Search results for "Rhizosphere"

showing 10 items of 112 documents

The Root Mycobiota of Betula aetnensis Raf., an Endemic Tree Species Colonizing the Lavas of Mt. Etna (Italy)

2021

Betula aetnensis is an endemic tree of high conservation value, which thrives on the nutrient-poor volcanic soils of Mount Etna. Since plant–microbe interactions could play a crucial role in plant growth, resource uptake, and resistance to abiotic stresses, we aimed to characterize the root and rhizosphere microbial communities. Individuals from natural habitat (NAT) and forest nursery (NURS) were surveyed through microscopy observations and molecular tools: bacterial and fungal automated ribosomal intergenic spacer analysis (ARISA), fungal denaturing gradient gel electrophoresis (DGGE). B. aetnensis was found to be simultaneously colonized by arbuscular (AM), ectomycorrhizal (ECM), ericoid…

MycobiotaLeccinumRibosomal Intergenic Spacer analysisBiologyMediterranean forestsBotanyMediterranean forestQK900-989Plant ecologyPezizalesRhizosphere<i>Oidiodendron</i><i>Betula pendula</i>primary successionfungiOidiodendronForestrybiology.organism_classification<i>Betula pendula</i>; Mediterranean forests; primary succession; <i>Oidiodendron</i>; <i>Phialocephala</i>; mycorrhizal symbiontsRhizopogonHelotiales<i>Phialocephala</i>Betula pendulaPhialocephalamycorrhizal symbiontsTemperature gradient gel electrophoresis
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Phytophthora Diversity in a Sentinel Arboretum and in a Nature Reserve Area

2020

Most soilborne Phytophthora species are invasive plant pathogens and nursery plants for transplanting are considered a primary pathway for the introduction of exotic Phytophthora species into plant diversity conservation areas and sites. As a preliminary step toward investigating this subject, we compared the diversity of Phytophthora in the protected natural area Complesso Speleologico Villasmundo S. Alfio Nature Reserve (NR) (Melilli, Siracusa) and the botanical garden (BG) of the University of Catania (Catania), in eastern Sicily (southern Italy). Sampling was carried out during the spring of 2019. Overall 29 rhizosphere soil samples were collected, 17 from different types of vegetation …

Nature reserveRhizosphereAquatic ecosystemBotanyTransplantingBotanical gardenVegetationPhytophthoraBiologybiology.organism_classificationInvasive speciesThe 1st International Electronic Conference on Plant Science
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Biodiversity of nematofauna associated with the rice field agro-ecosystem in north Italy

2008

This research is intended to give an idea on the soil biodiversity associated with the rice field agro-ecosystem. The research was carried out in two areas of North Italy where Oryza sativa is a traditional crop. The nematodes were extracted from soil samples and from the rhizosphere of rice plants. The nematode community was investigated for the genus composition, trophic structure and biodiversity. 22 families and 45 different genera were recorded. The dominant trophic group was the bacteriophagous with the genus Rhabditis. Other important genera were Pratylenchus, Helicotylenchus and Acrobeloides. Phytophagous represent in almost all fields not more than the 20% of the total nematodes. I…

NematodariceOryzaOryza sativatrophic levelPratylenchuplant pestAcrobeloideHelicotylenchusoil organic matterRhabditisrhizospherebiodiversityplant parasitic nematode
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Molecular analysis of the nitrate-reducing community from unplanted and maize-planted soils

2002

ABSTRACT Microorganisms that use nitrate as an alternative terminal electron acceptor play an important role in the global nitrogen cycle. The diversity of the nitrate-reducing community in soil and the influence of the maize roots on the structure of this community were studied. The narG gene encoding the membrane bound nitrate reductase was selected as a functional marker for the nitrate-reducing community. The use of narG is of special interest because the phylogeny of the narG gene closely reflects the 16S ribosomal DNA phylogeny. Therefore, targeting the narG gene provided for the first time a unique insight into the taxonomic composition of the nitrate-reducing community in planted an…

Nitrate reductaseApplied Microbiology and BiotechnologyNitrate ReductasePolymerase Chain ReactionZea maysActinobacteriaMicrobial Ecology03 medical and health sciencesPhylogeneticsNitrate ReductasesBotanyRibosomal DNAComputingMilieux_MISCELLANEOUSPhylogenySoil Microbiology030304 developmental biology2. Zero hungerGenetics[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciencesRhizosphereNitratesEcologybiology030306 microbiology15. Life on landBIOLOGIE MOLECULAIREbiology.organism_classificationDNA Fingerprinting[SDV.EE] Life Sciences [q-bio]/Ecology environmentProteobacteriaRestriction fragment length polymorphismOxidation-ReductionBacteriaPolymorphism Restriction Fragment LengthFood ScienceBiotechnology
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Pythium campanulatumsp. nov., isolated from the rhizosphere of maize, its taxonomy, ITS region of rDNA, and comparison with related species

2003

Pythium campanulatum sp. nov. was isolated from some soil samples taken in the rhizosphere of maize (Zea mays) in north-eastern India. This species is characterized by the absence of zoospores and sporangia, antheridial branches wrapping around the oogonia leaving one to two campanulate antheridial cells after fertilization, and aplerotic oospores. The ITS region of its rDNA is comprised of 922 bases. This oomycete is closely related to Pythium orthogonon, Pythium nunn and Pythium toruloides. However, it has its own characteristic features and is completely devoid of zoospores. Taxonomic description of this new species and its comparison with related oomycetes, together with the sequence of…

OomyceteRhizosphereBase SequencebiologyZoosporeSporangiumMolecular Sequence DataIndiaPythiumbiology.organism_classificationPlant RootsPolymerase Chain ReactionZea maysMicrobiologySequence Homology Nucleic AcidDNA Ribosomal SpacerBotanyGeneticsOosporeTaxonomy (biology)PythiumDNA FungalMolecular BiologyRibosomal DNASoil MicrobiologyFEMS Microbiology Letters
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Genetic characterization of the nitrate reducing community based on narG nucleotide sequence analysis.

2003

The ability of facultative anerobes to respire nitrate has been ascribed mainly to the activity of a membrane-bound nitrate reductase encoded by the narGHJI operon. Respiratory nitrate reduction is the first step of the denitrification pathway, which is considered as an important soil process since it contributes to the global cycling of nitrogen. In this study, we employed direct PCR, cloning, and sequencing of narG gene fragments to determine the diversity of nitrate-reducing bacteria occurring in soil and in the maize rhizosphere. Libraries containing 727 clones in total were screened by restriction fragment analysis. Phylogenetic analysis of 128 narG sequences separated the clone famili…

OperonDenitrification pathwaySoil ScienceNitrate reductaseNitrate ReductaseZea maysRestriction fragmentBacteria AnaerobicNitrate ReductasesEcology Evolution Behavior and SystematicsEcosystemPhylogenySoil Microbiology[SDV.EE]Life Sciences [q-bio]/Ecology environmentGeneticsRhizosphereNitratesEcologybiologyNucleic acid sequenceSequence Analysis DNAGENETIQUEbiology.organism_classification[SDV.EE] Life Sciences [q-bio]/Ecology environmentbiology.proteinFranceRestriction fragment length polymorphismBacteriaPolymorphism Restriction Fragment LengthMicrobial ecology
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Leviers génétiques pour optimiser les interactions positives plantes micro-organismes

2019

International audience

Paramètre génétique[SDV.BV.AP]Life Sciences [q-bio]/Vegetal Biology/Plant breedingVariation génétiqueRhizosphèreRhizosphere[SDV.BV.AP] Life Sciences [q-bio]/Vegetal Biology/Plant breedingGenetic variationGenetic parametersComputingMilieux_MISCELLANEOUS
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Unravelling the modus operandi of phytosiderophores during zinc uptake in rice: the importance of geochemical gradients and accurate stability consta…

2020

Abstract Micronutrient deficiencies threaten global food production. Attempts to biofortify crops rely on a clear understanding of micronutrient uptake processes. Zinc deficiency in rice is a serious problem. One of the pathways proposed for the transfer of zinc from soils into rice plants involves deoxymugineic acid (DMA), a phytosiderophore. The idea that phytosiderophores play a wider role in nutrition of Poaceae beyond iron is well established. However, key mechanistic details of the DMA-assisted zinc uptake pathway in rice remain uncertain. In particular, questions surround the form in which zinc from DMA is taken up [i.e. as free aqueous Zn(II) or as Zn(II)–DMA complexes] and the role…

PhysiologyIronmedia_common.quotation_subjectPlant Biology & Botany0607 Plant Biology0703 Crop and Pasture Productionchemistry.chemical_elementPlant ScienceZincrice (Oryza sativa)010501 environmental sciencesDeoxymugineic acid01 natural sciencesgeochemical gradientsSoilZinc deficiency (plant disorder)phytosiderophore0105 earth and related environmental sciencesmedia_commonRhizosphere0604 GeneticsChemistryLigandzinc uptakeBiological TransportOryza04 agricultural and veterinary sciencesMicronutrientmicroenvironmentstability constantsZincSpeciationIonic strengthEnvironmental chemistry040103 agronomy & agriculture0401 agriculture forestry and fisheriesZinc uptakerhizosphere
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Dynamic of the genetic structure of bacterial and fungal communities at different developmental stages of Medicago truncatula Gaertn. cv. Jemalong li…

2006

International audience; The genetic structure of bacterial and fungal communities was characterized in the rhizosphere of Medicago truncatula Gaertn. cv. Jemalong line J5 at five developmental stages (three vegetative and two reproductive stages), and in three compartments (bulk soil, rhizosphere soil and root tissues). The genetic structure of microbial communities was determined by cultivation-independent methods using directly extracted DNA that was characterized by automated ribosomal intergenic spacer analysis (ARISA). Principal component analyses (PCA) indicate that, for all developmental stages, the genetic structure of microbial communities differed significantly by compartment, wit…

PhysiologyRibosomal Intergenic Spacer analysisBulk soilPopulation geneticsPlant ScienceBiologyPlant RootsRhizobiaSoil03 medical and health sciencesSymbiosisMycorrhizaeMedicago truncatulaBotanyMICROBIAL COMMUNITIESEcosystem030304 developmental biology2. Zero hunger0303 health sciencesRhizosphereGENETIC STRUCTUREBacteriaSYMBIOTIC ASSOCIATIONSMEDICAGO TRUNCULATAPLANT DEVELOPMENTFungiANALYSE COMPOSANTE PRINCIPALE04 agricultural and veterinary sciences15. Life on landbiology.organism_classificationMedicago truncatula[SDV.BV.PEP]Life Sciences [q-bio]/Vegetal Biology/Phytopathology and phytopharmacySTADE DEVELOPPEMENTGenetic structure040103 agronomy & agriculture0401 agriculture forestry and fisheriesRhizome
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Phytophthora Root and Collar Rot of Paulownia, a New Disease for Europe

2021

Paulownia species are fast growing trees native to China, which are being grown in managed plantings in several European countries for the production of wood and biomasses. In 2018, wilting, stunting, leaf yellowing, and collapse, as a consequence of root and crown rot, were observed in around 40% of trees of a 2-year-old planting of Paulownia elongata × P. fortunei in Calabria (Southern Italy). Two species of Phytophthora were consistently recovered from roots, basal stem bark, and rhizosphere soil of symptomatic trees and were identified as Ph. nicotianae and Ph. palmivora on the basis of both morphological characteristics and phylogenetic analysis of rDNA ITS sequences. Koch’s postulates…

Phytophthora heterosporaphPhytophthora palmivoraPaulowniacomplex mixturesPaulownia elongataRoot rotDNA sequencing; phpathogenicityDNA sequencingQK900-989Plant ecologyBiomass and timber DNA sequencing Nursery plants Pathogenicity Paulownia elongata × P. fortunei Phylogenetic analysis Phytophthora heterospora Phytophthora nicotianae Phytophthora palmivora Princess tree Tree of lifeRhizospherePaulownia elongata × P. fortuneibiologyprincess tree; tree of life; Phytophthora nicotianae; Phytophthora palmivora; Phytophthora heterospora; DNA sequencing; phylogenetic analysis; managed plantings; biomass and timber; nursery plants; pathogenicityphylogenetic analysis<i>Phytophthora palmivora</i>fungiSettore AGR/12 - Patologia Vegetalefood and beveragesForestryPhytophthora nicotianaePhytophthora palmivoraPhytophthora nicotianaebiology.organism_classification<i>Phytophthora heterospora</i>Horticulturetree of lifeCollar rot<i>Phytophthora nicotianae</i>princess treePhytophthoraprincess tree; tree of life; <i>Phytophthora nicotianae</i>; <i>Phytophthora palmivora</i>; <i>Phytophthora heterospora</i>; DNA sequencing; phylogenetic analysis; <i>Paulownia elongata</i> × <i>P. fortunei</i>; biomass and timber; nursery plants; pathogenicityForests; Volume 12; Issue 12; Pages: 1664
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