Search results for "aphid"

showing 10 items of 128 documents

Morphology, Genetics and Biology of Pterochloroides persicae Cholodkovsky (Hemiptera: Lachninae) and Their Effect on Pauesia antennata Mukerji (Hymen…

2021

Pauesia antennata Mukerji is a specific parasitoid of the brown peach aphid Pterochloroides persicae Cholodkovsky which causes severe damage on almond and peach in Tunisia. To control this pest, P. antennata was collected from Iran, introduced to Tunisia in 2011 and some of their biological parameters were studied in laboratory conditions. Therefore, in orchard, aphid population and sites/zones of Tunisia and aphid behaviour impact on the parasitoid have not been studied. Morphometric measurements, molecular analysis of P. persicae specimens collected from two Tunisian sites [(Akouda-Sousse (Site 1), Sfax (Site 2)] were studied and compared and aphid behaviour versus P. antennata was follow…

0106 biological scienceseducation.field_of_studyAphidLarvabiologyPopulation010607 zoologyZoologyHymenopterabiology.organism_classificationFecundity01 natural sciencesHemipteraParasitoid010602 entomologyInsect SciencePEST analysiseducationAgronomy and Crop ScienceEcology Evolution Behavior and SystematicsAfrican Entomology
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Happens in the best of subfamilies: establishment and repeated replacements of co-obligate secondary endosymbionts within Lachninae aphids.

2016

SummaryVirtually all aphids maintain an obligate mutualistic symbiosis with bacteria from theBuchneragenus, which produce essential nutrients for their aphid hosts. Most aphids from the Lachninae subfamily have been consistently found to house additional endosymbionts, mainlySerratia symbiotica. This apparent dependence on secondary endosymbionts was proposed to have been triggered by the loss of the riboflavin biosynthetic capability byBuchnerain the Lachninae last common ancestor. However, an integral large-scale analysis of secondary endosymbionts in the Lachninae is still missing, hampering the interpretation of the evolutionary and genomic analyses of these endosymbionts. Here, we anal…

0301 basic medicine0106 biological sciencesMost recent common ancestorSerratiaSubfamily[SDV]Life Sciences [q-bio]aphididaeinteraction hôte symbioteBiologyMicrobiology010603 evolutionary biology01 natural sciencesSerratia03 medical and health sciencesSymbiosisPhylogeneticsAnimalsbuchneraPhylogenyEcology Evolution Behavior and Systematics030304 developmental biology0303 health sciencesAphidObligatefungifood and beveragesbiochemical phenomena metabolism and nutritionbiology.organism_classificationbactérie endosymbiotiquesymbiosis030104 developmental biologyEvolutionary biologypuceronAphidsTissue tropismbacteriaBuchnerasymbioseBacteria
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Identification of theprothoracicotropic hormone(Ptth) coding gene and localization of its site of expression in the pea aphidAcyrthosiphon pisum

2017

Insect hormones control essential aspects of physiology, behaviour and development in insects. The majority of insect hormones are peptide hormones that perform a highly diverse catalogue of functions. Prothoracicotropic hormone (PTTH) is a brain neuropeptide hormone whose main function is to stimulate the secretion of ecdysone (the moulting hormone) by the prothoracic glands in insect larvae thus playing a key role in the control of moulting and metamorphosis. Moreover, both PTTH release or blockade have been reported to act as a switch to terminate or initiate larval and pupal diapauses. In insects, diapause is a prevalent response often regulated by the photoperiod. It has been shown tha…

0301 basic medicineAphidbiologymedia_common.quotation_subjectfungifood and beveragesAphididaebiochemical phenomena metabolism and nutritionDiapausebiology.organism_classificationProthoracic glandAcyrthosiphon pisumCell biology03 medical and health scienceschemistry.chemical_compound030104 developmental biologychemistryInsect ScienceBotanyGeneticsProthoracicotropic hormoneMetamorphosisMolecular BiologyEcdysonemedia_commonInsect Molecular Biology
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Old and new symbiotic partners in lachnine aphids.

2016

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…

0301 basic medicineEvolutionary BiologySystems BiologyMEDLINEComputational biologyGenomicsBiologybiology.organism_classificationMicrobiology03 medical and health sciences030104 developmental biologySymbiosisBuchneraAphidsAnimalsBuchneraSymbiosisBiologyEcology Evolution Behavior and SystematicsResearch ArticleEnvironmental microbiology
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Determination of melatonin in Acyrthosiphon pisum aphids by liquid chromatography-tandem mass spectrometry.

2015

Melatonin is a hormone mainly involved in the regulation of circadian and seasonal rhythms in both invertebrates and vertebrates. Despite the identification of melatonin in many insects, its involvement in the insect seasonal response remains unclear. A liquid chromatography tandem mass spectrometry (LC-MS/MS) method has been developed for melatonin analysis in aphids (Acyrthosiphon pisum) for the first time. After comparing two different procedures and five extraction solvents, a sample preparation procedure with a mixture of methanol/water (50:50) was selected for melatonin extraction. The method was validated by analyzing melatonin recovery at three spiked concentrations (5, 50 and 100 p…

0301 basic medicinePhysiologyTandem mass spectrometry01 natural sciencesMelatonin03 medical and health sciencesLiquid chromatography–mass spectrometryTandem Mass SpectrometryBotanymedicineAnimalsSample preparationMelatoninDetection limitChromatographybiology010401 analytical chemistryExtraction (chemistry)Repeatabilitybiology.organism_classification0104 chemical sciencesAcyrthosiphon pisum030104 developmental biologyInsect ScienceAphidsFemalemedicine.drugChromatography LiquidJournal of insect physiology
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Reinventing the Wheel and Making It Round Again: Evolutionary Convergence in Buchnera-Serratia Symbiotic Consortia between the Distantly Related Lach…

2016

International audience; Virtually all aphids (Aphididae) harbor Buchnera aphidicola as an obligate endosymbiont to compensate nutritional deficiencies arising from their phloem diet. Many species within the Lachninae subfamily seem to be consistently associated also with Serratia symbiotica We have previously shown that both Cinara (Cinara) cedri and Cinara (Cupressobium) tujafilina (Lachninae: Eulachnini tribe) have indeed established co-obligate associations with both Buchnera and S. symbiotica However, while Buchnera genomes of both Cinara species are similar, genome degradation differs greatly between the two S. symbiotica strains. To gain insight into the essentiality and degree of int…

0301 basic medicineSerratiaLachninaeBiodiversité et EcologieGenomeaphid endosymbiontBiodiversity and EcologyEvolution Molecular03 medical and health sciencesBuchneraPhylogeneticsRNA Ribosomal 16SBotanyGeneticsAnimalsSymbiosisPhylogenyEcology Evolution Behavior and SystematicsBuchnera aphidicola;Lachninae;Serratia symbiotica;aphid endosymbiont;co-obligate;symbiont settlementGeneticssymbiont settlementAphidbiologyObligategénomefood and beveragesbuchnera aphidicolaAphididaeSequence Analysis DNASerratia symbioticabiochemical phenomena metabolism and nutritionbiology.organism_classificationbactérie endosymbiotiqueTuberolachnus salignussymbiont030104 developmental biologypuceronAphidsCinaraévolution génomique[SDE.BE]Environmental Sciences/Biodiversity and EcologyBuchneraco-obligateGenome BacterialResearch Article
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Characterisation, analysis of expression and localisation of circadian clock genes from the perspective of photoperiodism in the aphid Acyrthosiphon …

2017

Aphids are typical photoperiodic insects that switch from viviparous parthenogenetic reproduction typical of long day seasons to oviparous sexual reproduction triggered by the shortening of photoperiod in autumn yielding an overwintering egg in which an embryonic diapause takes place. While the involvement of the circadian clock genes in photoperiodism in mammals is well established, there is still some controversy on their participation in insects. The availability of the genome of the pea aphid Acyrthosiphon pisum places this species as an excellent model to investigate the involvement of the circadian system in the aphid seasonal response. In the present report, we have advanced in the c…

0301 basic medicineTimelessPeriod (gene)PhotoperiodCircadian clockDiapauseBiochemistry03 medical and health sciences0302 clinical medicineCircadian ClocksBotanyAnimalsCircadian rhythmMolecular Biologyphotoperiodismbiologyfood and beveragesBrainPeriod Circadian Proteinsbiology.organism_classificationAcyrthosiphon pisumCell biologyCLOCK030104 developmental biologyGene Expression RegulationInsect ScienceAphids030217 neurology & neurosurgeryInsect biochemistry and molecular biology
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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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Large-scale gene discovery in the pea aphid Acyrthosiphon pisum (Hemiptera)

2006

A large-scale sequencing analysis of the Hemiptera Acyrthosiphon pisumexpressed sequence tags corresponding to about 12,000 unique transcripts is described, along with an in silico profiling analysis that identifies 135 aphid tissue-specific transcripts.

Aphid SpeciesDNA ComplementaryTranscription GeneticMethodacyrthosiphon pisumAdditional Data FileséquençageAnimals[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyPhylogenyCodon PositionGene LibraryPlant DiseasesExpressed Sequence TagsPopulation DensityBase CompositionBase SequencegènefungiPeasfood and beveragesDNAbiochemical phenomena metabolism and nutrition[SDV.BIBS]Life Sciences [q-bio]/Quantitative Methods [q-bio.QM]Gene OntologycDNA LibrarypuceronAphids[INFO.INFO-BI]Computer Science [cs]/Bioinformatics [q-bio.QM]Microsatellite Repeats
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The pea aphid phylome: a complete catalogue of evolutionary histories and arthropod orthology and paralogy relationships for Acyrthosiphon pisum genes

2010

Phylogenetic analyses serve many purposes, including the establishment of orthology relationships, the prediction of protein function and the detection of important evolutionary events. Within the context of the sequencing of the genome of the pea aphid, Acyrthosiphon pisum, we undertook a phylogenetic analysis for every protein of this species. The resulting phylome includes the evolutionary relationships of all predicted aphid proteins and their homologues among 13 other fully-sequenced arthropods and three out-group species. Subsequent analyses have revealed multiple gene expansions that are specific to aphids and have served to transfer functional annotations to 4058 pea aphid genes tha…

AphidPhylogenetic treebiologyfood and beveragesGenomicsContext (language use)biochemical phenomena metabolism and nutritionbiology.organism_classificationGenomeAcyrthosiphon pisumPhylogeneticsEvolutionary biologyInsect ScienceBotanyGeneticsMolecular BiologyGeneInsect Molecular Biology
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