Search results for "CARYOPHYLLACEAE"

showing 10 items of 36 documents

The evolution of substrate differentiation inMinuartiaseriesLaricifoliae(Caryophyllaceae) in the European Alps: In situ origin or repeated colonizati…

2013

Premise of the study Substrate specialization is often considered an important factor in evolutionary diversification. A classic example of divergence related to different substrate types is the dichotomy between calcicole and calcifuge plants on calcareous and siliceous substrates as found in the European Alps. When closely related species with contrasting substrate preferences are found in the same area, it is generally hypothesized that they diverged where they now occur. However, it is possible that Alpine edaphic diversity instead allows the coexistence of related species whose edaphic differentiation took place deeper in the phylogeny, in some other part of the range of their clades. …

Genetic SpeciationRange (biology)CalcicoleCaryophyllaceaePlant ScienceBiologyCalcifugeSoilSpecies SpecificityGeneticsEndemismEcosystemPhylogenyEcology Evolution Behavior and SystematicsBase SequenceGeographyEcologyEdaphicBiodiversitySequence Analysis DNAbiology.organism_classificationAdaptation PhysiologicalBiological EvolutionSubstrate (marine biology)EuropeTaxonMinuartiaDNA IntergenicAmerican Journal of Botany
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The origin of the serpentine endemic Minuartia laricifolia subsp. ophiolitica by vicariance and competitive exclusion.

2013

Serpentine soils harbour a unique flora that is rich in endemics. We examined the evolution of serpentine endemism in Minuartia laricifolia, which has two ecologically distinct subspecies with disjunct distributions: subsp. laricifolia on siliceous rocks in the western Alps and eastern Pyrenees and subsp. ophiolitica on serpentine in the northern Apennines. We analysed AFLPs and chloroplast sequences from 30 populations to examine their relationships and how their current distributions and ecologies were influenced by Quaternary climatic changes. Minuartia laricifolia was divided into four groups with a BAPS cluster analysis of the AFLP data, one group consisted only of subsp. ophiolitica, …

Genetic diversityChloroplastsBase SequenceEcologyMolecular Sequence DataPopulationDNA ChloroplastGenetic VariationCaryophyllaceaeDisjunctBiologySubspeciesSecologanin Tryptamine AlkaloidsEvolution MolecularPhylogeographyHaplotypesSerpentine soilGeneticsVicarianceBiological dispersalAmplified Fragment Length Polymorphism AnalysisEndemismEcology Evolution Behavior and SystematicsEcosystemPhylogenyMolecular ecology
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Seed isozyme variation in Petrocoptis A. Braun (Caryophyllaceae).

2001

Abstract The electrophoretic patterns of seven isozyme systems (ADH, AMY, AAT, GDH, LAP, MDH, and SOD) obtained from dormant seeds from 44 accessions belonging to 12 Petrocoptis taxa were compared in order to clarify taxonomic relationships within the genus. Overall, electrophoretic zymograms showed the presence of up 28 electromorphs, of which 26 were polymorphic among accessions. Mantel tests revealed a moderate level of correlation between the geographic distance matrix and several dissimilarity matrices based on the isozyme data ( r =0.3052–0.3376). The electrophoretic profiles of seed isozymes did not match closely the analytical taxonomic framework drawn from morphology. Many electrom…

Geographic distributionTaxonGeographic originModerate levelBotanyCaryophyllaceaeOrdinationBiologybiology.organism_classificationBiochemistryIsozymeEcology Evolution Behavior and SystematicsPetrocoptisBiochemical systematics and ecology
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Triterpenoid saponins from the roots of two Gypsophila species.

2013

Two triterpenoid saponins with two known ones have been isolated from the roots of Gypsophila arrostii var. nebulosa, and two new ones from the roots of Gypsophila bicolor. Their structures were established by extensive NMR and mass spectroscopic techniques as 3-O-β-d-galactopyranosyl-(1→2)-[β-d-xylopyranosyl-(1→3)]-β-d-glucuronopyranosylquillaic acid 28-O-β-d-xylopyranosyl-(1→4)-[β-d-glucopyranosyl-(1→3)]-α-l-rhamnopyranosyl-(1→2)-[β-d-glucopyranosyl-(1→4)]-β-d-fucopyranosyl ester (1), 3-O-β-d-galactopyranosyl-(1→2)-[β-d-xylopyranosyl-(1→3)]-β-d-glucuronopyranosylgypsogenin 28-O-β-d-xylopyranosyl-(1→4)-[β-d-glucopyranosyl-(1→3)]-α-l-rhamnopyranosyl-(1→2)-[β-d-glucopyranosyl-(1→4)]-β-d-fuco…

Gypsophila arrostiiGypsophilaStereochemistryCell SurvivalMolecular ConformationStereoisomerismAntineoplastic AgentsCaryophyllaceaePlant ScienceHorticultureBiochemistryPlant RootsCell LineTerpeneStructure-Activity RelationshipTriterpenoidSpecies SpecificityAnimalsHumansMolecular BiologyCell ProliferationPlant rootsbiologyDose-Response Relationship DrugChemistryStereoisomerismGeneral MedicineSaponinsbiology.organism_classificationTriterpenesRatsHuman colon cancerDrug Screening Assays AntitumorTwo-dimensional nuclear magnetic resonance spectroscopyPhytochemistry
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INDAGINI ECOMORFOLOGICHE, MICROMORFOLOGICHE, ANATOMICHE, ARCHITETTURALI, ISOENZIMATICHE E MOLECOLARI SULLE SPECIE DEL GENERE DIANTHUS L. ( CARYOPHYLL…

2011

ISOENZIMATICHECARYOPHYLLACEAESICILIAMOLECOLARISettore BIO/03 - Botanica Ambientale E ApplicataECOMORFOLOGICHEMICROMORFOLOGICHEDIANTHUS L.ARCHITETTURALIANATOMICHE
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Acylated triterpene saponins from Silene jenisseensis

1995

Abstract From the roots of Silene jenisseensis a new trans-p-methoxycinnamoyl triterpene saponin has been isolated along with its cis-p-methoxycinnamoyl isomer as an inseparable mixture. Their structures were established by chemical means and spectroscopic methods including 1D- and 2D-homonuclear and heteronuclear correlation NMR spectroscopy as 3-O-[β- d -galactopyranosyl -(1 → 2)-β- d -glucuronopyranosyl ]-28-O-[β- d -glucopyranosyl -(1 → 2)-α- l - rhamnopyranosyl -(1 → 2)-β- d -4-O-trans-p- methoxycinnamoyl-fucopyranosyl ] quillaic acid and its cis-isomer, respectively. They did not show any activity in the in vitro chemoluminescence granulocytes assay, but exhibited only a weak inhibito…

Magnetic Resonance SpectroscopyStereochemistryAcylationMolecular Sequence DataSaponinCaryophyllaceaePlant ScienceHorticulturePlant RootsBiochemistrylaw.inventionTriterpenelawCarbohydrate ConformationHumansMoleculeMedicine Chinese TraditionalOleanolic AcidMolecular BiologyChemiluminescencechemistry.chemical_classificationPlants MedicinalbiologyChemistryGeneral MedicineNuclear magnetic resonance spectroscopySaponinsbiology.organism_classificationTriterpenesIn vitroCarbohydrate SequenceHeteronuclear moleculeLuminescent MeasurementsGranulocytesPhytochemistry
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Contribution to the identification of Dianthus rupicola (Caryophyllaceae) subspecies using morphological and molecular approaches

2017

The systematic relationships between the five different subspecies actually recognized within Dianthus rupicola (subsp. aeolicus , subsp. bocchorianus , subsp. hermaensis, subsp. lopadusanus and subsp. rupicola ), were assessed by means of morphometric and molecular analysis. Our results highlighted the molecular differences between the five subspecies of D. rupicola and a morphological differentiation of four groups being D. rupicola subsp. aeolicus and D. rupicola subsp. rupicola partly overlapping. At the present state of knowledge, a subspecific status seems the most appropriate for all the recognized subspecies of D. rupicola . The names D. aeolicus , D. bisignanii var. virescens , D. …

Morphology0301 basic medicineCaryophyllaceaePlant Science010501 environmental sciencesSubspeciesMediterranean area01 natural sciencesEndemic03 medical and health sciencesBotanyTypificationTypificationEudicotsEndemismEcology Evolution Behavior and SystematicsMolecular investigation0105 earth and related environmental sciencesbiologySettore BIO/02 - Botanica SistematicaDianthusHolotypeRupicola030108 mycology & parasitologybiology.organism_classificationEcology Evolution Behavior and SystematicSettore BIO/03 - Botanica Ambientale E ApplicataDianthuPhytotaxa
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A new subspecies ofArenaria grandiflora (Caryophyllaceae) from the Rif mountains (Northern Morocco)

2002

A new subspecies,A. grandiflora subsp.gomarica (Caryophyllaceae), is described from the mountains of northern Morocco. The new taxon is tetraploid and has been confused in the past either with the Balearic endemicA. grandiflora subsp.glabrescens or with the widespreadA. grandiflora subsp.grandiflora, which is also present in the African continent. Detailed morphological analysis showed that plants from the Rif mountains are closely related toA. grandiflora subsp.glabrescens, but differ from it in having a longer calyx, smaller seed size, and a glandular indument on pedicels, leaves and calyx.Arenaria grandiflora subsp.gomarica can be distinguished from all infraspecific taxa of theA. grandi…

PaleontologyCaryophyllaceaePlant ScienceBiologySubspeciesbiology.organism_classificationCalyxTaxonInflorescencePedicelBotanybacteriaTaxonomy (biology)EndemismFolia Geobotanica
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Volatile constituents of Dianthus rupicola Biv. from Sicily: activity against microorganisms affecting cellulosic objects.

2014

Dianthus rupicola Biv. (cliffs carnation) is a camephytic, suffruticous, perennial plant growing up to 40 cm high. The plant is widespread in Sicily and neighbouring islands (Egadi, Lampedusa, Lipari) and in some areas of southern Italy. GC and GC-MS analyses of the essential oil distilled from the flowers showed the presence of 66 components. Its composition is characterised by the high content of thymol and carvacrol derivatives. A good antibacterial activity against Bacillus cereus and Bacillussubtilis, both infesting cellulosic historical material, was shown, whereas the antioxidant capacity was determined to be quite poor.

Perennial plantBacillus cereusCaryophyllaceaeBacillusPlant ScienceCarnationFlowersMicrobial Sensitivity TestsBiochemistryAntioxidantsAnalytical Chemistrylaw.inventionchemistry.chemical_compoundlawDianthusBotanyOils VolatilePlant OilsCarvacrolSettore BIO/15 - Biologia FarmaceuticaThymolSicilyEssential oilbiologyfungiOrganic ChemistryDianthus rupicola caryophyllaceae essential oils Thymol and carvacrol derivatives Bacillus ssp.Settore CHIM/06 - Chimica Organicabiology.organism_classificationThymolAnti-Bacterial AgentschemistryMonoterpenesCymenesAntibacterial activityNatural product research
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Nomenclatural notes on the Polycarpon tetraphyllum aggregate (Caryophyllaceae)

2015

Nomenclatural notes on the aggregate Polycarpon tetraphyllum (Caryophyllaceae) are discussed. The names Hagaea alsinifolia, H. polycarpoides, Poycarpon colomense, P. diphyllum, and P. floribundum are typified, respectively, on an iconography by Boccone (lectotype), and specimens preserved in PAL (neotype), JE (lectotype), MA (Herbarium Cavanilles, lectotype), and COI (Herbarium Willkomm, lectotype). For the nomenclatural purposes, the names P. bivonae (nom. nov. pro P. polycarpoides), P. herniarioides (holotype in K), P. peploides (nom. superfl. et nom. illeg. according to the Arts. 52.1 and 52.2 of the ICN), P. polycarpoides subsp. catalaunicum (holotype in BC), and P. rotundifolium (holot…

Settore BIO/02 - Botanica SistematicaHolotypeZoologyCaryophyllaceaeBiologybehavior and systematicsbiology.organism_classificationMediterranean areaTetraphyllumPolycarpon tetraphyllumHerbariumplant scienceSynonym (taxonomy)Polycarpon Mediterranean area nomenclature typificationMediterranean area; nomenclature; Polycarpon; typification; plant science; ecology volution behavior and systematicsBotanyPolycarponnomenclatureecologytypificationEcology Evolution Behavior and Systematicsvolution
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