Search results for "Tree"

showing 10 items of 1841 documents

Reactome pathway analysis: a high-performance in-memory approach

2016

Reactome aims to provide bioinformatics tools for visualisation, interpretation and analysis of pathway knowledge to support basic research, genome analysis, modelling, systems biology and education. Pathway analysis methods have a broad range of applications in physiological and biomedical research; one of the main problems, from the analysis methods performance point of view, is the constantly increasing size of the data samples. Here, we present a new high-performance in-memory implementation of the well-established over-representation analysis method. To achieve the target, the over-representation analysis method is divided in four different steps and, for each of them, specific data st…

0301 basic medicineData structuresDatabases FactualPathway analysisComputer scienceInterface (Java)Systems biologycomputer.software_genreGenomeBiochemistry03 medical and health sciences0302 clinical medicineStructural BiologyNucleic AcidsHumansMolecular BiologyApplied MathematicsComputational BiologyProteinsPathway analysisComputer Science ApplicationsTree (data structure)030104 developmental biology030220 oncology & carcinogenesisGraph (abstract data type)Data miningOver-representation analysiscomputerAlgorithmsSoftwareBMC Bioinformatics
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Diversification of spatiotemporal expression and copy number variation of the echinoid hbox12/pmar1/micro1 multigene family

2017

Changes occurring during evolution in the cis-regulatory landscapes of individual members of multigene families might impart diversification in their spatiotemporal expression and function. The archetypal member of the echinoid hbox12/pmar1/micro1 family is hbox12-a, a homeobox-containing gene expressed exclusively by dorsal blastomeres, where it governs the dorsal/ventral gene regulatory network during embryogenesis of the sea urchin Paracentrotus lividus. Here we describe the inventory of the hbox12/pmar1/micro1 genes in P. lividus, highlighting that gene copy number variation occurs across individual sea urchins of the same species. We show that the various hbox12/pmar1/micro1 genes grou…

0301 basic medicineEvolutionary GeneticsEmbryologyGene regulatory networklcsh:MedicineGene ExpressionMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)Database and Informatics MethodsGene duplicationGene Regulatory NetworksCopy-number variationlcsh:ScienceSea urchinPhylogenyMultidisciplinarybiologyPhylogenetic treeMedicine (all)Genes HomeoboxGene Expression Regulation DevelopmentalAnimal ModelsGenomicsExperimental Organism SystemsMultigene FamilySequence AnalysisResearch ArticleEchinodermsDNA Copy Number VariationsBioinformaticsDNA transcriptionZoologySettore BIO/11 - Biologia MolecolareResearch and Analysis MethodsParacentrotus lividus03 medical and health sciencesSequence Motif Analysisbiology.animalGeneticsGene familyAnimalsGeneEvolutionary BiologyBiochemistry Genetics and Molecular Biology (all)lcsh:REmbryosOrganismsBiology and Life SciencesComputational Biologybiology.organism_classificationGenome AnalysisGenomic LibrariesInvertebrates030104 developmental biologyAgricultural and Biological Sciences (all)Evolutionary biologySea Urchinslcsh:QSequence AlignmentDevelopmental Biology
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Extraintestinal pathogenic Escherichia coli sequence type 131 H30-R and H30-Rx subclones in retail chicken meat, Italy

2016

Extraintestinal pathogenic Escherichia coli sequence type 131 (ST131), typically fluoroquinolone-resistant (FQ-R) and/or extended-spectrum β-lactamase (ESBL)-producing, has emerged globally. Among clinical isolates, ST131, primarily its H30-R and H30-Rx subclones, accounts for most antimicrobial-resistant E. coli and is the dominant E. coli strain worldwide. We assessed its prevalence and characteristics among raw chicken meat samples on sale in Palermo, Italy. A collection of 237 fluoroquinolone resistant and ESBL/AmpC producing E. coli isolates, which had been isolated from processed retail chicken meat in the period May 2013-April 2015, was analyzed. Established polymerase chain reaction…

0301 basic medicineFimH30MeatAFLPST131Settore MED/17 - Malattie InfettiveAnimal foodExtraintestinal Pathogenic Escherichia colichicken030106 microbiologyBiologySettore MED/42 - Igiene Generale E ApplicataMicrobiologyH30-RxMicrobiologylaw.invention03 medical and health sciencesColi strainQuinolone resistanceChicken meatlawDrug Resistance BacterialAnimalsEscherichia coli sequence type 131Amplified Fragment Length Polymorphism AnalysisSafety Risk Reliability and QualityhumansPolymerase chain reactionPhylogenyExPECExtraintestinal Pathogenic Escherichia coliPhylogenetic treeGenetic heterogeneityE. coliGeneral Medicineβ-lactamaseItalyESBLFood MicrobiologyAFLP; Chicken meat; E. coli; ESBL; ExPEC; FimH30; H30-R; H30-Rx; ST131; Food Science; Microbiology; Safety Risk Reliability and QualityE.coliAmplified fragment length polymorphismChickensH30-RFluoroquinolonesPlasmidsFood Science
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Shell palaeoproteomics: first application of peptide mass fingerprinting for the rapid identification of mollusc shells in archaeology.

2020

10 pages; International audience; Molluscs were one of the most widely-used natural resources in the past, and their shells are abundant among archaeological findings. However, our knowledge of the variety of shells that were circulating in prehistoric times (and thus their socio-economic and cultural value) is scarce due to the difficulty of achieving taxonomic determination of fragmented and/or worked remains. This study aims to obtain molecular barcodes based on peptide mass fingerprints (PMFs) of intracrystalline proteins, in order to obtain shell identification. Palaeoproteomic applications on shells are challenging, due to low concentration of molluscan proteins and an incomplete unde…

0301 basic medicineFreshwater bivalve[SHS.ARCHEO]Humanities and Social Sciences/Archaeology and PrehistoryBiophysicsShell (structure)BiologyBiochemistryPeptide Mapping03 medical and health sciencesPeptide mass fingerprintingAnimal Shells[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry Molecular Biology/Genomics [q-bio.GN]Mollusc shellMollusc shellAnimalsPeptide mass fingerprintPeptide-mass fingerprintPhylogenyShellomics030102 biochemistry & molecular biologyPhylogenetic treeMALDI-TOF mass spectrometry; Mollusc shell; Palaeoproteomics; Peptide mass fingerprint; ShellomicsMALDI-TOF mass spectrometryPalaeoproteomicsArchaeologyBivalvia030104 developmental biologyTaxonArchaeologyIdentification (biology)Peptides
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Ancient Immunity. Phylogenetic Emergence of Recognition-Defense Mechanisms.

2021

Although still scarcely considered by the majority of the biomedical world, invertebrates have greatly contributed to the elucidation of fundamental biological problems [...]

0301 basic medicineGeneral Immunology and MicrobiologyPhylogenetic treeQH301-705.5Defence mechanismsSettore BIO/05 - ZoologiaBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences030104 developmental biology0302 clinical medicinen/aEditorialEvolutionary biologyImmunity030220 oncology & carcinogenesisBiology (General)General Agricultural and Biological SciencesAncient Immunity Invertebrates allorecognitionBiology
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Aedes albopictus diversity and relationships in south-western Europe and Brazil by rDNA/mtDNA and phenotypic analyses: ITS-2, a useful marker for spr…

2021

AbstractBackgroundAedes albopictusis a very invasive mosquito, which has recently colonized tropical and temperate regions worldwide. Of concern is its role in the spread of emerging or re-emerging mosquito-borne diseases.Ae. albopictusfrom south-western Europe and Brazil were studied to infer genetic and phenetic diversity at intra-individual, intra-population and inter-population levels, and to analyse its spread.MethodsGenotyping was made by rDNA 5.8S-ITS-2 and mtDNAcox1 sequencing to assess haplotype and nucleotide diversity, genetic distances and phylogenetic networks. Male and female phenotyping included combined landmark-and outlined-based geometric morphometrics of wing size and sha…

0301 basic medicineGenetic MarkersMaleEntomologyAedes albopictus030231 tropical medicineZoologyInfectious and parasitic diseasesRC109-216Mosquito VectorsBiologymtDNA cox1DNA MitochondrialDNA RibosomalMolecular haplotypingNucleotide diversity03 medical and health sciences0302 clinical medicineAedesAnimalsWings AnimalSequencingGenetic variabilityDisease vectorGenotypingPhylogenyMorphometricsPhylogenetic treeResearchHaplotypeGenetic Variationbiology.organism_classificationAedes albopictusrDNA 5.8S-ITS-2Europe030104 developmental biologyInfectious DiseasesPhenotypeHaplotypesParasitologyDNA IntergenicFemaleWing geometric morphometryBrazilCloningSouth-western Europe
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2017

Coastal marine Vibrio cholerae populations usually exhibit high genetic diversity. To assess the genetic diversity of abundant V. cholerae non-O1/non-O139 populations in the Central European lake Neusiedler See, we performed a phylogenetic analysis based on recA, toxR, gyrB and pyrH loci sequenced for 472 strains. The strains were isolated from three ecologically different habitats in a lake that is a hot-spot of migrating birds and an important bathing water. We also analyzed 76 environmental and human V. cholerae non-O1/non-O139 isolates from Austria and other European countries and added sequences of seven genome-sequenced strains. Phylogenetic analysis showed that the lake supports a un…

0301 basic medicineGenetic diversityPhylogenetic treeEcology030106 microbiologyBiologymedicine.disease_causeMicrobiologyGenetic recombination03 medical and health sciencesMonophylyVibrio choleraePhylogeneticsGenetic variationmedicineCladeEcology Evolution Behavior and SystematicsEnvironmental Microbiology
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Phylogeny of Syndermata (syn. Rotifera): Mitochondrial gene order verifies epizoic Seisonidea as sister to endoparasitic Acanthocephala within monoph…

2015

Abstract A monophyletic origin of endoparasitic thorny-headed worms (Acanthocephala) and wheel-animals (Rotifera) is widely accepted. However, the phylogeny inside the clade, be it called Syndermata or Rotifera, has lacked validation by mitochondrial (mt) data. Herein, we present the first mt genome of the key taxon Seison and report conflicting results of phylogenetic analyses: while mt sequence-based topologies showed monophyletic Lemniscea (Bdelloidea + Acanthocephala), gene order analyses supported monophyly of Pararotatoria (Seisonidea + Acanthocephala) and Hemirotifera (Bdelloidea + Pararotatoria). Sequence-based analyses obviously suffered from substitution saturation, compositional …

0301 basic medicineGeneticsLife Cycle StagesMitochondrial DNAPhylogenetic treeRotiferaBiologybiology.organism_classificationGenomeAcanthocephala03 medical and health sciencesMonophylyGenes Mitochondrial030104 developmental biologyTaxonPhylogeneticsGene OrderGenome MitochondrialGeneticsAnimalsCladeAcanthocephalaMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsMolecular Phylogenetics and Evolution
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Comparing three complete mitochondrial genomes of the moss genus Orthotrichum Hedw.

2016

Here, we present a comparative analysis of the mitochondrial genome of three representatives of Orthotrichum Hedw (Bryophyta): two populations of O. diaphanum and one of the related species, namely O. macrocephalum. Their mitochondrial genomes share the same gene content and gene order, and are furthermore structurally identical to those of other arthrodontous mosses. The mitogenome of the allopatric samples of O. diaphanum differ in 0.1% of their sequence, with protein coding genes holding five mutations, including two non-synonymous changes. The divergence between the mitogenomes of the two species, O. diaphanum and O. macrocephalum, is 0.4%. Within a broader sampling of the Orthotrichace…

0301 basic medicineGeneticsMitochondrial DNAbiologyPhylogenetic treeAllopatric speciationbiology.organism_classificationGenome03 medical and health sciences030104 developmental biologyGenusOrthotrichumGeneticsOrthotrichaceaeMolecular BiologyGeneMitochondrial DNA Part B
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Origin and phylogenetic relationships of [4Fe–4S]‐containing O 2 sensors of bacteria

2018

The advent of environmental O2 about 2.5 billion years ago forced microbes to metabolically adapt and to develop mechanisms for O2 sensing. Sensing of O2 by [4Fe-4S]2+ to [2Fe-2S]2+ cluster conversion represents an ancient mechanism that is used by FNREc (Escherichia coli), FNRBs (Bacillus subtilis), NreBSa (Staphylococcus aureus) and WhiB3Mt (Mycobacterium tuberculosis). The phylogenetic relationship of these sensors was investigated. FNREc homologues are restricted to the proteobacteria and a few representatives from other phyla. Homologues of FNRBs and NreBSa are located within the bacilli, of WhiB3 within the actinobacteria. Archaea contain no homologues. The data reveal no similarity b…

0301 basic medicineGeneticsbiologyPhylogenetic treeProtein familyPhylumbiology.organism_classificationMicrobiologyActinobacteria03 medical and health sciences030104 developmental biologyPhylogeneticsHorizontal gene transferProteobacteriaEcology Evolution Behavior and SystematicsArchaeaEnvironmental Microbiology
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