Search results for "defence mechanisms"

showing 10 items of 30 documents

Determination of pollutants with multixenobiotic -resistance inhibiting properties

1995

Abstract Recent evidence indicates that inherent presence of multixenobiotic resistance (MXR) mechanism represents a general biological defence mechanism for protection of organisms against both endogenous and environmental toxins. In aquatic organisms exposed to polluted waters, this P-170 glycoprotein pump also removes ‘new’ man-made toxic chemicals out of cells. Many chemical agents may alter the function of this fragile mechanism. A new class of compounds, referred to as ‘chemosensitizers’, deserve a top rank among environmentally-hazardous chemicals, since they block this basic natural defence mechanism. The authors measured the concentration of such MXR-inhibiting substances by two me…

PollutantResistance (ecology)Defence mechanismsGeneral MedicineMultixenobiotic resistance ; MXR ; S180 cells ; PollutantsAquatic ScienceBiologyOceanographyPollutionAquatic organismsNatural resistanceChemical agentsEnvironmental chemistryEffluxFunction (biology)
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Mars-105 study : Time-courses and relationships between coping, defense mechanisms, emotions and depression

2013

International audience; This study investigated the time-courses and the relationships between coping, defense mechanisms, emotions and depression considered as key factors in adaptation to ICE (Isolated and Confined Extreme) environments. During the space simulation, the Mars-105 experiment, positive emotion decreased significantly and significant positive correlations were found between mature defenses and both positive emotions and Task-Oriented Coping (TOC), as well as between Disengagement-Oriented Coping (DOC) and symptoms of depression. These findings show the impact of space simulation on affective states and the relations of defense to both coping and emotion, which underline the r…

Coping (psychology)Social PsychologyDepression05 social sciencesEmotionsDefence mechanisms[SHS.PSY]Humanities and Social Sciences/Psychology050109 social psychology01 natural sciencesDevelopmental psychology[ SHS.PSY ] Humanities and Social Sciences/PsychologyKey factorsPsychological adaptation0103 physical sciencesPositive emotionDefense0501 psychology and cognitive sciencesIsolated and confinated Extreme environmentsAdaptationCopingPsychology010303 astronomy & astrophysicsSocial psychologyApplied Psychology
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Vertebrate defense against parasites: Interactions between avoidance, resistance, and tolerance

2017

Hosts can utilize different types of defense against the effects of parasitism, including avoidance, resistance, and tolerance. Typically, there is tremendous heterogeneity among hosts in these defense mechanisms that may be rooted in the costs associated with defense and lead to trade‐offs with other life‐history traits. Trade‐offs may also exist between the defense mechanisms, but the relationships between avoidance, resistance, and tolerance have rarely been studied. Here, we assessed these three defense traits under common garden conditions in a natural host–parasite system, the trematode eye‐fluke Diplostomum pseudospathaceum and its second intermediate fish host. We looked at host ind…

0106 biological sciences0301 basic medicineDefence mechanismsParasitismZoologyTrade-off010603 evolutionary biology01 natural sciencesresistance03 medical and health sciencesbiology.animaltrade‐offSalmoEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape Conservationtrade-offtoleranceEcologybiologyResistance (ecology)host–parasite interactionEcologyHost (biology)parasite avoidanceVertebrateAquatic animalbiology.organism_classificationhost-parasite interaction030104 developmental biologyta1181Ecology and Evolution
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From elicitins to lipid-transfer proteins: a new insight in cell signalling involved in plant defence mechanisms.

2002

Elicitins and lipid-transfer proteins are small cysteine-rich lipid-binding proteins secreted by oomycetes and plant cells, respectively, that share some structural and functional properties. In spite of intensive work on their structure and diversity at the protein and genetic levels, the precise biological roles of lipid-transfer proteins remains unclear, although the most recent data suggest a role in somatic embryogenesis, in the formation of protective surface layers and in defence against pathogens. By contrast, elicitins are known elicitors of plant defence, and recent work demonstrating that elicitins and lipid-transfer proteins share the same biological receptors gives a new perspe…

0106 biological sciencesSomatic embryogenesisProtein ConformationDefence mechanismsPlant ScienceBiology01 natural sciencesFungal Proteins03 medical and health sciencesErgosterolReceptor030304 developmental biologyPlant DiseasesPlant Proteins0303 health sciencesBinding proteinAlgal ProteinsLysophosphatidylcholinesProteinsElicitinAntigens PlantLipidsImmunity InnateBiochemistryOomycetesProtein-lipid complexStress MechanicalSignal transductionCarrier ProteinsPlant lipid transfer proteins010606 plant biology & botanySignal TransductionTrends in plant science
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Differences in parasite susceptibility and costs of resistance between naturally exposed and unexposed host populations

2009

It is generally assumed that resistance to parasitism entails costs. Consequently, hosts evolving in the absence of parasites are predicted to invest less in costly resistance mechanisms than hosts consistently exposed to parasites. This prediction has, however, rarely been tested in natural populations. We studied the susceptibility of three naïve, three parasitized and one recently isolated Asellus aquaticus isopod populations to an acanthocephalan parasite. We found that parasitized populations, with the exception of the isopod population sympatric with the parasite strain used, were less susceptible to the parasite than the naïve populations. Exposed but uninfected (resistant) isopods f…

education.field_of_studybiologyHost (biology)PopulationDefence mechanismsParasitismZoologybiology.organism_classificationSurvival AnalysisAcanthocephalaHost-Parasite InteractionsSympatric speciationAnimalsRegression AnalysisParasite hostingAsellus aquaticuseducationEcology Evolution Behavior and SystematicsIsopodaLocal adaptationJournal of Evolutionary Biology
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Invertebrate lectins: new aspects in retrospects

1991

Invertebrate lectins may be regarded as a special group of lectins, as there are several reasons for this: (a) their role in different defense mechanisms and in nutrition, (b) their specificity, for instance their anti-neuraminyl reactivity (and no mannose-specific lectins) and (c) their distribution in the haemolymph and in organ cells or defense-commited haemocytes.

BiochemistryHemolymphDefence mechanismsBiologyInvertebrate
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Defense Responses in Two Ecotypes of Lotus japonicus against Non-Pathogenic Pseudomonas syringae

2013

Lotus japonicus is a model legume broadly used to study many important processes as nitrogen fixing nodule formation and adaptation to salt stress. However, no studies on the defense responses occurring in this species against invading microorganisms have been carried out at the present. Understanding how this model plant protects itself against pathogens will certainly help to develop more tolerant cultivars in economically important Lotus species as well as in other legumes. In order to uncover the most important defense mechanisms activated upon bacterial attack, we explored in this work the main responses occurring in the phenotypically contrasting ecotypes MG-20 and Gifu B-129 of L. ja…

CIENCIAS MÉDICAS Y DE LA SALUDSTRESSLotus japonicusLotusInmunologíaDefence mechanismslcsh:MedicinePseudomonas syringaePlant disease resistanceCiencias BiológicasSYRINGAE//purl.org/becyt/ford/1 [https]Gene Expression Regulation PlantTRANSCRIPTOMICBotanyPseudomonas syringaePlant defense against herbivoryArabidopsis thalianalcsh:Science//purl.org/becyt/ford/1.6 [https]Ciencias de las Plantas BotánicaDisease ResistanceOligonucleotide Array Sequence AnalysisPlant DiseasesEcotypeMultidisciplinarybiologyEcotypeLOTUSGene Expression Profilinglcsh:Rfungifood and beverages//purl.org/becyt/ford/3.1 [https]biology.organism_classificationBIOTICMedicina BásicaJAPONICUSLotuslcsh:Q//purl.org/becyt/ford/3 [https]PSEUDOMONASCIENCIAS NATURALES Y EXACTASResearch ArticlePLoS ONE
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Influence of colour, smell and taste on the survival of the wood tiger moth (Arctia plantaginis) adults during predation event

2021

Saalistajien torjumiseksi saalis voi käyttää erilaisia puolustusmekanismeja, jotka stimuloivat useita eri aisteja (ts. multimodaalista signalointia). Esimerkiksi aposemaattiset eliöt puolustautuvat varoitussignaalin lisäksi sekundaarisella puolustuksella. Tässä tutkimuksessa keskityttiin siihen, kuinka täpläsiilikkään (Arctia plantaginis) väritys (genotyypit WW, Wy ovat valkoisia ja yy keltaisia), haju (metoksipyratsiinista) ja maku (pyrrolitsidiinialkaloidista) toimivat puolustuksena lintusaalistajien hyökkäyksiä vastaan. Linnuille tarjottiin kummankin värisiä eläviä siilikkäitä, joita oli manipuloitu niin, että niillä oli joko hajua, makua tai molempia näistä. Näin pystyttiin tutkimaan ku…

varoitusväripredator-prey interactionschemical defencedefence mechanismsyöperhosetwarning colorationalkaloidssaalistusCyanistes caeruleusalkaloiditAposematismmultimodal signallingbirdswarning signalsmothslinnutpredation
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TLR2: for or against Candida albicans?

2005

In a recent issue of Trends in Microbiology, Netea and coworkers presented their opinion that toll-like receptors (TLRs) are involved in escape from the defense mechanisms of the host [1]. In their article, the authors clearly identified three major TLR-mediated escape mechanisms that are used by microbial pathogens, such as Yersinia, Mycobacterium and Candida. Here, we wish to comment on the roll of TLR2 in Candida albicans infections. Netea's interesting hypothesis, that TLR2 expression might confer to mice an increased susceptibility to C.

Microbiology (medical)biologyHost (biology)Defence mechanismsCandidiasisYersiniabiology.organism_classificationMicrobiologyToll-Like Receptor 2MicrobiologyTLR2MiceInfectious DiseasesVirologyCandida albicansImmune ToleranceAnimalsReceptors ImmunologicCandida albicansReceptorMycobacteriumTrends in microbiology
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Plant defense responses induced by arbuscular mycorrhizal fungi

2002

Plants in their environment daily face many organisms such as fungi, bacteria, mycoplasms, viruses, nematodes, etc. Many of them are potential pathogens; in fact thousands of microorganisms are known to cause plant diseases. Despite this large number of deleterious microorganisms, most of the plants are resistant to their attack since they have developed effective mechanisms to protect themselves.

0106 biological sciences2. Zero hunger0303 health sciences[SDV]Life Sciences [q-bio]MicroorganismfungiDefence mechanismsfood and beverages15. Life on landBiologybiology.organism_classificationArbuscular mycorrhizal fungi01 natural sciences[SDV] Life Sciences [q-bio]03 medical and health sciencesBotanyREPONSE DE LA PLANTEPlant defense against herbivoryComputingMilieux_MISCELLANEOUSBacteria030304 developmental biology010606 plant biology & botany
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