drug
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TCR Clonality and Genomic Instability Signatures as Prognostic Biomarkers in High Grade Serous Ovarian Cancer.

2021

Simple Summary High-grade serous ovarian carcinoma (HGSC) could be analyzed with a molecular stratification defined by different genomic instability signatures associated with specific mutational process and prognostic biomarkers. Immune infiltrate is known to be a robust biomarker in HGSC. We aimed to investigate immune parameters according to genomic instability signatures. We observed that homologous recombination deficiency positive, copy cumber variant signature 7 and TCR (T cells receptor) clonality are good prognostic biomarkers in HGSC. Combining TCR clonality and genomic instability signature or T cell infiltration improved the prognostic value compared to each variable taken alone…

Genome instabilityCancer ResearchTumor microenvironmentmedicine.medical_treatmentT cellT-cell receptorTCR clonalityNeoplasms. Tumors. Oncology. Including cancer and carcinogensbiomarkersImmunotherapyBiologyHGSCArticleSerous fluidImmune systemmedicine.anatomical_structureOncologyHRDmedicineCancer researchCopy-number variationprognosticRC254-282Cancers
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A multilocus sequence analysis scheme for characterization of Flavobacterium columnare isolates

2015

Background Columnaris disease caused by Flavobacterium columnare is a serious problem in aquaculture, annually causing large economic losses around the world. Despite considerable research, the molecular epidemiology of F. columnare remains poorly understood. Methods We investigated the population structure and spatiotemporal changes in the genetic diversity of F. columnare population in Finland by using a multilocus sequence typing (MLST) and analysis (MLSA) based on DNA sequence variation within six housekeeping genes. A total of 83 strains of F. columnare were collected from eight different areas located across the country between 2003 and 2012. Results Partial sequencing of six housekee…

Microbiology (medical)DNA BacterialGenotypeSequence analysisPopulationMolecular Sequence DataSequence HomologyclonalityAquacultureMLST/MLSA schemeMicrobiologyFlavobacteriumFlavobacterium columnareFish DiseasesFlavobacteriaceae InfectionsGenetic variationAnimalsCluster Analysis14. Life underwatereducationRecombination rateFinlandPhylogenyGeneticsrecombination rateClonalFrameGenetic diversityeducation.field_of_studyMolecular EpidemiologyGenes EssentialbiologyPhylogenetic treeMolecular epidemiologyGenetic VariationSequence Analysis DNAbiology.organism_classificationFlavobacterium columnareMultilocus sequence typingResearch ArticleClonalityMultilocus Sequence TypingBMC Microbiology
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DIVERSITE GENETIQUE ET PHENOLOGIE DE CYPERUS ESCULENTUS L. (CYPERACEAE) POUR UNE GESTION INTEGREE DE L'ESPECE DANS LES CULTURES DE HAUTE LANDE

2006

We studied the development, phenology, demography and genetic diversity of Cyperus esculentus (Cyperaceae), an invasive clonal perennial weed in the small-statured crops of Haute Lande, southwestern France. The goal was to understand its colonizing capacity and then make propositions for an integrated management of the species.The colonizing capacity of C. esculentus is linked to the huge subterranean vegetative development, with both foraging thanks to rhizomes and multiplication thanks to tubers. On the other hand, the local crop systems provide all the needs of the species: water, light and nutriments without competition by other weeds. Genetic analyses showed a low genetic diversity and…

[SDE] Environmental Sciences[SDV.EE]Life Sciences [q-bio]/Ecology environmentcrop systems[SDV]Life Sciences [q-bio]lutte intégréelutte intégrée.clonalityintegrated pest management.invasionCLONALITE[ SDV.EE ] Life Sciences [q-bio]/Ecology environment[SDV] Life Sciences [q-bio]Cyperus esculentusdynamique des populationsLUTTE INTEGREE[SDE]Environmental Sciencesvegetative multiplicationpopulation dynamicsmauvaise herbeclonalitémultiplication végétativesystème de cultureweed
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