Search results for "Dermi"

showing 10 items of 276 documents

First Perigondwanan record of actinolepids (Vertebrata: Placodermi: Arthrodira) from the Lochkovian (Early Devonian) of Spain and its palaeobiogeogra…

2011

Different palaeogeographic models have been proposed for the position of Laurussia ( including Baltica) and Gondwana-derived microcontinents ( including Ibero-Armorica) during Ordovician to Late Carboniferous times. Principal differences concern the presence and duration of a large ocean, the Rheic Ocean, acting as a faunal barrier between these areas. The timing of the collision of Laurussia with Gondwana and/or Gondwana-derived terranes continues to be debated. Here we present new faunal data revealing close biogeographical relations between Ibero-Armorica ("Perigondwanan" or Gondwanan derivate terranes) and Podolia (SE margin of Baltica, in Laurussia). The placoderm assemblage found in t…

010506 paleontologybiologyPaleontology15. Life on land010502 geochemistry & geophysicsOceanographybiology.organism_classification01 natural sciencesDevonianPaleontologyGondwanaCarboniferousPlacodermiOrdovicianBaltica14. Life underwaterArthrodiraEcology Evolution Behavior and SystematicsGeology0105 earth and related environmental sciencesEarth-Surface ProcessesTerranePalaeogeography, Palaeoclimatology, Palaeoecology
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Patterns of the lemma micromorphology : a useful tool in taxonomy of the middle Asian Eragrostis species (Poaceae)

2017

We examined all taxa of the genus Eragrostis noted so far in Middle Asia, namely: Eragrostis amurensis, Eragrostis cilianensis, Eragrostis minor agg., Eragrostis pilosa and Eragrostis virescens. By means of scanning electron microscope, such structures as long cells, short cells (cork and silica cells), prickles, microhairs and glands were scrutinized and compared among taxa. Additionally, several macromorphological characteristics were investigated. Principal component analysis and cluster analysis were conducted in order to reveal the morphological relationships and differences among species. Micromorphology of the lemma epidermis, together with selected macromorphological characteristics…

0106 biological sciences0301 basic medicineEragrostis pilosabiologyPlant ScienceEragrostisEragrostisbiology.organism_classification010603 evolutionary biology01 natural sciencesNumerical taxonomy03 medical and health sciencesLemma (botany)macromorphology030104 developmental biologyTaxonlovegrassBotanyTaxonomy (biology)Poaceaenumerical taxonomyEragrostis cilianensislemma epidermis
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UV-screening and springtime recovery of photosynthetic capacity in leaves of Vaccinium vitis-idaea above and below the snow pack

2019

International audience; Evergreen plants in boreal biomes undergo seasonal hardening and dehardening adjusting their photosynthetic capacity and photoprotection; acclimating to seasonal changes in temperature and irradiance. Leaf epidermal ultraviolet (UV)-screening by flavonols responds to solar radiation, perceived in part through increased ultraviolet-B (UV-B) radiation, and is a candidate trait to provide cross-photoprotection. At Hyytiälä Forestry Station, central Finland, we examined whether the accumulation of flavonols was higher in leaves of Vaccinium vitis-idaea L. growing above the snowpack compared with those below the snowpack. We found that leaves exposed to colder temperature…

0106 biological sciences0301 basic medicineTime FactorsPhotoinhibitionBOREALPhysiologyPlant ScienceForests01 natural sciencesPlant EpidermisAnthocyaninsSoilFlavonolsLOW-TEMPERATURESnowPhotosynthesis1183 Plant biology microbiology virologychemistry.chemical_classificationspring dehardening.CLIMATE-CHANGEbiologyChemistryTemperatureUnderstoreyHorticultureLIGHTSeasonsVacciniumUltraviolet RaysGrowing seasonPhotosynthesisDWARF SHRUB03 medical and health sciencesLEAFPHOTOSYSTEM-IIGenetics[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyVaccinium vitis-idaeaFlavonoidsSpring dehardeningPhotoprotectionSpectral qualityPhotosystem II Protein ComplexPigments Biological15. Life on landEvergreenbiology.organism_classificationPhotosynthetic capacitySUB-ARCTIC HEATHPlant Leaves030104 developmental biology13. Climate actionPhotoprotectionWINTERB RADIATIONArctic browning010606 plant biology & botany
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Arginase induction represses gall development during clubroot infection in Arabidopsis.

2012

Arginase induction can play a defensive role through the reduction of arginine availability for phytophageous insects. Arginase activity is also induced during gall growth caused by Plasmodiophora brassicae infection in roots of Arabidopsis thaliana; however, its possible role in this context has been unclear. We report here that the mutation of the arginase-encoding gene ARGAH2 abrogates clubroot-induced arginase activity and results in enhanced gall size in infected roots, suggesting that arginase plays a defensive role. Induction of arginase activity in infected roots was impaired in the jar1 mutant, highlighting a link between the arginase response to clubroot and jasmonate signaling. C…

0106 biological sciencesClubrootArabidopsis thalianaPhysiologyPyridinesArabidopsisplantPlant SciencePlasmodiophorida01 natural sciencesPlant RootsCallogenesisPlant Epidermischemistry.chemical_compoundJasmonateArabidopsisPlant TumorsGallArabidopsis thalianaJasmonateAmino AcidsComputingMilieux_MISCELLANEOUSchemistry.chemical_classification0303 health sciencesJasmonic acidfood and beveragesGeneral MedicineCell biologyArginasePLANT SCIENCESOrgan SpecificityPlasmodiophora brassicaeEnzyme Inductionnitric-oxideCyclopentanesBiologyHydroxylationAmidohydrolasesClubroot03 medical and health sciencesAuxinBotanymedicinethalianaOxylipinsIsoleucine030304 developmental biologydiseaseArginaseArabidopsis Proteinsfungijasmonic acid[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyplasmodiophora-brassicaeCell BiologyDiazonium Compoundsbiology.organism_classificationmedicine.diseaserootarginine catabolism[SDV.BV.AP]Life Sciences [q-bio]/Vegetal Biology/Plant breedingchemistryMutationidentificationaccumulation010606 plant biology & botanyPlantcell physiology
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Ecomorphological inferences in early vertebrates: reconstructing Dunkleosteus terrelli (Arthrodira, Placodermi) caudal fin from palaeoecological data

2017

Our knowledge about the body morphology of many extinct early vertebrates is very limited, especially in regard to their post-thoracic region. The prompt disarticulation of the dermo-skeletal elements due to taphonomic processes and the lack of a well-ossified endoskeleton in a large number of groups hinder the preservation of complete specimens. Previous reconstructions of most early vertebrates known from partial remains have been wholly based on phylogenetically closely related taxa. However, body design of fishes is determined, to a large extent, by their swimming mode and feeding niche, making it possible to recognise different morphological traits that have evolved several times in no…

0106 biological sciencesDunkleosteus010506 paleontologyEcomorphologyEcomorphologylcsh:MedicinePaleontologia010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyEndoskeletonArthrodira0105 earth and related environmental sciencesMorphometricsGeometric morphometricsbiologyGeneral Neurosciencelcsh:RFish finGeneral Medicinebiology.organism_classificationCaudal finEarly vertebratesEvolutionary biologyPlacodermiSharksDunkleosteus terrelliAllometryGeneral Agricultural and Biological SciencesPeerJ
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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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Sexually dimorphic tegumental gland openings in Laniatores (Arachnida, Opiliones), with new data on 23 species

2009

International audience; Sexually dimorphic glands often release sexual pheromones both in vertebrates and invertebrates. Species of Laniatores (Arachnida, Opiliones) seem to depend on chemical communication but few studies have addressed this topic. In this study, we review the literature for the Phalangida and present new data for 23 species of Laniatores. In 16 taxa, we found previously undescribed sexually dimorphic glandular openings on the femur, patella, metatarsus, and tarsus of legs I and metatarsus of legs III and IV. For the other species, we provide scanning electron micrographs of previously undescribed sexually dimorphic setae and pegs located on swollen regions of the legs. We…

0106 biological sciencesMale[ SDV.AEN ] Life Sciences [q-bio]/Food and Nutrition010607 zoologyOpilionesEupnoi010603 evolutionary biology01 natural sciencesPheromonesChemical communicationSexual Behavior AnimalpheromoneExocrine GlandsSpecies SpecificityArachnidamedicineAnimalsFemurPhylogenyLaniatoresSex CharacteristicsbiologyBehavior AnimalEupnoiSetaExtremitiesAnatomybiology.organism_classificationClassificationAdaptation PhysiologicalSexual dimorphismbody regionsDyspnoimedicine.anatomical_structureTarsus (skeleton)sexual dimorphismMicroscopy Electron ScanningAnimal Science and ZoologyPatellaFemaleEpidermis[SDV.AEN]Life Sciences [q-bio]/Food and NutritionLaniatoresDevelopmental Biology
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RNA interference in Lepidoptera: an overview of successful and unsuccessful studies and implications for experimental design.

2011

International audience; Gene silencing through RNA interference (RNAi) has revolutionized the study of gene function, particularly in non-model insects. However, in Lepidoptera (moths and butterflies) RNAi has many times proven to be difficult to achieve. Most of the negative results have been anecdotal and the positive experiments have not been collected in such a way that they are possible to analyze. In this review, we have collected detailed data from more than 150 experiments including all to date published and many unpublished experiments. Despite a large variation in the data, trends that are found are that RNAi is particularly successful in the family Saturniidae and in genes involv…

0106 biological sciencesPhysiology[SDV]Life Sciences [q-bio]Tissue uptakeBioinformatics01 natural sciencesRNA interferenceRNA interferenceDatabases GeneticDelivery methodsCaenorhabditis elegansRegulation of gene expression0303 health sciencesIMMUNE-RESPONSESMANDUCA-SEXTALepidopteraRNA silencingSILKWORM BOMBYX-MORIResearch DesignInsect ProteinsRNA InterferenceMESSENGER-RNAHELICOVERPA-ARMIGERADOUBLE-STRANDED-RNAComputational biologyBiologyLepidoptera genitaliadsRNA properties03 medical and health sciencesBACILLUS-THURINGIENSISSMALL SILENCING RNASGene silencingAnimalsGene SilencingGene030304 developmental biologyRNA Double-StrandedMechanism (biology)fungiBiology and Life SciencesARMYWORM SPODOPTERA-FRUGIPERDAbiology.organism_classificationImmunity Innate010602 entomologyGene Expression RegulationInsect ScienceEpidermisCAENORHABDITIS-ELEGANSGene functionJournal of insect physiology
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Reticulon-like proteins in Arabidopsis thaliana: structural organization and ER localization

2007

International audience; Reticulons are proteins that have been found predominantly associated with the endoplasmic reticulum in yeast and mammalian cells. While their functions are still poorly understood, recent findings suggest that they participate in the shaping of the tubular endoplamic reticulum (ER). Although reticulon-like proteins have been identified in plants, very little is known about their cellular localization and functions. Here, we characterized the reticulon-like protein family of Arabidopsis thaliana. Three subfamilies can be distinguished on the basis of structural organization and sequence homology. We investigated the subcellular localization of two members of the larg…

0106 biological sciencesProtein familyMolecular Sequence DataBiophysicsArabidopsis[SDV.BC]Life Sciences [q-bio]/Cellular BiologyRTLNB01 natural sciencesBiochemistryPlant Epidermis03 medical and health sciencesProtein structureStructural BiologyArabidopsisGeneticsArabidopsis thalianaAmino Acid SequenceMolecular BiologyCellular localizationConserved SequencePhylogeny030304 developmental biology0303 health sciencesbiologySequence Homology Amino AcidArabidopsis ProteinsEndoplasmic reticulumENDOPLASMIC RETICULUMCHLOROPLASTARABIDOPSIS THALIANACell BiologySubcellular localizationbiology.organism_classificationRETICULONBiochemistryReticulonRETICULON-LIKE PROTEIN BSequence Alignment010606 plant biology & botany
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Stomatal deregulation in Plasmopara viticola-infected grapevine leaves.

2007

International audience; In grapevine, the penetration and sporulation of Plasmopara viticola occur via stomata, suggesting functional relationships between guard cells and the pathogen. This assumption was supported by our first observation that grapevine (Vitis vinifera cv. Marselan) cuttings infected by P. viticola wilted more rapidly than healthy ones when submitted to water starvation. • Here, complementary approaches measuring stomatal conductance and infrared thermographic and microscopic observations were used to investigate stomatal opening/closure in response to infection. • In infected leaves, stomata remained open in darkness and during water stress, leading to increased transpir…

0106 biological sciencesStomatal conductancePLASMOPARA VITICOLAPhysiologySTOMATAL CONDUCTANCEPlant ScienceBiology01 natural sciencesPlant Epidermis03 medical and health scienceschemistry.chemical_compoundABSCISIC ACID (ABA)Guard cellBotanyVitisDOWNY MILDEWAbscisic acid030304 developmental biologyTranspirationOomycete0303 health sciencesfungifood and beveragesWaterbiology.organism_classification[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacySporePlant LeaveschemistryOomycetesGRAPEVINE (VITIS VINIFERA)Plasmopara viticolaGUARD CELLSDowny mildew010606 plant biology & botanyAbscisic AcidThe New phytologistReferences
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