Search results for " Genetic distance"

showing 5 items of 5 documents

Evaluation of HIV-1 integrase resistance emergence and evolution in patients treated with integrase inhibitors

2020

Abstract Objectives This study evaluated the emergence of mutations associated with integrase strand transfer inhibitors (INSTI) resistance (INSTI-RMs) and the integrase evolution in human immunodeficiency virus type 1 (HIV-1) infected patients treated with this drug class. Methods The emergence of INSTI-RMs and integrase evolution (estimated as genetic distance between integrase sequences under INSTI treatment and before INSTI treatment) were evaluated in 107 INSTI-naive patients (19 drug-naive and 88 drug-experienced) with two plasma genotypic resistance tests: one before INSTI treatment and one under INSTI treatment. A logistic regression analysis was performed to evaluate factors associ…

Male0301 basic medicineIntegrase inhibitorHIV InfectionsHIV IntegraseQuinolonesPiperazineschemistry.chemical_compound0302 clinical medicineHIV-1 integrase resistanceImmunology and Allergy030212 general & internal medicineIntegrase inhibitorSubtype.genetic distancebiologyElvitegravirMiddle AgedQR1-502Integraseintegrase inhibitorsDolutegravirHiv 1 integraseFemaleHeterocyclic Compounds 3-Ringmedicine.drugAdultMicrobiology (medical)Settore MED/17 - Malattie InfettiveGenotypePyridones030106 microbiologyImmunologyMicrobiologysubtypeEvolution Molecular03 medical and health sciencesRaltegravir PotassiumDrug Resistance ViralOxazinesmedicineHumansIn patientHIV Integrase InhibitorsPolymorphismbusiness.industryHIV-1 integrase resistance; genetic distance; integrase inhibitors; polymorphisms; subtypeRaltegravirVirologyLogistic ModelschemistryMutationHIV-1Genotypic resistancebiology.proteinpolymorphismsbusinessJournal of Global Antimicrobial Resistance
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Protein differences among the Mediterranean species of the genus Spicara.

1996

Protein electrophoresis (PAGE) was used to study the three morphologically different species of Spicara (S. flexuosa, S. maena, S. smaris). Of the 28 enzymatic and additional myogenic loci, five monomorphic loci (LDH-1*, G6PD-1*, PGI-1* and two PMMs*) were species-specific markers of S. smaris with respect to S. flexuosa and S. maena. Four of the 28 enzymatic loci were polymorphic (EST-1*, GLDH*, PEPD*, PGI-2*). Discriminating genetic markers were not identified between S. flexuosa and S. maena. Genetic distance (D) as calculated by Nei’s index (1978), between S. smaris v. S. maena and S. flexuosa showed a value, respectively of D=0·137 and 0·141. Between S. flexuosa and S. maena the value …

Mediterranean climateSpicaragenetic distanceEcologyProtein electrophoresis; species differentiation; genetic distance; Spicara; Mediterranean Sea.species differentiationSettore BIO/05 - ZoologiaZoologyAquatic ScienceBiologyGel electrophoresis of proteinsbiology.organism_classificationGenetic distanceGenusGenetic markerBlack seaMediterranean Sea.SpicaraProtein electrophoresiEcology Evolution Behavior and Systematics
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Morphologically similar but not closely related: the long-spored species of Subulicystidium (Trechisporales, Basidiomycota)

2020

AbstractSpecies boundaries and geographic distribution of corticioid fungi (resupinate Basidiomycota) are often poorly known. Our recent study on Subulicystidium showed that species diversity in this genus is at least twice as high as previously recognized. This re-estimation of the species diversity was based on a study of only a part of the genus. The present study sheds light on molecular and morphological diversity of three more species. We generated 27 ITS and 24 28S nuclear ribosomal DNA sequences from 49 specimens labelled as Subulicystidium cochleum, S. longisporum and S. perlongisporum and collected in distant geographic localities. We assessed pairwise dissimilarities and phylogen…

Species complexPhylogenetic treeSettore BIO/02 - Botanica SistematicaSpecies distributionSpecies diversityBiologybiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)AgaricomycetesCryptic species Genetic distance Homoplasic character Internal transcribed spacer Large subunit traditional morphometricsCorticioid fungiGenusEvolutionary biologyRibosomal DNAEcology Evolution Behavior and SystematicsMycological Progress
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Biochemical genetic differentiation between Pomatoschistus marmoratus and P. tortonesei (Pisces, Gobiidae).

1999

Several diagnostic genetic markers were identified in Pomatoschistus marmoratus and P. tortonesei using polyacrylamide gel electrophoresis (PAGE) of allozymes. Twenty-one loci were resolved, including the electrophoretic pattern of muscle proteins. The MDH*, PGM- 1,2*, EST-1,2*, FUM* and PGI-2* loci exhibited different alleles which were fixed for the two species being analysed. Genetic distance, as calculated by Nei’s index, showed a value of 0·413. Environmental hypersalinity, could have influenced the geographical distribution of P. tortonesei.

genetic distanceallozymes; species differentiation; genetic distance; Pomatoschistus; Mediterranean Sea.species differentiationSettore BIO/05 - ZoologiaMediterranean Sea.allozymePomatoschistu
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A nonlinear optimization procedure to estimate GTR-distances

2006

genetic distancemolecular evolutionDNA sequenceDNA sequence; genetic distance; molecular evolution; nonlinear optimizationnonlinear optimization
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