Search results for "Buchnera"

showing 10 items of 61 documents

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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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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Modular organization in the reductive evolution of protein-protein interaction networks

2006

Analysis of the reduction in genome size of Buchnera aphidicola from its common ancestor E. coli shows that the organization of networks into modules is the property that seems to be directly related with the evolutionary process of genome reduction.

Systems biologyComplex systemComputational biologyBiologyGenomeProtein protein interaction networkProtein–protein interactionBuchneraInteraction networkProtein Interaction MappingEscherichia coliAnimalsHumansDatabases ProteinGeneticsbusiness.industrySystems BiologyResearchbiochemical phenomena metabolism and nutritionModular designbiology.organism_classificationBiological EvolutionProtein Structure TertiaryStructural Homology ProteinMultiprotein ComplexesBuchnerabusinessAlgorithmsGenome BacterialGenome Biology
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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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Molecular systematics of aphids (Homoptera: Aphididae): new insights from the long-wavelength opsin gene.

2004

Viviparous aphids (Aphididae) constitute a monophyletic group within the Homoptera with more than 4000 extant species worldwide but higher diversity in temperate regions. Several aspects of their biology account for attention paid to this group of insects. Their plant-sap-sucking way of feeding with many species transmitting viruses to crop plants has important implications on crop management strategies. Cyclical parthenogenesis associated in many groups to host alternation and elaborate polyphenisms is of special interests for evolutionists. Finally, the ancient association of most aphid species with intracellular endosymbiotic bacteria (Buchnera sp.) has also received much attention from …

AphidbiologyPhylogenetic treeBase SequenceEcologyRod OpsinsAphididaebiology.organism_classificationPolymerase Chain ReactionMonophylyEvolutionary biologyPhylogeneticsAphidsMolecular phylogeneticsGeneticsAnimalsCloning MolecularCladeBuchneraMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyDNA PrimersMolecular phylogenetics and evolution
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Gene expression levels influence amino acid usage and evolutionary rates in endosymbiotic bacteria

2005

International audience; Most endosymbiotic bacteria have extremely reduced genomes, accelerated evolutionary rates, and strong AT base compositional bias thought to reflect reduced efficacy of selection and increased mutational pressure. Here, we present a comparative study of evolutionary forces shaping five fully sequenced bacterial endosymbionts of insects. The results of this study were three-fold: (i) Stronger conservation of high expression genes at not just nonsynonymous, but also synonymous, sites. (ii) Variation in amino acid usage strongly correlates with GC content and expression level of genes. This pattern is largely explained by greater conservation of high expression genes, l…

0106 biological sciencesNonsynonymous substitutionInsectafood.ingredientBlochmanniaBiology010603 evolutionary biology01 natural sciencesGenomeEvolution Molecular03 medical and health sciencesfoodBacterial ProteinsBuchneraSpecies SpecificityGeneticsAnimalsAmino AcidsCodonSymbiosisWigglesworthiaGene030304 developmental biology2. Zero hungerGeneticschemistry.chemical_classification0303 health sciences[SDV.GEN]Life Sciences [q-bio]/GeneticsBacteriaGene Expression Regulation BacterialGeneral Medicinebiology.organism_classificationAT Rich SequenceGC Rich SequenceAmino acidINSECTEAmino Acid SubstitutionchemistryCodon usage biasMutationDatabases Nucleic AcidBuchneraGC-content
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Comparative Genomics of Serratia spp.: Two Paths towards Endosymbiotic Life

2012

Symbiosis is a widespread phenomenon in nature, in which insects show a great number of these associations. Buchnera aphidicola, the obligate endosymbiont of aphids, coexists in some species with another intracellular bacterium, Serratia symbiotica. Of particular interest is the case of the cedar aphid Cinara cedri, where B. aphidicola BCc and S. symbiotica SCc need each other to fulfil their symbiotic role with the insect. Moreover, various features seem to indicate that S. symbiotica SCc is closer to an obligate endosymbiont than to other facultative S. symbiotica, such as the one described for the aphid Acirthosyphon pisum (S. symbiotica SAp). This work is based on the comparative genomi…

Genome evolutionEvolutionary ProcessesSerratialcsh:MedicineGenomicsBiologyForms of EvolutionGenomeMicrobiologyEvolution Molecular03 medical and health sciencesBuchneraPhylogeneticsAnimalslcsh:ScienceSymbiosisGenome sizeBiologyGenome EvolutionPhylogeny030304 developmental biologyGeneticsComparative genomics0303 health sciencesEvolutionary BiologyMultidisciplinaryObligate030306 microbiologylcsh:RComputational BiologyGenomicsComparative Genomicsbiology.organism_classificationAphidsMicrobial Evolutionlcsh:QBuchneraGenome BacterialResearch ArticleCoevolutionPLoS ONE
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Serratia symbiotica from the aphid Cinara cedri: a missing link from facultative to obligate insect endosymbiont.

2011

The genome sequencing of Buchnera aphidicola BCc from the aphid Cinara cedri, which is the smallest known Buchnera genome, revealed that this bacterium had lost its symbiotic role, as it was not able to synthesize tryptophan and riboflavin. Moreover, the biosynthesis of tryptophan is shared with the endosymbiont Serratia symbiotica SCc, which coexists with B. aphidicola in this aphid. The whole-genome sequencing of S. symbiotica SCc reveals an endosymbiont in a stage of genome reduction that is closer to an obligate endosymbiont, such as B. aphidicola from Acyrthosiphon pisum, than to another S. symbiotica, which is a facultative endosymbiont in this aphid, and presents much less gene decay…

Cancer ResearchSerratialcsh:QH426-470RiboflavinPseudogeneGenomeDNA sequencingBacterial ProteinsBuchneraEnterobacteriaceaePhylogeneticsBotanyGeneticsAnimalsAmino AcidsSymbiosisMolecular BiologyPhylogenyGenetics (clinical)Ecology Evolution Behavior and SystematicsGeneticsComparative genomicsObligatebiologyTryptophanbiology.organism_classificationBiological EvolutionAcyrthosiphon pisumlcsh:GeneticsAphidsBuchneraGenome BacterialMetabolic Networks and PathwaysPseudogenesPLoS Genetics
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Genome size reduction through multiple events of gene disintegration in Buchnera APS

2001

The evolution of the endosymbiont Buchnera during its adaptation to intracellular life involved a massive reduction in its genome. By comparing the orthologous genes of Buchnera, Escherichia coli and Vibrio cholerae, we show that the minimal genome size of Buchnera arose from multiple events of gene disintegration dispersed over the whole genome. The elimination of the genes was a continuous process that began with gene inactivation and progressed until the DNA corresponding to the pseudogenes were completely deleted.

GeneticsGenome evolutionPseudogeneBacterial genome sizebiochemical phenomena metabolism and nutritionBiologybiology.organism_classificationBiological EvolutionGenomeBuchneraEscherichia coliGeneticsMinimal genomeBuchneraVibrio choleraeGeneGenome sizeGene DeletionGenome BacterialPseudogenesTrends in Genetics
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Immunity and other defenses in pea aphids, Acyrthosiphon pisum

2010

Background Recent genomic analyses of arthropod defense mechanisms suggest conservation of key elements underlying responses to pathogens, parasites and stresses. At the center of pathogen-induced immune responses are signaling pathways triggered by the recognition of fungal, bacterial and viral signatures. These pathways result in the production of response molecules, such as antimicrobial peptides and lysozymes, which degrade or destroy invaders. Using the recently sequenced genome of the pea aphid (Acyrthosiphon pisum), we conducted the first extensive annotation of the immune and stress gene repertoire of a hemipterous insect, which is phylogenetically distantly related to previously ch…

0106 biological sciencesAntimicrobial Peptide; Suppression Subtraction Hybridization; Hemocyte; Alarm Pheromone; Parasitoid WaspGenome InsectHemocyteGenes Insect01 natural sciencesGenomearthropodeAlarm PheromoneParasitoid WaspGenetics0303 health sciencesAphidbiologyAntimicrobial Peptidefood and beveragesGENOMIQUEINSECTEpuceronPEA APHIDSparasiteHost-Pathogen InteractionsSuppression Subtraction Hybridizationagent pathogèneréponse immunitaireACYRTHOSIPHON PISUMAntimicrobial peptidesPEA APHIDS;ACYRTHOSIPHON PISUM;INSECTE;GENOMIQUE010603 evolutionary biology03 medical and health sciencesImmune systemBuchneraImmunityStress PhysiologicalBotanyAnimalsLife ScienceSymbiosisGene030304 developmental biologyResearchgèneGene Expression ProfilingfungiImmunitybiochemical phenomena metabolism and nutritionbiology.organism_classificationAcyrthosiphon pisumGene expression profilingAphidsbacteriaResearch highlight[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisGenome Biology
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