Search results for "Symbiotic"

showing 10 items of 64 documents

2021

Many phytophagous insects harbor symbiotic bacteria that can be transmitted vertically from parents to offspring, or acquired horizontally from unrelated hosts or the environment. In the latter case, plants are a potential route for symbiont transfer and can thus foster a tripartite interaction between microbe, insect, and plant. Here, we focus on two bacterial symbionts of the darkling beetle Lagria villosa that belong to the genus Burkholderia; the culturable strain B. gladioli Lv-StA and the reduced-genome strain Burkholderia Lv-StB. The strains can be transmitted vertically and confer protection to the beetle’s eggs, but Lv-StA can also proliferate in plants, and both symbiont strains h…

0106 biological sciencesMicrobiology (medical)0303 health sciencesbiologyVillosaHost (biology)media_common.quotation_subjectInsectbiology.organism_classification010603 evolutionary biology01 natural sciencesMicrobiology03 medical and health sciencesAposymbioticDarkling beetleBurkholderiaSymbiosisBotany030304 developmental biologySymbiotic bacteriamedia_commonFrontiers in Microbiology
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2019

The gut microbiota influence host vascular physiology locally in the intestine, but also evoke remote effects that impact distant organ functions. Amongst others, the microbiota affect intestinal vascular remodeling, lymphatic development, cardiac output and vascular function, myelopoiesis, prothrombotic platelet function, and immunovigilance of the host. Experimentally, host-microbiota interactions are investigated by working with animals devoid of symbiotic bacteria, i.e., by the decimation of gut commensals by antibiotic administration, or by taking advantage of germ-free mouse isolator technology. Remarkably, some of the vascular effects that were unraveled following antibiotic treatmen…

0301 basic medicinemedicine.drug_classImmunologyAntibioticsBiologyGut floraCommensalismbiology.organism_classification03 medical and health sciences030104 developmental biology0302 clinical medicineLymphatic systemImmunologymedicineImmunology and AllergyPlateletMyelopoiesisFunction (biology)030215 immunologySymbiotic bacteriaFrontiers in Immunology
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Infection by Endosymbiotic “Male-Killing” Bacteria in Coleoptera

2018

Wolbachia, Rickettsia, Spiroplasma and Cardinium are endosymbiotic and intracellular bacteria known to cause numerous disorders in host reproduction, reflected in their common name “male-killers”. In this study, 297 beetle species from various taxonomic groups were screened with the use of molecular markers for the presence of infection by any of these endosymbionts. Wolbachia was found to be the most common “male-killer” among beetle hosts as it infected approx. 27% of species. Rickettsia, Spiroplasma and Cardinium were much less prevalent as they infected: 8%, 3% and 2%, respectively, of the studied beetle species. This is the first report of Cardinium presence in beetle hosts. Incidences…

0106 biological sciencesbiologySpiroplasmabeetleintracellular infectionSpiroplasmaGeneral Medicinebiology.organism_classification010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyMicrobiology010602 entomologychemistry.chemical_compoundRickettsiachemistryMolecular markerCardiniumWolbachiaRickettsiaBacteriaEndosymbiotic bacteriaWolbachiaFolia Biologica-Krakow
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Grain legume seed filling in relation to nitrogen acquisition: A review and prospects with particular reference to pea

2001

International audience; Seed filling depends not only on the instantaneous supply of C and N, but also on their remobilisation from vegetative organs. C supply during seed filling depends mostly on current photosynthesis, but N assimilation and N$_2$ fixation decline during seed filling, with newly acquired N generally insufficient for the high seed demand. As seeds are strong sinks for mobilised nutrients, seed growth becomes metabolically closely associated with N remobilisation. N remobilisation from vegetative tissues to filling seeds interacts with photosynthesis since it induces senescence, which reduces the seed filling period. Hence improved grain legume seed filling requires either…

Ecophysiology[SDV.SA]Life Sciences [q-bio]/Agricultural sciencesN assimilationFixation symbiotique[SDV]Life Sciences [q-bio]chemistry.chemical_elementsénescenceBiologyPhotosynthesis03 medical and health sciencesSymbiosisBotanyMineral particlesAssimilation d'azoteLegumeComputingMilieux_MISCELLANEOUS030304 developmental biology2. Zero hunger[SDV.EE]Life Sciences [q-bio]/Ecology environment0303 health sciences[SDV.SA] Life Sciences [q-bio]/Agricultural sciencesRemobilisationAssimilation (biology)04 agricultural and veterinary sciencesNitrogenRemplissage des grainesSymbiotic fixationAgronomychemistrySeed filling040103 agronomy & agricultureNitrogen fixation0401 agriculture forestry and fisheriesAgronomy and Crop Science
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Settling Down: The Genome of Serratia symbiotica from the Aphid Cinara tujafilina Zooms in on the Process of Accommodation to a Cooperative Intracell…

2014

Particularly interesting cases of mutualistic endosymbioses come from the establishment of co-obligate associations of more than one species of endosymbiotic bacteria. Throughout symbiotic accommodation from a free-living bacterium, passing through a facultative stage and ending as an obligate intracellular one, the symbiont experiences massive genomic losses and phenotypic adjustments. Here, we scrutinized the changes in the coevolution of Serratia symbiotica and Buchnera aphidicola endosymbionts in aphids, paying particular attention to the transformations undergone by S. symbiotica to become an obligate endosymbiont. Although it is already known that S. symbiotica is facultative in Acyrt…

SerratiaGenomeaphid endosymbiont03 medical and health sciencesBuchneraBotanyGeneticsAnimalsriboflavingenome reductionSymbiosisPhylogenyEcology Evolution Behavior and Systematics030304 developmental biologyGene RearrangementGenetics0303 health sciencesFacultativeAphidbiologyObligate030306 microbiologyHost (biology)food and beveragesSerratia symbioticabiochemical phenomena metabolism and nutritionbiology.organism_classificationAcyrthosiphon pisumBuchnera aphidicolaAphidsMobile genetic elementsco-obligateBuchneraResearch ArticleGenome Biology and Evolution
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Use of nodulation pattern, stress tolerance, nodC gene amplification, RAPD-PCR and RFLP-16S rDNA analysis to discriminate genotypes of Rhizobium legu…

2005

Twenty-seven new Rhizobium isolates were obtained from root nodules of wild and crop legumes belonging to the genera Vicia, Lathyrus and Pisum from different agroecological areas in central and southern Italy. A polyphasic approach including phenotypic and genotypic techniques was used to study their diversity and their relationships with other biovars and species of rhizobia. Analysis of symbiotic properties and stress tolerance tests revealed that wild isolates, showed a wide spectrum of nodulation and a marked variation in stress tolerance compared with reference strains tested in this study. All rhizobial isolates (except for the isolate CG4 from Galega officinalis) were presumptively i…

DNA BacterialRoot noduleGenotypeStress toleranceBiologymedicine.disease_causeN-AcetylglucosaminyltransferasesApplied Microbiology and BiotechnologyMicrobiologyDNA RibosomalPolymerase Chain ReactionMediterranean areaRhizobium leguminosarumRhizobiaBacterial ProteinsRhizobium leguninosarumNodC geneStress toleranceWild legumesStrains diversityMediterranean areaSymbiotic characteristicsRNA Ribosomal 16SmedicineSymbiosisEcology Evolution Behavior and SystematicsGeneticsPrincipal Component AnalysisRhizobium leguminosarumfood and beveragesFabaceaeNucleic acid amplification techniqueNodC geneHydrogen-Ion ConcentrationRhizobium leguninosarum16S ribosomal RNAbiology.organism_classificationStrains diversitySymbiotic characteristicsRAPDBacterial Typing TechniquesRandom Amplified Polymorphic DNA TechniqueRhizobiumWild legumeRestriction fragment length polymorphismNucleic Acid Amplification TechniquesPolymorphism Restriction Fragment LengthSettore AGR/16 - Microbiologia Agraria
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Metabolic complementation in bacterial communities: Necessary conditions and optimality

2016

Bacterial communities may display metabolic complementation, in which different members of the association partially contribute to the same biosynthetic pathway. In this way, the end product of the pathway is synthesized by the community as a whole. However, the emergence and the benefits of such complementation are poorly understood. Herein, we present a simple model to analyze the metabolic interactions among bacteria, including the host in the case of endosymbiotic bacteria. The model considers two cell populations, with both cell types encoding for the same linear biosynthetic pathway. We have found that, for metabolic complementation to emerge as an optimal strategy, both product inhib…

0301 basic medicineMicrobiology (medical)Cell typeSystems biology030106 microbiologyCelllcsh:QR1-502Computational biologyBiologyMicrobiologylcsh:Microbiology03 medical and health sciencesMetabolic complementationmetabolic modelingHypothesis and TheoryBotanymedicineCinara cedricross-feedingEndosymbiotic bacteriaHost (biology)biology.organism_classificationkinetic modelingComplementation030104 developmental biologymedicine.anatomical_structureProduct inhibitionendosymbiotic bacteriaMetabolic ModellingoptimizationBacteria
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Testing the Domino Theory of Gene Loss in Buchnera aphidicola: The Relevance of Epistatic Interactions

2018

The domino theory of gene loss states that when some particular gene loses its function and cripples a cellular function, selection will relax in all functionally related genes, which may allow for the non-functionalization and loss of these genes. Here we study the role of epistasis in determining the pattern of gene losses in a set of genes participating in cell envelope biogenesis in the endosymbiotic bacteria Buchnera aphidicola. We provide statistical evidence indicating pairs of genes in B. aphidicola showing correlated gene loss tend to have orthologs in Escherichia coli known to have alleviating epistasis. In contrast, pairs of genes in B. aphidicola not showing correlated gene loss…

0301 basic medicinemedicine.disease_causeGenomeGeneral Biochemistry Genetics and Molecular BiologyArticlegene interactions03 medical and health sciencesmedicinecorrelated evolutionlcsh:Sciencegenome reductionEscherichia coliGeneEcology Evolution Behavior and SystematicsGeneticsbiologyPaleontologybiology.organism_classification030104 developmental biologySpace and Planetary Scienceendosymbiotic bacteriaProteomeEpistasislcsh:QBuchneraBiogenesisFunction (biology)Life
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Why are the genomes of endosymbiotic bacteria so stable?

2003

The comparative analysis of three strains of the endosymbiotic bacterium Buchnera aphidicola has revealed high genome stability associated with an almost complete absence of chromosomal rearrangements and horizontal gene transfer events during the past 150 million years. The loss of genes involved in DNA uptake and recombination in the initial stages of endosymbiosis probably underlies this stability. Gene loss, which was extensive during the initial steps of Buchnera evolution, has continued in the different Buchnera lineages since their divergence.

GeneticsGene Transfer HorizontalbiologyEndosymbiosisbiochemical phenomena metabolism and nutritionbiology.organism_classificationGenomechemistry.chemical_compoundTransformation GeneticBuchnerachemistryEvolutionary biologyGene DuplicationHorizontal gene transferEscherichia coliGeneticsBuchneraGeneConserved SequenceGenome BacterialRecombinationDNAEndosymbiotic bacteriaTrends in Genetics
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Vigna mungo, V. radiata and V. unguiculata plants sampled in different agronomical-ecological-climatic regions of India are nodulated by Bradyrhizobi…

2009

International audience; Vigna mungo, Vigna radiata and Vigna unguiculata are important legume crops cultivated in India, but little is known about the genetic resources in native rhizobia that nodulate these species. To identify these bacteria, a core collection of 76 slow-growing isolates was built from root nodules of V. mungo, V. radiata and V. unguiculata plants grown at different sites within three agro-ecological-climatic regions of India. The genetic diversity of the bacterial collection was assessed by restriction fragment length polymorphism (RFLP) analysis of PCR-amplified DNA fragments of the 16S–23S rDNA intergenic spacer (IGS) region, and the symbiotic genes nifH and nodC. One …

Root noduleVigna spp.RadiataDIVERSITYApplied Microbiology and BiotechnologyPlant Root NodulationPolymerase Chain ReactionVignaSymbiotic genesCluster AnalysisBradyrhizobiumPhylogeny0303 health sciencesDiversitybiologyEcologyfood and beveragesFabaceae[SDV.MP]Life Sciences [q-bio]/Microbiology and ParasitologyRestriction fragment length polymorphismOxidoreductasesRoot Nodules PlantPolymorphism Restriction Fragment LengthDNA BacterialBradyrhizobium yuanmingensePHYLOGENYVIGNA SPP.Molecular Sequence DataIndiaN-AcetylglucosaminyltransferasesMicrobiologyBradyrhizobiumRhizobia03 medical and health sciencesVIGNA RADIATABacterial ProteinsBotanyDNA Ribosomal SpacerSYMBIOTIC GENESEcology Evolution Behavior and Systematics030304 developmental biologyRELATION HOTE-PARASITEGenetic diversity030306 microbiologyBRADYRHIZOBIUMSequence Analysis DNA15. Life on landVIGNA MUNGObiology.organism_classificationMULTI-LOCUS SEQUENCE ANALYSISMulti-locus sequence analysis
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