Search results for "ribosomal DNA"

showing 10 items of 137 documents

Chaenothecopsis schefflerae (Ascomycota: Mycocaliciales): a widespread fungus on semi-hardened exudates of endemic New Zealand Araliaceae

2017

Ascomycetes specialised to live on hardened plant exudates occur worldwide, but the number of species so far described is relatively small (c.30). Particularly within the genus Chaenothecopsis (Ascomycota:Mycocaliciales), many species produce their ascomata on hardened but still relatively fresh outpourings of conifer resin or angiosperm exudate. Temperate rainforests of New Zealand provide habitat for several endemic Chaenothecopsis species, including Chaenothecopsis schefflerae, which was previously known from a single sample collected from the exudate of Schefflera digitata (Araliaceae) in the early 1980s. Here we show that C.schefflerae is neither lost nor very rare, but occurs sporadic…

0106 biological sciences0301 basic medicineExudateRIBOSOMAL DNA-SEQUENCESPHYLOGENYkotelosienetMODELSUusi-SeelantiPlant SciencePseudopanax010603 evolutionary biology01 natural sciences03 medical and health sciencesresinicolous fungiNOV.GenusBotanymedicine1183 Plant biology microbiology virologyEcology Evolution Behavior and SystematicsIDENTIFICATIONbiologyMycocaliciumHUMBOLDTENSISexudate15. Life on land030108 mycology & parasitologybiology.organism_classificationPseudopanaxScheffleraScheffleraNEW-CALEDONIAAscocarp1181 Ecology evolutionary biologySchefflera digitatata1181AraliaceaeType specimenmedicine.symptomNew ZealandNew Zealand Journal of Botany
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A genetic study on subtropical Anadenanthera colubrina (Vell.) Brenan var. cebil (Griseb.) Altschul tree from Northwestern Argentina

2017

Anadenanthera colubrina (Vell.) Brenan var. cebil (Griseb.) Altschul is a tree species in South America important for its cultural, economic, and medicinal uses. In addition, it represents a trace in memory of the forests that have decreased over the years and for this reason it is not only interesting to study but also important to preserve the tree species for future generations. In this paper, we have characterized the genetic diversity of four populations. We collected seeds from four different sites: San Bernardo (B), El Cebilar (C), Metán (M), and El Gallinato (G) in Salta Province, North Argentina. We then compared the intergenic transcribed sequences of ribosomal DNA, a known geneti…

0106 biological sciences0301 basic medicineGenetic diversitybiologyconservationColubrinaForestrySubtropicsBiodiversitybotanybiology.organism_classificationBiodiversity; botany; deforestation; conservation; phylogenetic010603 evolutionary biology01 natural sciencesGenetic analysis03 medical and health sciencesTree (descriptive set theory)030104 developmental biologyIntergenic regionBotanySettore BIO/03 - Botanica Ambientale E ApplicatadeforestationphylogeneticAnadenanthera colubrinaRibosomal DNA
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High and uneven levels of 45S rDNA site-number variation across wild populations of a diploid plant genus (Anacyclus, Asteraceae)

2017

The nuclear genome harbours hundreds to several thousand copies of ribosomal DNA. Despite their essential role in cellular ribogenesis few studies have addressed intrapopulation, interpopulation and interspecific levels of rDNA variability in wild plants. Some studies have assessed the extent of rDNA variation at the sequence and copy-number level with large sampling in several species. However, comparable studies on rDNA site number variation in plants, assessed with extensive hierarchical sampling at several levels (individuals, populations, species) are lacking. In exploring the possible causes for ribosomal loci dynamism, we have used the diploid genus Anacyclus (Asteraceae) as a suitab…

0106 biological sciences0301 basic medicineHereditylcsh:MedicineAsteraceae01 natural sciencesGenuslcsh:ScienceAnacyclusIn Situ Hybridization FluorescenceFlowering PlantsHeterozygosityMultidisciplinarybiologyChromosome BiologyEukaryotaPlantsKaryotypesPloidyResearch ArticleChromosome Structure and FunctionEvolutionary ProcessesContext (language use)DNA RibosomalChromosomes PlantChromosomesPolyploidyAnacyclusCytogenetics03 medical and health sciencesPolyploidBotanyGenetic variationGeneticsHybridizationRibosomal DNAEvolutionary Biologylcsh:ROrganismsGenetic VariationBiology and Life SciencesCell BiologyRibosomal RNAbiology.organism_classificationDiploidy030104 developmental biologyRNA RibosomalGenetic LociEvolutionary biologyKaryotypinglcsh:QDepartures from Diploidy010606 plant biology & botanyPLOS ONE
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Karyotype variability and inter-population genomic differences in freshwater ostracods (Crustacea) showing geographical parthenogenesis

2018

Transitions from sexual to asexual reproduction are often associated with polyploidy and increased chromosomal plasticity in asexuals. We investigated chromosomes in the freshwater ostracod species Eucypris virens (Jurine, 1820), where sexual, asexual and mixed populations can be found. Our initial karyotyping of multiple populations from Europe and North Africa, both sexual and asexual, revealed a striking variability in chromosome numbers. This would suggest that chromosomal changes are likely to be accelerated in asexuals because the constraints of meiosis are removed. Hence, we employed comparative genomic hybridization (CGH) within and among sexual and asexual populations to get insigh…

0106 biological sciences0301 basic medicinefreshwater ostracodslcsh:QH426-470PopulationDIVERSITYcomparative genomic hybridizationPOLYPLOIDYAsexual reproductionGRASSHOPPER EYPREPOCNEMIS-PLORANSchromosome numbersB-CHROMOSOME POLYMORPHISMBiologyASEXUAL REPRODUCTION010603 evolutionary biology01 natural sciencesArticleAsexuality03 medical and health sciencesNORTH-AFRICAACRIDIDAEGeneticsCopy-number variationeducationRibosomal DNAGenetics (clinical)education.field_of_studygeographical parthenogenesisBiology and Life SciencesParthenogenesisreproductive modesDNAfreshwater ostracods; asexuality; reproductive modes; geographical parthenogenesis; comparative genomic hybridization; chromosome numbers; karyotypekaryotypeORTHOPTERAlcsh:Genetics030104 developmental biologyEvolutionary biologyEarth and Environmental SciencesPHASMATODEAPloidyasexualityComparative genomic hybridization
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Evolutionary Trends in the Mitochondrial Genome of Archaeplastida: How Does the GC Bias Affect the Transition from Water to Land?

2020

[EN] Among the most intriguing mysteries in the evolutionary biology of photosynthetic organisms are the genesis and consequences of the dramatic increase in the mitochondrial and nuclear genome sizes, together with the concomitant evolution of the three genetic compartments, particularly during the transition from water to land. To clarify the evolutionary trends in the mitochondrial genome of Archaeplastida, we analyzed the sequences from 37 complete genomes. Therefore, we utilized mitochondrial, plastidial and nuclear ribosomal DNA molecular markers on 100 species of Streptophyta for each subunit. Hierarchical models of sequence evolution were fitted to test the heterogeneity in the base…

0106 biological sciences0301 basic medicinegc biasMitochondrial DNANuclear geneBOTANICAPlant ScienceMitochondrial genomic pattern01 natural sciencesGenomeArticlegc content concomitance03 medical and health sciencesArchaeplastidaRibosomal DNAGeneEcology Evolution Behavior and SystematicsEcologybiologyArchaeplastidaStreptophytaGC biasBotanymitochondrial genomic patternEquilibrium GC frequencybiology.organism_classification030104 developmental biologyequilibrium gc frequencyEvolutionary biologyQK1-989archaeplastidaGC content concomitanceGC-content010606 plant biology & botanyPlants
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Pleurotus opuntiae revisited e An insight to the phylogeny of dimitic Pleurotus species with emphasis on the P. djamor complex

2018

Abstract The name Pleurotus opuntiae is indiscriminately used for describing mushrooms with white to off-white to white-grey pilei with short or absent stipe and dimitic hyphal system, which grow on plants of the genera Opuntia, Yucca, Agave, Phytolacca etc. However, the outcome of the present study evidences that this name should be reserved for specimens deriving from the Mediterranean area only; an epitype originating from Italy on Opuntia ficus-indica is designated. Pertinent material was sequenced by using the internal transcribed spacer region (ITS) and found to be phylogenetically related to P. djamor from Kenya and Nigeria, while members of the P. djamor complex from other continent…

0106 biological sciencesContext (language use)Pleurotus01 natural sciences03 medical and health sciencesStipe (botany)BotanyDNA Ribosomal SpacerRNA Ribosomal 28SGeneticsCluster AnalysisInternal transcribed spacerDNA FungalRibosomal DNAEcology Evolution Behavior and SystematicsPhylogeny030304 developmental biology0303 health sciencesPleurotusbiologyMediterranean RegionSettore BIO/02 - Botanica SistematicaSequence Analysis DNAPlantsbiology.organism_classificationAgaveInfectious DiseasesTaxonGenetic distanceItalySettore BIO/03 - Botanica Ambientale E ApplicataRNA Polymerase IIFungal taxonomy ITS Multi-gene phylogeny Opuntia ficus-indica Oyster mushroom Pleurotus opuntiae epitype010606 plant biology & botany
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Invasion of Eragrostis albensis in Central Europe: distribution patterns, taxonomy and phylogenetic insight into the Eragrostis pilosa complex

2021

AbstractThe Eragrostis pilosa complex (Poaceae) comprises five widely distributed and regionally invasive species—E. albensis, E. amurensis, E. imberbis, E. multicaulis, and E. pilosa, distinguished by tiny and variable morphological characters and with so far unknown phylogenetic relationships. Recently, some doubts have been raised about the status of an invasive glandular morphotype occurring in Central Europe assigned either to E. amurensis or to E. albensis. Here, we addressed this issue by analysing morphology, internal transcribed spacers of nuclear ribosomal DNA, and five inter-simple sequence repeat markers. The genetic evidence supported closer relationship of this glandular morph…

0106 biological sciencesEragrostis pilosaмодели распространенияPilosaZoologyинвазивные чужеродные виды010603 evolutionary biology01 natural sciences03 medical and health sciencesтаксономияdistributionRibosomal DNAintegrative taxonomyEcology Evolution Behavior and Systematicsalien invasive speciesEragrostis albensis var. scholziana030304 developmental biology0303 health sciencesEcologybiologyPhylogenetic treeAlien invasive species Cryptic invasion DistributionLovegrassesинтегративная таксономияEragrostiscryptic invasionlovegrassesbiology.organism_classificationполевичка эльбскаяЦентральная ЕвропаTaxonHabitatфилогенияIntegrative taxonomyTaxonomy (biology)Biological Invasions
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Phylogenetic and genomic relationships in Setaria italica and its close relatives based on the molecular diversity and chromosomal organization of 5S…

2001

We have analyzed the phylogenetic and genomic relationships in the genus Setaria Beauv. including diploid and tetraploid species, by means of the molecular diversity of the 5S rDNA spacer and chromosomal organization of the 5S and 18S-5.8S-25S rDNA genes. PCR amplification of the 5S rDNA sequences gave specific patterns. All the species studied here share a common band of about 340 bp. An additional band of an approximately 300-bp repeat unit was found for Setaria verticillata and the Chinese accessions of Setaria italica and Setaria viridis. An additional band of 450 bp was found in the sole species Setaria faberii. Fluorescent in situ hybridization was used for physical mapping of the 5S …

0106 biological sciencesGenetics[SDV.GEN]Life Sciences [q-bio]/Genetics0303 health sciencesSetariaGenetic diversitySetaria verticillataPhylogenetic treeSetaria viridis[SDV.GEN] Life Sciences [q-bio]/GeneticsGeneral MedicineBiologybiology.organism_classification01 natural sciencesGenomeADN RIBOSOMIAL03 medical and health sciencesPhylogeneticsGeneticsAgronomy and Crop ScienceRibosomal DNAComputingMilieux_MISCELLANEOUS030304 developmental biology010606 plant biology & botanyBiotechnologyTheoretical and Applied Genetics
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Ecology, Phylogeny, and Potential Nutritional and Medicinal Value of a Rare White “Maitake” Collected in a Mediterranean Forest

2020

Albino Grifola frondosa (Dicks.) Gray &ldquo

0106 biological sciencesGrifola frondosabioprospectingBiology01 natural sciences03 medical and health sciencesDry weightStaphylococcus epidermidisBotanypolypore fungupolypore fungusMediterranean forestInternal transcribed spacer<i>Grifola frondosa</i>lcsh:QH301-705.5Ribosomal DNAGrifola frondosa030304 developmental biologyNature and Landscape Conservation0303 health sciencesMushroomEcologySettore BIO/02 - Botanica SistematicaEcological Modeling<i>Quercus pubescens</i>ITS rDNAbiology.organism_classificationGrifolaAgricultural and Biological Sciences (miscellaneous)medicinal mushroomfungal diversityphylogeneticslcsh:Biology (General)Quercus pubescensSettore BIO/03 - Botanica Ambientale E ApplicataBasidiocarpphylogenetic010606 plant biology & botanybasidiomyceteDiversity
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Bot gummosis of lemon (Citrus × limon) caused by neofusicoccum parvum

2021

Neofusicoccum parvum, in the family Botryosphaeriaceae, was identified as the causal agent of bot gummosis of lemon (Citrus × limon) trees, in the two major lemon-producing regions in Italy. Gummy cankers on trunk and scaffold branches of mature trees were the most typical disease symptoms. Neofusicoccum parvum was the sole fungus constantly and consistently isolated from the canker bark of symptomatic lemon trees. It was identified on the basis of morphological characters and the phylogenetic analysis of three loci, i.e., the internal transcribed spacer of nuclear ribosomal DNA (ITS) as well as the translation elongation factor 1-alpha (TEF1) and β-tubulin (TUB2) genes. The pathogenicity o…

0106 biological sciencesMicrobiology (medical)CitrusTUB2Plant Science01 natural sciencesArticle<i>ITS</i>03 medical and health sciencesmedicinePathogenicityInternal transcribed spacerTEF1Ribosomal DNAlcsh:QH301-705.5Ecology Evolution Behavior and Systematics030304 developmental biologyCanker0303 health sciencesbiologyGummosisTrunk and branch cankersBotryosphaeriaceaemedicine.diseasebiology.organism_classificationCitrangeHorticulture<i>TUB2</i>lcsh:Biology (General)ItalyBotryosphaeriaceaevisual_artvisual_art.visual_art_medium<i>TEF1</i>BarkITSRootstock010606 plant biology & botany
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