Search results for "bacteri"

showing 10 items of 5466 documents

Epiphytic bacteria make an important contribution to heterotrophic bacterial production in a humic boreal lake

2017

Bacterial production (BP) in lakes has generally only been measured in the pelagic zone without accounting for littoral BP, and studies of BP at the whole-lake scale are very scarce. In the dystrophic humic lakes, which are common throughout the boreal region, low light penetration through water has been assumed to seriously limit available habitats for littoral organisms. However, many highly humic boreal lakes have extensive partly submerged vegetation around the lake perimeter which can provide well-lit substrata for highly productive epiphyton. We measured epiphytic BP on the littoral vegetation and pelagic BP in a small highly humic boreal lake in Finland during an open-water season an…

0106 biological sciencesepiphytesperiphytonta1172Heterotrophenvironment and nature studiesAquatic Science010603 evolutionary biology01 natural sciencesjärvetperifytonbakteeritpäällyskasvitBotanylakescarbon cycleLittoral zoneAutotrophPeriphytonbacteriaaineenvaihduntaEcology Evolution Behavior and SystematicsEcology010604 marine biology & hydrobiologyhiilen kiertoPelagic zonepelagicboreaalinen vyöhykeBoreallittoralautotrophicympäristö- ja luonnontietoEpiphytic bacteriaEnvironmental sciencemetabolismheterotrophicAquatic Microbial Ecology
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Opinions 100, 101 and 102

2020

The International Committee on Systematics of Prokaryotes has formally made final decisions, taking into account the conclusions of the Judicial Commission, on three pending Requests for an Opinion, thereby allowing the corresponding Opinions to be issued. According to Opinion 100, the request for the recognition of strain A1-86 (=DSM 17629=NCIMB 14373) as the neotype strain of Eubacterium rectale (Hauduroy et al. 1937) Prévot 1938 (Approved Lists 1980) is denied, ruling that a neotype does not need to be designated for E. rectale because strain VPI 0990 (=ATCC 33656=CIP 105953) is considered to be a duplicate isolate of the same strain as VPI 0989 (=ATCC 25578) and may serve as its nomencl…

0106 biological sciencesfood.ingredientMelittangium lichenicolaBiology010603 evolutionary biology01 natural sciencesMicrobiology03 medical and health sciencesfoodType (biology)Eubacterium rectaleMyxococcalesMyxococcusEcology Evolution Behavior and SystematicsPhylogeny030304 developmental biologyGenetics0303 health sciencesEubacteriumStrain (biology)Myxococcus stipitatusGeneral MedicineCorallococcus16. Peace & justiceMyxococcusMyxococcus macrosporusInternational Journal of Systematic and Evolutionary Microbiology
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Essential oil variability in a collection of Ocimum basilicum L. (basil) cultivars.

2016

Ocimum basilicum L. (Lamiaceae) is an aromatic plant of great tradition in the Mediterranean area. Its economic importance is growing up determining an expansion of cultivation. This paper evaluated the morphological traits, the chemical profiles, and antibacterial activity of 21 cultivars of basil belonging to Ê»Genoveseʼ, Ê»Napoletanoʼ, and Ê»Purple basilʼ types. The cultivars were characterized by different growth rate and morphological traits. The chemical composition of the oils analyzed by GC and GC/MS analysis, supported by the PCA analysis, underlined the strong influence of chemotype. It is noteworthy that estragole, never present in Genovese and purple basil types, occurred in …

0106 biological sciencesfood.ingredientPCA analysisBioengineeringMicrobial Sensitivity TestsBiologyGram-Positive Bacteria01 natural sciencesBiochemistrychemistry.chemical_compoundStructure-Activity Relationship0404 agricultural biotechnologyfoodLinaloolMethyl eugenolOcimum basilicum LBiomorphological characteristicAnti-Bacterial AgentBotanyGram-Negative BacteriaAntibacterial activitiesOils VolatileBiomorphological characteristicsMolecular BiologyEssential-oil constituentChemotypeDose-Response Relationship DrugMicrobial Sensitivity TestChemistry (all)Basilicumfood and beveragesEssential-oil constituents04 agricultural and veterinary sciencesGeneral ChemistryGeneral MedicineOcimumbiology.organism_classification040401 food scienceAnti-Bacterial AgentsEugenolchemistryOcimum basilicumMolecular MedicineAntibacterial activitieEstragoleLamiaceaeAntibacterial activities; Biomorphological characteristics; Essential-oil constituents; Ocimum basilicum L.; PCA analysisPCA analysi010606 plant biology & botany
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Lake restoration influences nutritional quality of algae and consequently Daphnia biomass

2020

AbstractFood quality is one of the key factors influencing zooplankton population dynamics. Eutrophication drives phytoplankton communities toward the dominance of cyanobacteria, which means a decrease in the availability of sterols and long-chain polyunsaturated fatty acids (EPA and DHA). The effects of different restoration measures on the nutritional quality of the phytoplankton community and subsequent impacts on zooplankton biomass have rarely been considered. We analyzed the nutritional quality of phytoplankton in the eutrophic Lake Vesijärvi in southern Finland over a 37-year period, and studied the impacts of two restoration measures, biomanipulation and hypolimnetic aeration, on th…

0106 biological sciencesfreshwater food websTROPHIC TRANSFERDAPHNIArasvahapotsterols01 natural sciencesDaphniaPHYTOPLANKTONlakespopulation dynamicsravintoaineetLake VesijärviFinlandalgaeeducation.field_of_studyBiomanipulationbiologynutritional ecologybiomass (ecology)EcologyrehevöityminenplanktonvesiekosysteemitlaatuCladoceraravitsemuksellinen ekologiaSterolsPHOSPHORUSqualityEUTROPHICATIONNutritional ecology1181 Ecology evolutionary biologyAmino acidsravintoarvodieteticsrasvahappojailmastuskryptofyytitPopulationvesistöjen kunnostusFRESH-WATER HERBIVOREmakean veden ruokaverkotlevätaminohapotAquatic ScienceCyanobacteriajärvet010603 evolutionary biologyZooplanktonfatty acidssterolejaBIOMANIPULATIONAlgaeFISHFATTY-ACID CONTENTPhytoplanktonCryptophytesDominance (ecology)14. Life underwaterbiomassa (ekologia)Fatty acidseducationsyanobakteeritaerationnutritional valuesterolitamino acidsFreshwater food webs010604 marine biology & hydrobiologyfungirestoration of water systemsmikrolevätbiology.organism_classificationpopulaatiodynamiikkaLONGDaphnia13. Climate actionvesikirputEutrophicationravitsemusravintoverkot
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Plant growth-promoting rhizobacteria and root system functioning.

2013

International audience; The rhizosphere supports the development and activity of a huge and diversified microbial community, including microorganisms capable to promote plant growth. Among the latter, plant growth-promoting rhizobacteria (PGPR) colonize roots of monocots and dicots, and enhance plant growth by direct and indirect mechanisms. Modification of root system architecture by PGPR implicates the production of phytohormones and other signals that lead, mostly, to enhanced lateral root branching and development of root hairs. PGPR also modify root functioning, improve plant nutrition and influence the physiology of the whole plant. Recent results provided first clues as to how PGPR s…

0106 biological sciencesfunctional group[SDV]Life Sciences [q-bio]plant nutritionPlant ScienceReview ArticleRoot hairBiologylcsh:Plant culturephytohormoneRhizobacteria01 natural sciences03 medical and health sciencesplant-PGPR cooperationplant-PGPR cooperation;rhizo-microbiome;rhizosphere;phytohormone;plant nutrition;ISR;functional groupBotanylcsh:SB1-1110Plant breedingISRFunctional group (ecology)2. Zero hungerAbiotic component0303 health sciencesRhizosphereBiotic component030306 microbiologybusiness.industryfungifood and beveragesrhizo-microbiome15. Life on landBiotechnologyLateral root branchingbusinessrhizosphere010606 plant biology & botanyFrontiers in plant science
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Effect of Molybdenum Rate on Yield and Quality of Lettuce, Escarole, and Curly Endive Grown in a Floating System

2018

Molybdenum (Mo) is required in enzymes involved in a number of different metabolic processes, and is crucial for the survival of plants and animals. The influence of nutrient solutions containing four levels of molybdenum (0, 0.5, 1.5, and 3.0 &micro

0106 biological sciencesinorganic chemicalsvitamin CSettore AGR/04 - Orticoltura E Floricoltura01 natural scienceslcsh:Agriculturechemistry.chemical_compoundHuman fertilizationNutrientmolybdenumNitratenitrateleafy vegetablesHydroponicChemistryCrop yieldLeafy vegetablelcsh:Shydroponics04 agricultural and veterinary sciencesAscorbic acidHydroponicsHorticultureenzymes and coenzymes (carbohydrates)Plant morphology040103 agronomy & agriculture0401 agriculture forestry and fisheriesbacteriaPlant nutritionAgronomy and Crop Science010606 plant biology & botanyAgronomy
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Changes of bioactive compounds in barley industry by‐products during submerged and solid state fermentation with antimicrobial Pediococcus acidilacti…

2019

Abstract In this study, changes of bioactive compounds (crude protein (CP), crude fat (CF), dietary fiber (DF), fatty acids (FAs), free amino acids (FAAs), phenolic compounds (PCs), biogenic amines (BAs), lignans, and alkylresorcinols) in barley industry by‐products (BB) during submerged and solid state fermentation (SSF) with Pediococcus acidilactici were analyzed. It was established that both fermentation conditions reduce the CP and CF content in BB (by 25.8% and 35.9%, respectively) and increase DF content (on average by 25.0%). Fermentation increases the oleic, arachidic, eicosadienoic, behenic, and lignoceric FA in BB samples. The highest total BA content was found in untreated sample…

0106 biological scienceslcsh:TX341-64101 natural sciences0404 agricultural biotechnologyAlkylresorcinol010608 biotechnologyby‐productsFood sciencePediococcusby-productsbarley ; bioactive compounds ; by-products ; lactic acid bacteria ; PediococcusOriginal Researchbioactive compoundsStrain (chemistry)biologyChemistryPediococcus acidilacticifood and beveragesbarley04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040401 food sciencelactic acid bacteriaSolid-state fermentationby‐products ; bioactive compounds ; lactic acid bacteria ; Pediococcus ; barleyFermentationDietary fiberPediococcuslcsh:Nutrition. Foods and food supplyFood ScienceFood Science & Nutrition
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Influence of plant traits, soil microbial properties, and abiotic parameters on nitrogen turnover of grassland ecosystems

2016

International audience; Although it is known that multiple interactions among plant functional traits, microbial properties , and abiotic soil parameters influence the nutrient turnover, the relative contribution of each of these groups of variables is poorly understood. We manipulated grassland plant functional composition and soil nitrogen (N) availability in a multisite mesocosm experiment to quantify their relative effects on soil N turnover. Overall, root traits, arbuscular mycorrhizal colonization, denitrification potential, as well as N availability and water availability, best explained the variation in measured ecosystem properties, especially the trade-off between nutrient sequest…

0106 biological sciencesleaf traitsSoil biology[SDV]Life Sciences [q-bio]ammonia‐oxidizing archaea and bacteriawater availability010603 evolutionary biology01 natural sciencescomplex mixtures[ SDV.EE ] Life Sciences [q-bio]/Ecology environmentMesocosmnitrite reducersNutrientlcsh:QH540-549.5Ammonia-oxidizing Archaea And Bacteria ; Arbuscular Mycorrhizal Colonization ; Ecosystem Properties ; Grasslands ; Leaf Traits ; Nitrite Oxidizers ; Nitrite Reducers ; Nutrient Availability ; Root Traits ; Water AvailabilityEcosystemEcology Evolution Behavior and Systematics2. Zero hungerAbiotic component[SDV.EE]Life Sciences [q-bio]/Ecology environment[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology[ SDV ] Life Sciences [q-bio]EcologyEcologySoil organic mattergrasslandsfood and beverages04 agricultural and veterinary sciences15. Life on landnitrite oxidizersammonia-oxidizing archaea and bacteriaroot traitsAgronomySoil water040103 agronomy & agriculturearbuscular mycorrhizal colonization0401 agriculture forestry and fisheriesEnvironmental scienceecosystem propertieslcsh:Ecologynutrient availabilityammonia-oxidizing archaea and bacteria;arbuscular mycorrhizal colonization;ecosystem properties;grasslands;leaf traits;nitrite oxidizers;nitrite reducers;nutrient availability;root traits;water availabilitySoil fertility[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Host plant variation plastically impacts different traits of the immune system of a phytophagous insect

2011

Summary 1. Host plant quality affects herbivorous insect performance and consequently their susceptibility to natural enemies. Recently, it has been hypothesized that the immune function of herbivorous insects can be altered by their host plant, thus generating variation in their susceptibility to entomopathogens. Previous studies testing this hypothesis provided contradictory outcomes, mainly as a result of the differences in methodology such as measuring a single-immune parameter rather than considering trade-off-mediated interactions between immune defence systems of the insect. Here, we hypothesized that plant-mediated changes in insect immunity could result from the alteration of physi…

0106 biological sciencesmedia_common.quotation_subjectAntimicrobial peptidesZoologychemical and pharmacologic phenomenaInsectPlant disease resistance010603 evolutionary biology01 natural sciences03 medical and health sciencesImmune systemImmunityBotanyHemolymphEcology Evolution Behavior and Systematics030304 developmental biologymedia_common2. Zero hunger0303 health sciencesEupoecilia ambiguellabiologyfungiProphenoloxidasebiochemical phenomena metabolism and nutritionbiology.organism_classificationbacteriaFunctional Ecology
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Alleviation of Salt Stress by Plant Growth-Promoting Bacteria in Hydroponic Leaf Lettuce

2020

Mediterranean areas with intensive agriculture are characterized by high salinity of groundwater. The use of this water in hydroponic cultivations can lead to nutrient solutions with an electrical conductivity that overcomes the tolerance threshold of many vegetable species. Plant growth-promoting rhizobacteria (PGPR) were shown to minimize salt stress on several vegetable crops but the studies on the application of PGPR on leafy vegetables grown in hydroponics are rather limited and have not been used under salt stress conditions. This study aimed to evaluate the use of plant growth-promoting bacteria to increase the salt tolerance of leaf lettuce grown in autumn and spring in a floating s…

0106 biological sciencessaline waterBiomassSettore AGR/04 - Orticoltura E Floricolturanutrient solutionBiologyRhizobacteria01 natural scienceslcsh:Agriculturefloating systemNutrientbacterial biostimulantleafy vegetables<i>Lactuca sativa</i> L. var. <i>Crispa</i>Brackish waterfungilcsh:S<i>Bacillus</i>food and beverages04 agricultural and veterinary sciencesHydroponicsbiology.organism_classificationSaline waterSalinityHorticulturePGPRsaline water leafy vegetables Lactuca sativa L. var. Crispa floating system nutrient solution bacterial biostimulant PGPR Bacillus040103 agronomy & agriculture0401 agriculture forestry and fisheriesAgronomy and Crop ScienceBacteria010606 plant biology & botanyAgronomy
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