Search results for "Hamiltonella defensa"

showing 10 items of 10 documents

Natural Occurrence of Secondary Bacterial Symbionts in Aphids from Tunisia, with a Focus on Genus Hyalopterus

2018

Aphids (Hemiptera: Aphididae) can harbor two types of bacterial symbionts. In addition to the obligate endosymbiont Buchnera aphidicola Munson, Baumann and Kinsey 1991 (Enterobacteriales: Enterobacteriaceae), several facultative symbiotic bacteria, called secondary (S) symbionts, have been identified among many important pest aphid species. To determine interpopulational diversity of S-symbionts, we carried out a survey in a total of 18 populations of six aphid species collected from six localities in Tunisia, by performing a diagnostic polymerase chain reaction analysis of partial 16S-23S rRNA operon sequences. While 61.7% of individuals contained only Buchnera, three S-symbionts were foun…

0106 biological sciences0301 basic medicineEnterobacterialesHamiltonella defensaTunisiafood.ingredientArsenophonusPopulationZoologyHyalopterusHamiltonella defensa010603 evolutionary biology01 natural sciences03 medical and health sciencesfoodRNA Ribosomal 16SAnimalsSymbiosiseducationPhylogenyEcology Evolution Behavior and Systematicseducation.field_of_studyEcologybiologyAphis spiraecolabiology.organism_classificationEnterobacteriaceaeParasitoidSecondary symbiont030104 developmental biologyAphidsInsect ScienceAPSERRNA OperonArsenophonusBuchneraEnvironmental Entomology
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Multi-modal defences in aphids offer redundant protection and increased costs likely impeding a protective mutualism.

2017

The pea aphid, Acyrthosiphon pisum, maintains extreme variation in resistance to its most common parasitoid wasp enemy, Aphidius ervi, which is sourced from two known mechanisms: protective bacterial symbionts, most commonly Hamiltonella defensa, or endogenously encoded defences. We have recently found that individual aphids may employ each defence individually, occasionally both defences together, or neither. In field populations, Hamiltonella-infected aphids are found at low to moderate frequencies and while less is known about the frequency of resistant genotypes, they show up less often than susceptible genotypes in field collections. To better understand these patterns, we sought to co…

0106 biological sciences0301 basic medicineGenotypeWaspsZoologyParasitismGenes InsectHamiltonella defensa010603 evolutionary biology01 natural sciencesParasitoid wasp03 medical and health sciencesEnterobacteriaceaeAnimalsEcology Evolution Behavior and SystematicsMutualism (biology)AphidbiologyHost Microbial InteractionsEcologyfood and beveragesbiology.organism_classificationFecundityAcyrthosiphon pisum030104 developmental biologyFertilityAnimal ecologyAphidsAnimal Science and ZoologyThe Journal of animal ecology
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Host-based divergence in populations of the pea aphid: insights from nuclear markers and the prevalence of facultative symbionts.

2003

In North America, the pea aphid Acyrthosiphon pisum encompasses ecologically and genetically distinct host races that offer an ideal biological system for studies on sympatric speciation. In addition to its obligate symbiont Buchnera, pea aphids harbour several facultative and phylogenetically distant symbionts. We explored the relationships between host races of A. pisum and their symbiotic microbiota to gain insights into the historical process of ecological specialization and symbiotic acquisition in this aphid. We used allozyme and microsatellite markers to analyse the extent of genetic differentiation between populations of A. pisum on pea, alfalfa and clover in France. In parallel, we…

Adaptation BiologicalHamiltonella defensaGeneral Biochemistry Genetics and Molecular BiologyBuchneraGene FrequencyAnimalsSelection GeneticSymbiosisEcosystemPhylogenyGeneral Environmental ScienceDNA PrimersFacultativeAphidGeneral Immunology and MicrobiologybiologyHost (biology)Ecologyfood and beveragesFabaceaeGeneral MedicineSequence Analysis DNAbiochemical phenomena metabolism and nutritionbiology.organism_classificationAcyrthosiphon pisumSympatric speciationEvolutionary biologyAphidsFranceGeneral Agricultural and Biological SciencesBuchneraSymbiotic bacteriaMicrosatellite RepeatsResearch ArticleProceedings. Biological sciences
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2015

Bacterial endosymbiosis is an important evolutionary process in insects, which can harbor both obligate and facultative symbionts. The evolution of these symbionts is driven by evolutionary convergence, and they exhibit among the tiniest genomes in prokaryotes. The large host spectrum of facultative symbionts and the high diversity of strategies they use to infect new hosts probably impact the evolution of their genome and explain why they undergo less severe genomic erosion than obligate symbionts. Candidatus Hamiltonella defensa is suitable for the investigation of the genomic evolution of facultative symbionts because the bacteria are engaged in specific relationships in two clades of in…

Comparative genomicsFacultativeObligateEndosymbiosisEcologyfungifood and beveragesbiochemical phenomena metabolism and nutritionBiologyHamiltonella defensabiology.organism_classificationGenomeAcyrthosiphon pisumEvolutionary biologyConvergent evolutionGeneticsEcology Evolution Behavior and SystematicsGenome Biology and Evolution
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Endosymbiont communities in Bemisia tabaci: a metagenomic approach

2014

Este trabajo es parte de un programa de investigación que tiene como objetivo dilucidar la evolución de las bacterias endosimbiontes utilizando los consorcios insecto-bacteria como modelo. Los diferentes estudios realizados sobre los insectos y sus bacterias endosimbiontes han arrojado luz sobre los cambios ocurridos tras la adquisición de una forma de vida intracelular, así cómo la interacción entre diferentes endosimbiontes formando comunidades endosimbioticas. Dos son los objetivos principales de este trabajo. El primera (capítulos “Portiera y su socio Hamiltonella” y “El tercer pasajero: Cardinium cBtQ1)” trata de analizar y describir las relaciones de la comunidad endosimbiótica en B. …

Hamiltonella defensa:CIENCIAS DE LA VIDA::Simbiosis [UNESCO]endosymbiosismolecular evolutiongenome stasisUNESCO::CIENCIAS DE LA VIDA::Simbiosisdivergence timecomparative genomicsCardinium hertigii:CIENCIAS DE LA VIDA::Microbiología ::Metabolismo bacteriano [UNESCO]Portiera aleyrodidarumwhitefliesPortiera ultraestructureUNESCO::CIENCIAS DE LA VIDA::Microbiología ::Metabolismo bacterianogliding motilitygenome reductioninsect symbiosismetabolism
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Two Host Clades, Two Bacterial Arsenals: Evolution through Gene Losses in Facultative Endosymbionts.

2015

International audience; Bacterial endosymbiosis is an important evolutionary process in insects, which can harbor both obligate and facultative symbionts. The evolution of these symbionts is driven by evolutionary convergence, and they exhibit among the tiniest genomes in prokaryotes. The large host spectrum of facultative symbionts and the high diversity of strategies they use to infect new hosts probably impact the evolution of their genome and explain why they undergo less severe genomic erosion than obligate symbionts. Candidatus Hamiltonella defensa is suitable for the investigation of the genomic evolution of facultative symbionts because the bacteria are engaged in specific relations…

Hamiltonella defensaVirulence Factors[SDV]Life Sciences [q-bio]fungifood and beveragesGenomicscomparative genomicsbiochemical phenomena metabolism and nutritionBemisia tabaciEvolution MolecularHemipteraaphidsEnterobacteriaceaeCell WallAnimals[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM]SymbiosisGene DeletionGenome BacterialPhylogenyResearch Article
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Influence of Bacterial Secondary Symbionts in Sitobion avenae on Its Survival Fitness against Entomopathogenic Fungi, Beauveria bassiana and Metarhiz…

2022

The research was focused on the ability of wheat aphids Sitobion avenae, harboring bacterial secondary symbionts (BSS) Hamiltonella defensa or Regiella insecticola, to withstand exposure to fungal isolates of Beauveria bassiana and Metarhizium brunneum. In comparison to aphids lacking bacterial secondary symbionts, BSS considerably increased the lifespan of wheat aphids exposed to B. bassiana strains (Bb1022, EABb04/01-Tip) and M. brunneum strains (ART 2825 and BIPESCO 5) and also reduced the aphids’ mortality. The wheat aphid clones lacking bacterial secondary symbionts were shown to be particularly vulnerable to M. brunneum strain BIPESCO 5. As opposed to wheat aphids carrying bacterial s…

Hamiltonella defensaentomopathogenic fungi; bacterial symbiont; <i>Hamiltonella defensa</i>; <i>Regiella insecticola</i> wheat aphid; biological control; <i>Beauveria bassiana</i>; <i>Metarhizium brunneum</i>Settore AGR/11 - Entomologia Generale E ApplicataInsect Sciencebacterial symbiontbiological controlentomopathogenic fungiRegiella insecticola wheat aphidBeauveria bassianaMetarhizium brunneum
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Anti-plant Defense Response Strategies Mediated by the Secondary Symbiont

2019

Bacterial symbionts are omnipresent in insects, particularly aphids, and often exert important effects on the host ecology; however, examples of symbionts that mediate herbivore-plant interactions remain limited. Here, three clones with identical genetic backgrounds were established: a Hamiltonella defensa-free clone, H. defensa-infected clone and H. defensa-cured clone. H. defensa infection was found to increase the fitness of Sitobion miscanthi by increasing the total number of offspring and decreasing the age of first reproduction. Furthermore, gene expression studies and phytohormone measurement showed that feeding by the Hamiltonella-infected clone suppressed the salicylic acid (SA)- a…

Microbiology (medical)Hamiltonella defensaClone (cell biology)lcsh:QR1-502Hamiltonella defensaMicrobiologydefense pathwaylcsh:MicrobiologySitobion miscanthi03 medical and health scienceschemistry.chemical_compoundPlant defense against herbivoryOriginal Research030304 developmental biologyGenetics0303 health sciencesAphidbiologyanti-plant defense030306 microbiologyHost (biology)Jasmonic acidfood and beveragesbiology.organism_classificationenzymechemistrySitobion miscanthiSalicylic acidFrontiers in microbiology
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Side-stepping secondary symbionts: widespread horizontal transfer across and beyond the Aphidoidea.

2003

To elucidate the co-evolutionary relationships between phloem-feeding insects and their secondary, or facultative, bacterial symbionts, we explore the distributions of three such microbes--provisionally named the R-type (or PASS, or S-sym), T-type (or PABS), and U-type--across a number of aphid and psyllid hosts through the use of diagnostic molecular screening techniques and DNA sequencing. Although typically maternally transmitted, phylogenetic and pairwise divergence analyses reveal that these bacteria have been independently acquired by a variety of unrelated insect hosts, indicating that horizontal transfer has helped to shape their distributions. Based on the high genetic similarity b…

Molecular Sequence DataHamiltonella defensaDNA RibosomalHemipteraPhylogeneticsGeneticsAnimalsSymbiosisEcology Evolution Behavior and SystematicsPhylogenyDNA PrimersAphidFacultativebiologyPhylogenetic treeBase SequenceEcologyfungifood and beveragesGenetic Variationbiochemical phenomena metabolism and nutritionbiology.organism_classificationEvolutionary biologyAphidsHorizontal gene transferEvolutionary ecologyBuchneraGammaproteobacteriaMolecular ecology
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Data from: Multi-modal defenses in aphids offer redundant protection and increased costs likely impeding a protective mutualism

2018

1.The pea aphid, Acyrthosiphon pisum, maintains extreme variation in resistance to its most common parasitoid wasp enemy, Aphidius ervi, which is sourced from two known mechanisms: protective bacterial symbionts, most commonly Hamiltonella defensa, or endogenously encoded defenses. We have recently found that individual aphids may employ each defense individually, occasionally both defenses together, or neither. 2.In field populations, Hamiltonella-infected aphids are found at low to moderate frequencies and while less is known about the frequency of resistant genotypes, they show up less often than susceptible genotypes in field collections. To better understand these patterns, we sought t…

medicine and health careHamiltonella defensaAphidius erviAcyrthosiphon pisumLife SciencesMedicinefood and beveragesnatural enemy defenseInsect symbiosismicrobe mediatedPopulation Ecologygenotype by genotype
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