Search results for "Substrate"

showing 10 items of 1018 documents

Leaf sodium, potassium and electrolyte accumulation capacity of plant species from salt-affected coastal habitats of the Baltic Sea: Towards a defini…

2021

Abstract The aim of the present study was to compare a relatively large number of native plant species from salt-affected coastal habitats with respect to their Na+ and K+ accumulation capacity and electrolyte level in leaves. Sampling sites (77 in total) were chosen during field survey in coastal habitats located at geographically distant places along the Baltic Sea in the territory of Latvia, Estonia, Denmark and Sweden. The main criterion for selection of sampling sites was minimum average soil electrical conductivity (EC) above 200 mS m–1. Leaf samples of 102 taxa (species) from 34 families were collected, with a total number of samples reaching 502, and their water content, Na+ and K+ …

0106 biological sciencesBiomass (ecology)EcologyRange (biology)PotassiumSodiumchemistry.chemical_elementPlant ScienceElectrolyte010603 evolutionary biology01 natural sciencesSubstrate (marine biology)HabitatchemistryEnvironmental chemistryWater contentEcology Evolution Behavior and Systematics010606 plant biology & botanyFlora
researchProduct

Addition of high C:N crop residues to a P-limited substrate constrains the benefits of arbuscular mycorrhizal symbiosis for wheat P and N nutrition

2021

Many aspects concerning the role of arbuscular mycorrhizal (AM) fungi in plant nutrient uptake from organic sources remain unclear. Here, we investigated the contribution of AM symbiosis to N and P uptake by durum wheat after the addition of a high C:N biomass to a P-limited soil. Plants were grown in pots in the presence or absence of a multispecies AM inoculum, with (Org) or without (Ctr) the addition of 15N-labelled organic matter (OM). A further treatment, in which 15N was applied in mineral form (Ctr+N) in the same amount as that supplied in the Org treatment, was also included. Inoculation with AM had positive effects on plant growth in both control treatments (Ctr and Ctr+N), mainly …

0106 biological sciencesCrop residueCanonical discriminant analysis; N:P ratio; Plant growth; Pot experiment; Triticum durum; Plant Roots; Soil; Symbiosis; Triticum; Mycorrhizaemedia_common.quotation_subject15N fertiliser recovery; Canonical discriminant analysis; N:P ratio; Plant growth; Pot experiment; Triticum durumBiomassPlant ScienceBiology01 natural sciencesPlant RootsCompetition (biology)03 medical and health sciencesSoilNutrientSymbiosisMycorrhizaeGeneticsOrganic matterSymbiosisMolecular BiologyEcology Evolution Behavior and SystematicsTriticumCanonical discriminant analysi030304 developmental biologymedia_commonPlant growthchemistry.chemical_classification0303 health sciencesPot experimentInoculationfungiSubstrate (chemistry)food and beveragesGeneral MedicineSettore AGR/02 - Agronomia E Coltivazioni ErbaceeAgronomychemistryTriticum durumN:P ratio15N fertiliser recoveryOriginal ArticleCanonical discriminant analysis010606 plant biology & botany
researchProduct

Fatty acid hydroperoxide lyase of green bell pepper: cloning in Yarrowia lipolytica and biogenesis of volatile aldehydes

2004

Publication Inra prise en compte dans l'analyse bibliométrique des publications scientifiques mondiales sur les Fruits, les Légumes et la Pomme de terre. Période 2000-2012. http://prodinra.inra.fr/record/256699; International audience; Fatty acid hydroperoxide lyase (HPO lyase) is a cytochrome P450 acting on fatty acid hydroperoxides in many organisms. The expression of green bell pepper HPO lyase in the yeast Yarrowia lipolytica is described for the first time. HPO lyase activity from yeast extract and whole yeast cells is measured and aldehydes production from yeast extract and whole yeast cells is compared. 1200 U/L reaction medium were obtained after 96 h of culture on olive oil rich me…

0106 biological sciencesEXPRESSIONBioconversionVOLATILE COMPOUNDSBioengineeringBiology01 natural sciencesApplied Microbiology and BiotechnologyBiochemistryCLONING03 medical and health sciencesSUBSTRATEBiotransformation010608 biotechnologyYeast extractLyase activity030304 developmental biologychemistry.chemical_classificationHYDROPHOBICITY0303 health sciencesBIOCONVERSIONfungiYarrowiabiology.organism_classificationLyaseYeastYARROWIA LIPOLYTICAHYDROPEROXIDE LYASEEnzyme[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologychemistryBiochemistryWHOLE CELLSFATTY ACIDBiotechnology
researchProduct

Applicability of a single‐use bioreactor compared to a glass bioreactor for the fermentation of filamentous fungi and evaluation of the reproducibili…

2021

Abstract The implementation of single‐use technologies offers several major advantages, e.g. prevention of cross‐contamination, especially when spore‐forming microorganisms are present. This study investigated the application of a single‐use bioreactor in batch fermentation of filamentous fungus Penicillium sp. (IBWF 040‐09) from the Institute of Biotechnology and Drug Research (IBWF), which is capable of intracellular production of a protease inhibitor against parasitic proteases as a secondary metabolite. Several modifications to the SU bioreactor were suggested in this study to allow the fermentation in which the fungus forms pellets. Simultaneously, fermentations in conventional glass b…

0106 biological sciencesEnvironmental Engineeringsingle‐use bioreactorMicroorganismPenicillium spBioengineeringSecondary metabolite01 natural sciencesprotease inhibitor03 medical and health sciences010608 biotechnologyPelletmedicineBioreactorFood sciencefermentationResearch Articles030304 developmental biology0303 health sciencesbiologyChemistrytechnology industry and agricultureSubstrate (chemistry)biology.organism_classificationequipment and suppliespelletsSingle-use bioreactorPenicilliumFermentationTP248.13-248.65Biotechnologymedicine.drugResearch ArticleEngineering in Life Sciences
researchProduct

High within- and between-trunk variation in the nematoceran (Diptera) community and its physical environment in decaying aspen trunks

2012

Dead wood is a primary habitat for a large number of insects, including species from many nematoceran (Diptera) groups. The species living in dead wood must be adapted to the ephemeral and ever-changing nature of their substrate. There is a growing body of knowledge about the effects of dead wood quality and the surrounding landscape on the saproxylic beetle community, but we know very little about the other saproxylic insects. Moreover, we know only very little about the variation in the insect community between different parts of decaying wood pieces. Using emergence traps, we studied the saproxylic nematoceran communities occupying different parts of decaying fallen aspen trunks in a bor…

0106 biological sciencesFungus gnatbiologyEcologymedia_common.quotation_subjectEphemeral keyTaigaInsect15. Life on landbiology.organism_classification010603 evolutionary biology01 natural sciencesSubstrate (marine biology)HabitatInsect ScienceCrane flyta1181Species richnessEcology Evolution Behavior and Systematics010606 plant biology & botanymedia_commonInsect Conservation and Diversity
researchProduct

Effects of irrigation, peat-alternative substrate and plant Habitus on the morphological and production characteristics of Sicilian rosemary (Rosmari…

2020

Irrigation and growing substrate are considered as essential cultivation practices in order to obtain good productive and qualitative performance of potted rosemary plants. In pot growing, the chemical, physical and biological characteristics of the substrate must be stable over time in order to allow regular plant growth. However, the effects of cultivation techniques on the characteristics of potted rosemary are little known. Peat is traditionally used as the organic growing medium

0106 biological sciencesIrrigationPeatPlant Scienceengineering.material01 natural sciencesRosmarinusirrigationlaw.inventionaromatic specieplant habitulawOrnamental plantsustainable cultivationlcsh:Agriculture (General)Essential oilbiologyCompostalternative substrate04 agricultural and veterinary sciencesbiology.organism_classificationSubstrate (marine biology)lcsh:S1-972Settore AGR/02 - Agronomia E Coltivazioni ErbaceeHorticultureplant habitusOfficinalis040103 agronomy & agricultureengineering0401 agriculture forestry and fisheriesaromatic speciesAgronomy and Crop Sciencealternative substrates010606 plant biology & botanyFood Science
researchProduct

Optimization of the enzyme power source for a nano drug delivery system fuelled by glucose in blood plasma

2019

A unique in vivo electrical pulse generator to improve membrane permeability for drugs and simultaneously facilitate self-powered nano devices for nano drug delivery systems (NDDS) was identified. The use of an unsupported biological catalyst component of the power supply was aimed at the NDDS instead of a conventional membrane electrode assembly (MEA). Self-powered carriers of drugs and prodrugs with improved controlled release capability to target areas using substrate available in biological matrices such as glucose in blood is envisaged. The experimental application implemented prototype designed chambers allowing the entry of premixed precursors and low ohm resistance due the absence o…

0106 biological sciencesMaterials sciencebiologyMembrane permeabilityOpen-circuit voltageDiffusionMembrane electrode assemblySubstrate (chemistry)Proton exchange membrane fuel cell02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesControlled releaseChemical engineering:NATURAL SCIENCES:Physics [Research Subject Categories]biology.proteinGlucose oxidase0210 nano-technology010606 plant biology & botanyIOP Conference Series: Materials Science and Engineering
researchProduct

Does trait-based joint species distribution modelling reveal the signature of competition in stream macroinvertebrate communities?

2021

1. The occupancy and abundance of species are jointly driven by local factors, such as environmental characteristics and biotic interactions, and regional‐scale factors, such as dispersal and climate. Recently, it has been shown that biotic interactions shape species occupancies and abundances beyond local extents. However, for small ectothermic animals, particularly for those occurring in freshwater environments, the importance of biotic interactions remains understudied. Species‐to‐species associations from joint species distribution models (i.e. species associations while controlling for environmental characteristics) are increasingly used to draw hypotheses of which species possibly sho…

0106 biological sciencesMetacommunitymedia_common.quotation_subjectSpecies distributionpurotfunctional feeding guildsBiology010603 evolutionary biology01 natural sciencesCompetition (biology)Riversjoint species distribution modelsAbundance (ecology)substrate attachment modedistributionAnimalsdispersalEcosystemFinlandEcology Evolution Behavior and Systematicsmedia_commonEcology010604 marine biology & hydrobiologyinterspecific competitionvesiekosysteemitlevinneisyysInterspecific competitioneliöyhteisöt15. Life on landselkärangattomatstreamsInvertebratesEnvironmental niche modellingPhenotypeHabitat1181 Ecology evolutionary biologyBiological dispersalAnimal Science and Zoologybody sizeleviäminen
researchProduct

Potential of an exploitation of acid-tolerant antimicrobial microorganisms evolving enzyme systems for the utilization of dairy by-products and ligno…

2016

Introduction Bioproduction of optically pure lactic acid (LA) has roused interest in the recent years due to its potential application in a wide range of fields, and there is a significant interest to further development of sustainable and cost-effective process. However, the efficient utilization of agro-industrial wastes for LA production still causes considerable challenges. The biotechnological LA production within the targeted cost still required the development of high-performance LA-producing microorganisms and the lowering of the costs of raw materials and fermentation process. Cheap biomass, such as starchy and cellulosic agricultural residues or by-products from the food industry,…

0106 biological sciencesOpinionHistologyMicroorganismcheese whey ; lignocellulosic substrate ; lactic acid bacteria ; enzyme activities ; lactic acid production ; fermentation processBiomedical EngineeringLignocellulosic biomassBioengineering01 natural sciences7. Clean energychemistry.chemical_compoundcheese whey010608 biotechnologyFood sciencelignocellulosic substrate2. Zero hungerchemistry.chemical_classification010405 organic chemistrybusiness.industryBioengineering and Biotechnologyfood and beveragesAntimicrobialfermentation process0104 chemical sciencesBiotechnologyLactic acidlactic acid bacteriaEnzymechemistryenzyme activities13. Climate actionFermentationlactic acid productionbusinessAcid tolerantBiotechnology
researchProduct

Characterization of (3H) acifluorfen binding to purified pea etioplasts, and evidence that protoporphyrinogen oxidase specifically binds acifluorfen

1992

It is now generally accepted that protoporphyrinogen oxidase is the target-enzyme for diphenylether-type herbicides. Recent studies [Camadro, J-M., Matringe, M., Scalla, R. & Labbe, P. (1991) Biochem. J. 277, 17–21] have revealed that in maize, diphenyl ethers competitively inhibit protoporphyrinogen oxidase with respect to its substrate, protoporphyrinogen IX. In this study, we show that, in purified pea etioplast, [3H]acifluorfen specifically binds to a single class of high-affinity binding sites with an apparent dissociation constant of 6.2 ± 1.3 nM and a maximum density of 29 ± 5 nmol/g protein. [3H]Acifluorfen binding reaches equilibrium in about 1 min at 30°C. Half dissociation occurs…

0106 biological sciencesOxidoreductases Acting on CH-CH Group DonorsStereochemistry[SDV]Life Sciences [q-bio]PhthalimidesAcifluorfen01 natural sciencesBiochemistrySubstrate Specificity03 medical and health scienceschemistry.chemical_compoundMALHERBOLOGIEEtioplastProtoporphyrinogen OxidaseBinding siteComputingMilieux_MISCELLANEOUS030304 developmental biologychemistry.chemical_classificationOrganelles0303 health sciencesOxidase testBinding SitesPlants MedicinalProtoporphyrin IXMolecular StructureBIOCHIMIEHerbicidesFabaceaeProtoporphyrinogen IX[SDV] Life Sciences [q-bio]KineticsEnzymechemistryBiochemistryNitrobenzoatesProtoporphyrinogen oxidaseOxidoreductases010606 plant biology & botany
researchProduct