Search results for "15N"

showing 10 items of 67 documents

Short term adaptive response of symbiotic N2 fixation in pea to root pruning of half the root system, linked to the availability of carbon assimilates

2014

Symbiotic N fixation of legumes is very sensitive to environmental stresses, like pea pests damaging nodulated roots. However, the impact on their N uptake capacity and plant growth has not been studied so far.We analyzed the adaptive response symbiotic N2 fixation and plant growth of pea wild type Frisson and hypernodulating mutants P64, P118 and P121 mutated respectively on genes SYM28, SYM29 and NOD3 to root pruning of half the root system at the end of the vegetative stage. The adaptive responses of pea: cv. Frisson and 3 of its hypernodulating mutants were compared under varying carbon supplies from photosynthesis.At 380 ppm, mutant P118 showed the lowest decrease of the specific activ…

[ SDV.BV ] Life Sciences [q-bio]/Vegetal BiologyC Assimilation and partitioningNodules15NRacinesMarquage isotopique 13CPisum sativum L.AblationRootsMutants hypernodulantsFixation symbiotique du N2Low or elevated CO2 concentrationSink strength for CTeneur en CO2 faible ou élevéeForce de puits pour le carboneSymbiotic N2fixation15N Isotopic labeling[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyHypernodulating mutantsRoot pruning13CAssimilation et répartition du CNodosités
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Réponses adaptatives du Pois protéagineux à une perturbation de la fixation symbiotique d'azote en relation avec le métabolisme carboné

2013

[SDE] Environmental Sciences[SDV]Life Sciences [q-bio]RacinesPisum sativum L.Marquage isotopique 13CAblationMutants hypernodulantsnodositésFixation symbiotique du N2[SDV] Life Sciences [q-bio]Teneur en CO2 faible ou élevéeForce de puits pour le carbone15N Isotopic labeling[SDE]Environmental SciencesAssimilation et répartition du C
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Theoretical evaluation of 15N isotopic methods for measuring symbiotic nitrogen fixation in the fied

2008

International audience; Isotopic methods for the measurement of symbiotic N2 fixation by leguminous plants in the field rely on the use of differences in 15N enrichment between the N sources potentially available for leguminous crops, soil mineral N and atmospheric N2 . This methodology has been fully documented, especially concerning limitations due to non uniform and non constant distribution of 15N and to the use of a reference plant to measure it. Although all authors recognise the necessity of isotopic methods for giving yield independent and time-integrated estimates of symbiotic fixation, they also agree that these methods intrinsically remain imperfect. Our aim in this chapter is (i…

[SDV] Life Sciences [q-bio][SDE] Environmental Sciencesnatural abundancesymbiotic fixation15N[SDV]Life Sciences [q-bio][SDV.IDA]Life Sciences [q-bio]/Food engineering[SDE]Environmental Sciencesmethod[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineeringisotopic dilutionmethod;15N;natural abundance;isotopic dilution;symbiotic fixation
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Mycorrhizal symbiosis changes host nitrogen source use

2021

Abstract Purpose The ecological importance of arbuscular mycorrhizal fungi (AMF) in plant acquisition of inorganic and organic sources of nitrogen (N) is not clear. To improve understanding of the plant N nutrition ecology, we tested the effect of intraspecific competition and AMF in plant N source use in growth and N acquisition. Methods Solidago virgaurea was grown in microcosms in a fully factorial experiment under greenhouse conditions. The factors tested were intraspecific competition between seedlings and adult plants (yes, no), N source (NH4, glycine) and AMF (inoculated with Glomus hoi, not inoculated). Results When grown separately, non-mycorrhizal seedling growth was highest when …

arktinen alueplant competitionfungikasvifysiologiafood and beveragesSoil SciencePlant ScienceArbuscular mycorrhizal fungi (AMF)δ15N isotopic signaturesekologinen lokeroArctictyppiSolidago virgaureanitrogen (N)mykorritsasienetniche partitioningmykorritsaasterikasvitPlant and Soil
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The trophic structure of the pipefish community (Pisces: Syngnathidae) from a western Mediterranean seagrass meadow based on stable isotope analysis

2004

Syngnathus abaster andSyngnathus typhle (Pisces: Syngnathidae) from a dense Cymodocea nodesa meadow in the western Mediterranean Stagnone di Marsala (Italy) were studied using δ13N and δ15N analysis. Because of the presence of these two species in the same habitat and the specialized parental care by the male, the effect of species and sex on the isotopic composition was also studied to investigate the different feeding strategies between and within species.S. abaster andS. typhle exhibited enriched13C and15N values throughout the sampling period (mean ±SE, δ13C =−10.5±1.8‰ and−10.8±2.0‰, δ15N=11.9±0.7‰ and 10.6±1.0%., respectively), suggesting that these species receive their energy mainly…

biologyδ13CEcologyδ15NAquatic Sciencebiology.organism_classificationPipefishSyngnathidaeSeagrassCymodoceaEnvironmental ChemistryGeneral Environmental ScienceTrophic levelIsotope analysisEstuaries
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Five-to-Six Membered Ring-rearrangements in the Reaction of 5-Perfluoroalkyl-1,2,4-oxadiazoles with Hydrazine and Methylhydrazine

2006

The hydrazinolysis reaction of 5-perfluoroalkyl-1,2,4-oxadiazoles with hydrazine or methylhydrazine as bidentate nucleophiles has been investigated. The reaction occurred through the addition of the bidentate nucleophile to the C(5)-N(4) double bond of the 1,2,4-oxadiazole followed by ring-opening and ring-closure (ANRORC) involving the second nucleophilic site of the reagent. This ring-closure step could involve either the original C(3) of the 1,2,4-oxadiazole (giving a five-to-five membered ring rearrangement) or an additional electrophilic center linked to it (exploiting a five-to-six membered ring rearrangement). An alternative initial nucleophilic attack may involve the additional elec…

chemistry.chemical_classificationMethylhydrazineKetoneDouble bondChemistryStereochemistryTRANSFORMATIONS15N-NMR SPECTROSCOPYCHEMICAL SHIFT CALCULATIONSOrganic ChemistryFLUORINATED HETEROCYCLIC-COMPOUNDSHydrazoneRegioselectivityBKR REARRANGEMENTRing (chemistry)EXPEDIENT ROUTEMOLECULAR-REARRANGEMENTSNucleophileAROMATICITY INDEXElectrophileATTACKFIVE TO SIX REAGGANGEMENT
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Flotsam samples can help explain the δ13C and δ15N values of invertebrate resting stages in lake sediment

2018

Abstract The stable isotopic composition of chitinous remains of Cladocera (water fleas) and freshwater Bryozoa (moss animals) preserved in lake sediment records can provide supporting insights into past environmental and ecosystem changes in lakes. Here we explore whether analyses of these remains isolated from lake flotsam can provide information on the driving variables affecting the isotopic composition of these remains. We collected flotsam in 53 lakes and found enough material in 33 lakes to measure the stable carbon and nitrogen isotope ratios (expressed as δ13C and δ15N values, respectively) of resting stages. These values were compared with lake characteristics, water chemistry mea…

flotsam0106 biological sciencesArcheology010504 meteorology & atmospheric sciencesta1171stable isotopessedimentitjärvet01 natural scienceslakesPhytoplanktonSedimentary organic matterEcology Evolution Behavior and SystematicsEphippia0105 earth and related environmental sciencesisotoopitGlobal and Planetary Changeδ13CbiologyStable isotope ratiomethane010604 marine biology & hydrobiologySedimentGeologyδ15NselkärangattomatPlanktoninvertebratesbiology.organism_classificationOceanographystatoblastssedimentta1181Environmental scienceorgaaninen ainesephippiaQuaternary Science Reviews
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Nitrogen uptake and nitrogen fertilizer recovery in old and modern wheat genotypes grown in the presence or absence of interspecific competition

2015

Choosing genotypes with a high capacity for taking up nitrogen (N) from the soil and the ability to efficiently compete with weeds for this nutrient is essential to increasing the sustainability of cropping systems that are less dependent on auxiliary inputs. This research aimed to verify whether differences exist in N uptake and N fertilizer recovery capacity among wheat genotypes and, if so, whether these differences are related to a different competitive ability against weeds of wheat genotypes. To this end, 12 genotypes, varying widely in morphological traits and year of release, were grown in the presence or absence of interspecific competition (using Avena sativa L. as a surrogate wee…

food.ingredientField experimentmedia_common.quotation_subjectWeed suppression abilityGrowing seasonnitrogen assimilation capacityPlant Scienceengineering.materialBiologylcsh:Plant cultureCompetition (biology)old genotypesNutrientfoodlcsh:SB1-1110Original Researchmedia_commonModern varietiesdurum wheat old genotypes modern varieties nitrogen assimilation capacity weed suppression ability weed competition 15N fertilizer recoveryWeed competitionfood and beveragesdurum wheatInterspecific competitionSettore AGR/02 - Agronomia E Coltivazioni ErbaceeAvenaAgronomyengineeringFertilizerWeed15N fertilizer recovery
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Harmaahylkeen (Halichoerus grypus) ravinto eri osissa pohjoista Itämerta

2013

Itämeren harmaahylkeiden (Halichoerus grypus) yksilömäärien kasvu viime vuosikymmeninä on aiheuttanut ristiriitoja ammattikalastajien ja hylkeiden välille. Hylkeiden on todettu muun muassa vahingoittavan pyydyksiä ja syövän kalastajille arvokasta saalista myös pyydyksistä, kuten lohta (Salmo salar), sekä karkottavan kalaparvia kalastusalueiden ulkopuolelle. Toisaalta harmaahylkeille uhkana on hukkuminen pyydyksiin sekä lisääntynyt häirintä kalastajien ja meriliikenteen toimesta. Näiden ristiriitojen myötä kiinnostus hylkeiden ravinnosta on lisääntynyt. Hylkeiden ravinnonkäyttöä on perinteisesti tutkittu ruoansulatuskanavan sisällöstä. Tämän menetelmän ongelmana on, että saalislajien sulamat…

isotoopithallihylkeetItämerivakaat isotoopitsilakkaδ13Charmaahyljelohiδ15Nravintoverkotravintoverkkotaso
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Methodologies to study soil nitrogen Méthodes pour l'étude de l'azote dans le sol Metodologie per lo studio dell'azoto nel suolo

2011

Nitrogen (N) is a key element within terrestrial ecosystems and, thus, the whole knowledge of its transformation processes is crucial. Especially in soil, complex and heterogeneous system, N undergoes several transformations as it is indicated by its various oxidation states. Moreover, it mainly occurs under a number of organic forms, whose identification and quantification is still challenging. Here, we review some extraction methodologies of N from soil, but also the isotope dilution technique, which helps in assessing gross N mineralisation. Finally, we discuss the NanoSIMS technique, which shows a good potential for investigating soil N dynamics at nanoscale. Résumé L'azote (N) est un é…

methodology of analysiSettore AGR/13 - Chimica Agrarianitrogenδ15Nsoil
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