Search results for " Pathways"

showing 10 items of 621 documents

Complete sequencing of Novosphingobium sp. PP1Y reveals a biotechnologically meaningful metabolic pattern.

2014

Background Novosphingobium sp. strain PP1Y is a marine α-proteobacterium adapted to grow at the water/fuel oil interface. It exploits the aromatic fraction of fuel oils as a carbon and energy source. PP1Y is able to grow on a wide range of mono-, poly- and heterocyclic aromatic hydrocarbons. Here, we report the complete functional annotation of the whole Novosphingobium genome. Results PP1Y genome analysis and its comparison with other Sphingomonadal genomes has yielded novel insights into the molecular basis of PP1Y’s phenotypic traits, such as its peculiar ability to encapsulate and degrade the aromatic fraction of fuel oils. In particular, we have identified and dissected several highly …

NovosphingobiumSphingomonadDe novo sequencing; Novosphingobium sp. PP1Y; Sphingomonads; Aromatic pollutant compounds/bioremediationAromatic pollutant compoundComputational biologyNovosphingobium sp. PP1YAromatic pollutant compounds/bioremediationGenomeSphingomonadsDNA sequencingDe novo sequencingbioremediationNext generation sequencingGeneticsPhylogenyWhole genome sequencingGeneticschemistry.chemical_classificationbiologyHigh-Throughput Nucleotide SequencingQuorum SensingSequence Analysis DNAbiology.organism_classificationSphingomonadaceaeSphingomonadaceaeQuorum sensingBiodegradation EnvironmentalchemistryGenes BacterialEnergy sourceAromatic hydrocarbonMetabolic Networks and PathwaysResearch ArticleBiotechnology
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Mammary olfactory signalisation in females and odor processing in neonates: ways evolved by rabbits and humans

2009

International audience; Mammalian females have long been known to release olfactory attraction in their offspring. Mammary odor cues control infant state, attention and directional responses, delay distress responses, stimulate breathing and positive oral actions, and finally can boost learning. Here, we survey female-offspring odor communication in two mammalian species - European rabbits and humans - taken as representatives of evolutionary extremes in terms of structure and dynamics of mother-infant relations, and level of neonatal autonomy. Despite these early psychobiological differences, females in both species have evolved mammary structures combining multiple sources of endogenous a…

OffspringPheromones HumanContext (language use)Sensory systemOlfactionBiologyPheromones03 medical and health sciencesBehavioral Neurosciencepheromone0302 clinical medicineSpecies Specificityrabbit (Oryctolagus cuniculus)AnimalsHumans0501 psychology and cognitive sciences050102 behavioral science & comparative psychologyhumanMaternal BehaviorComputingMilieux_MISCELLANEOUSInstinctCommunicationmilkbusiness.industryMechanism (biology)[SCCO.NEUR]Cognitive science/Neuroscience05 social sciencesOlfactory PathwaysBiological EvolutionAnimals SucklingBreast FeedingOdorAnimals NewbornOdorantsmother-infant relations[ SCCO.NEUR ] Cognitive science/NeurosciencePheromonePerceptionRabbitsneonatebusinessNeuroscienceBreast feeding030217 neurology & neurosurgeryolfaction
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Olfactory function after microscopic endonasal surgery in patients with nasal polyps.

1997

A controlled prospective study on 31 patients with nasal polyps was performed to evaluate the time course of olfactory function after endonasal surgery. A modified Connecticut Chemosensory Clinical Research Center (CCCRC) olfactory function test was used to measure olfactory threshold, odor identification ability, and odor discrimination ability. The test was performed in all patients 1–3 days before surgery (V1), 7–10 days after surgery (V2), and after 1 (V3), 2 (V4), 3 (V5), and 6 (V6) months. Mean olfactory threshold in the CCCRC butanol test was 4.19 at V1 (= moderate hyposmia). At V2, it decreased to 3.46 (= severe hyposmia), before increasing to 5.16 at V3 and 5.22 at V4 (= mild hypo…

Olfactory systemAdultMalemedicine.medical_specialtyTime Factors03 medical and health sciences0302 clinical medicineNasal PolypsmedicineHumansIn patientNasal polypsProspective Studies030223 otorhinolaryngologyProspective cohort studyPostoperative Carebusiness.industryEndoscopyOlfactory PathwaysMiddle Agedmedicine.diseaseSurgerySmellOtorhinolaryngology030220 oncology & carcinogenesisTime courseFemalebusinessAmerican journal of rhinology
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Afferent and efferent connections of the olfactory bulbs in the lizard Podarcis hispanica.

1991

The connections of the olfactory bulbs of Podarcis hispanica were studied by tract-tracing of injected horseradish peroxidase. Restricted injections into the main olfactory bulb (MOB) resulted in bilateral terminallike labeling in the medial part of the anterior olfactory nucleus (AON) and in the rostral septum, lateral cortex, nucleus of the lateral olfactory tract, and ventrolateral amygdaloid nucleus. Bilateral retrograde labeling was found in the rostral lateral cortex and in the medial and dorsolateral AON. Ipsilaterally the dorsal cortex, nucleus of the diagonal band, lateral preoptic area, and dorsolateral amygdala showed labeled cell bodies. Retrogradely labeled cells were also foun…

Olfactory systemAfferent PathwaysVomeronasal organGeneral NeuroscienceOlfactory tubercleBrainLizardsAnatomyBiologyAmygdalaAxonal TransportEfferent PathwaysOlfactory BulbFunctional LateralityOlfactory bulbAnterior olfactory nucleusStria terminalisDorsal raphe nucleusnervous systemAnimalsNeuroscienceHorseradish PeroxidaseOlfactory tractThe Journal of comparative neurology
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Characterization of somatostatin- and cholecystokinin-immunoreactive periglomerular cells in the rat olfactory bulb.

2005

Periglomerular cells (PG) are interneurons of the olfactory bulb (OB) that modulate the first synaptic relay of the olfactory information from the olfactory nerve to the dendrites of the bulbar principal cells. Previous investigations have pointed to the heterogeneity of these interneurons and have demonstrated the presence of two different types of PG. In the rat OB, type 1 PG receive synaptic contacts from the olfactory axons and are γ-aminobutyric acid (GABA)-ergic, whereas type 2 PG do not receive synaptic contacts from the olfactory axons and are GABA immunonegative. In this study, we analyze and characterize neurochemically a group of PG that has not been previously classified either …

Olfactory systemCalbindinsNeuropilOlfactory NervePresynaptic TerminalsSynaptic MembranesNeuropeptideOlfactionBiologyCalbindinSynaptic TransmissionS100 Calcium Binding Protein GOlfactory nerveMicroscopy Electron TransmissionInterneuronsNeural PathwaysNeuropilmedicineAnimalsRats Wistargamma-Aminobutyric AcidGeneral NeuroscienceNeural InhibitionImmunohistochemistryOlfactory BulbOlfactory bulbRatsSmellmedicine.anatomical_structurenervous systemFemaleCalretininCholecystokininSomatostatinNeuroscienceThe Journal of comparative neurology
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Forebrain specialization and the olfactory system in anseriform birds. An architectonic and tracing study.

1992

In anseriform birds the mediodorsal part of the rostral forebrain is covered by a corticoid (= layered) structure, establishing a unique feature of this avian group since in other birds the non-cortical accessory or dorsal hyperstriatum occupies the corresponding surface area of the hemisphere. The efferents of the olfactory bulb are shown to reach this region, which thus can be identified as a heavily enlarged retrobulbar area. The large expansion of this olfactory representation may indicate an important biological function. In comparison to the mammalian olfactory system the three stratified olfactory projection centers of birds should be regarded as retrobulbar, prepiriform and periamyg…

Olfactory systemHistologyCentral nervous systemBiologyEfferent PathwaysPathology and Forensic MedicineProsencephalonSpecies SpecificitySpecialization (functional)GeesemedicineAnimalsRetrobulbar areaBrain MappingCerebrumCell BiologyAnatomyOlfactory PathwaysOlfactory BulbOlfactory bulbSmellProsencephalonmedicine.anatomical_structureDucksForebrainNeuroscienceCell and tissue research
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UDP-glucuronosyltransferases (UGTs) in neuro-olfactory tissues: expression, regulation, and function.

2010

International audience; This work aims to review uridine diphosphate (UDP)-glucuronosyltransferase (UGT) expression and activities along different neuronal structures involved in the common physiological process of olfaction: olfactory epithelium, olfactory bulb, and olfactory cortex. For the first time, using high-throughput in situ hybridization data generated by the Allen Brain Atlas (ABA), we present quantitative analysis of spatial distribution of UGT genes in the mouse brain. The olfactory area is a central nervous system site with the highest expression of UGTs, including UGT isoforms not previously identified in the brain. Since there is evidence of the transfer of xenobiotics to th…

Olfactory systemMESH : RNA Messenger[ SDV.AEN ] Life Sciences [q-bio]/Food and NutritionMESH: GlucuronosyltransferaseMESH : Blood-Brain BarrierMESH: Blood-Brain Barrierchemistry.chemical_compound0302 clinical medicineMESH: SmellPharmacology (medical)MESH: AnimalsMESH: Uridine DiphosphateMESH: Nerve Tissue ProteinsGlucuronosyltransferaseGeneral Pharmacology Toxicology and PharmaceuticsMESH : Olfactory BulbMESH : Nerve Tissue Proteins0303 health sciencesMESH: Gene Expression Regulation EnzymologicOlfactory PathwaysOlfactory BulbMESH : OdorsCell biologySmellmedicine.anatomical_structureBlood-Brain BarrierMESH: Olfactory Bulbmedicine.medical_specialtyCentral nervous systemNerve Tissue ProteinsIn situ hybridizationOlfactionBiologydigestive systemGene Expression Regulation EnzymologicOlfactory Receptor NeuronsUridine DiphosphateMESH : Gene Expression Regulation Enzymologic03 medical and health sciencesInternal medicinemedicineAnimalsRNA MessengerMESH : Uridine Diphosphate030304 developmental biologyMESH: RNA MessengerMESH: OdorsMESH : Olfactory PathwaysMESH : GlucuronosyltransferaseMESH: Olfactory Receptor NeuronsOlfactory bulbUridine diphosphateEndocrinologychemistryOdorantsMESH : SmellMESH : Olfactory Receptor NeuronsMESH : AnimalsOlfactory epithelium[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition030217 neurology & neurosurgeryFunction (biology)MESH: Olfactory Pathways
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Projections from the posterolateral olfactory amygdala to the ventral striatum: neural basis for reinforcing properties of chemical stimuli

2007

Abstract Background Vertebrates sense chemical stimuli through the olfactory receptor neurons whose axons project to the main olfactory bulb. The main projections of the olfactory bulb are directed to the olfactory cortex and olfactory amygdala (the anterior and posterolateral cortical amygdalae). The posterolateral cortical amygdaloid nucleus mainly projects to other amygdaloid nuclei; other seemingly minor outputs are directed to the ventral striatum, in particular to the olfactory tubercle and the islands of Calleja. Results Although the olfactory projections have been previously described in the literature, injection of dextran-amines into the rat main olfactory bulb was performed with …

Olfactory systemMaleBiologyAmygdalalcsh:RC321-571Rats Sprague-DawleyCellular and Molecular NeuroscienceChemical stimulimedicineAnimalslcsh:Neurosciences. Biological psychiatry. NeuropsychiatryNeuronsOlfactory receptorGeneral NeuroscienceOlfactory tuberclelcsh:QP351-495Ventral striatumOlfactory PathwaysAmygdalaCorpus StriatumOlfactory bulbRatslcsh:Neurophysiology and neuropsychologymedicine.anatomical_structurenervous systemIslands of CallejaFemaleNeuroscienceResearch Article
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3D atlas describing the ontogenic evolution of the primary olfactory projections in the olfactory bulb of Xenopus laevis.

2005

The adult Xenopus presents the unique capability to smell odors both in water and air thanks to two different olfactory pathways. Nevertheless, the tadpole can initially perceive only water-borne odorants, as the olfactory receptor neurons (ORN) that will detect air-borne odorants develop later. Such a phenomenon requires major reorganization processes. Here we focused on the precise description of the neuroanatomical modifications occurring in the olfactory bulb (OB) of the tadpole throughout metamorphosis. Using both carbocyanine dyes and lectin staining, we investigated the evolution of ORN projection patterns into the OB from Stages 47 to 66, thus covering the period of time when all th…

Olfactory systemMaleOlfactory Nervemedia_common.quotation_subjectGrowth ConesXenopusOlfactionOlfactory Receptor NeuronsXenopus laevisLectinsmedicineAnimalsMetamorphosismedia_commonFluorescent DyesBrain MappingOlfactory receptorMicroscopy ConfocalbiologyGeneral NeuroscienceMetamorphosis BiologicalOlfactory PathwaysCarbocyaninesbiology.organism_classificationOlfactory BulbOlfactory bulbmedicine.anatomical_structureLarvaFemaleNeuroscienceDevelopmental biologyNeuroanatomyThe Journal of comparative neurology
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Segregated pathways to the vomeronasal amygdala: differential projections from the anterior and posterior divisions of the accessory olfactory bulb.

2007

Apically and basally located receptor neurons in the vomeronasal sensory epithelium express G(i2 alpha)- and G(o alpha)-proteins, V1R and V2R vomeronasal receptors, project to the anterior and posterior accessory olfactory bulb and respond to different stimuli, respectively. The extent to which secondary projections from the two portions of the accessory olfactory bulb are convergent in the vomeronasal amygdala is controversial. This issue is addressed by using anterograde and retrograde tract-tracing methods in rats including electron microscopy. Injections of dextran-amines, Fluoro Gold, cholera toxin-B subunit and Fast Blue were delivered to the anterior and posterior accessory olfactory…

Olfactory systemMaleVomeronasal organBiologyAmygdalaRats Sprague-DawleyVomeronasal receptormedicineAnimalsNeuronsAfferent PathwaysCerebrumHistocytochemistryGeneral NeuroscienceOlfactory tubercleAnatomyAmygdalaOlfactory BulbRatsStria terminalismedicine.anatomical_structurenervous systemFemaleVomeronasal OrganNeuroscienceOlfactory tractThe European journal of neuroscience
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