Search results for "Hemiptera"

showing 10 items of 186 documents

The Egg Parasitoid Trissolcus basalis uses n-nonadecane, a Cuticular Hydrocarbon from its Stink Bug Host Nezara viridula, to Discriminate Between Fem…

2007

Contact kairomones from adult southern green stink bugs, Nezara viridula (L.) (Heteroptera: Pentatomidae) that elicit foraging behavior of the egg parasitoid Trissolcus basalis (Wollaston) were investigated in laboratory experiments. Chemical residues from tarsi and scutella of N. viridula induced foraging by gravid female T. basalis. Residues from body parts of female N. viridula elicited stronger responses than those from the corresponding body parts of males. Deproteinized tarsi still elicited searching responses from wasps, indicating that the kairomone was not proteinaceous. Hexane extracts of host cuticular lipids induced searching responses from T. basalis, with a strong preference f…

MalebiologyEggsCuticleWaspsHeteropteraTrissolcus basalis . Nezara viridulaGeneral MedicineHymenopteraPentatomidaebiology.organism_classificationSensitivity and SpecificityBiochemistryParasitoidHemipteraSettore AGR/11 - Entomologia Generale E ApplicataNezara viridulaKairomoneAlkanesBotanyAnimalsFemaleEcology Evolution Behavior and SystematicsScelionidaeJournal of Chemical Ecology
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Low Levels of Mitochondrial DNA and Symbiont Diversity in the Worldwide Agricultural Pest, the Greenhouse Whitefly Trialeurodes vaporariorum (Hemipte…

2015

Trialeurodes vaporariorum, the greenhouse whitefly, is a cosmopolitan agricultural pest. Little is known about the genetic diversity of T. vaporariorum and the bacterial symbionts associated with this species. Here, we undertook a large phylogeographic study by investigating both the mitochondrial (mt) diversity and the infection status of 38 T. vaporariorum collections from 18 countries around the world. Genetic diversity of T. vaporariorum was studied by analyzing sequence data from the mt cytochrome oxidase I, cytochrome b, and NADH dehydrogenase subunit 5 genes. Maximum-likelihood (ML) phylogeny reconstruction delineated 2 clades characterized by limited sequence divergence: one clade c…

Malefood.ingredientArsenophonusMolecular Sequence DataZoologyTrialeurodesDNA MitochondrialHemipterafoodSpecies SpecificityGenetic variationBotanyGeneticsAnimalssymbiont communitiesSymbiosisMolecular BiologyPhylogenyGenetics (clinical)ta415Likelihood FunctionsGenetic diversityBacteriaBase SequenceModels GeneticbiologyCytochrome bta1184mtDNA polymorphismGenetic VariationGreenhouse whiteflygenetic diversitySequence Analysis DNAbiology.organism_classificationPhylogeographyta1181Multilocus sequence typingFemaleWolbachiaArsenophonusAnimal DistributionBiotechnologyJournal of Heredity
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Nuclear rDNA-based molecular clock of the evolution of Triatominae (Hemiptera : Reduviidae), vectors of Chagas disease

2000

The evolutionary history and times of divergence of triatomine bug lineages are estimated from molecular clocks inferred from nucleotide sequences of the small subunit SSU (18S) and the second internal transcribed spacer (ITS-2) of the nuclear ribosomal DNA of these reduviids. The 18S rDNA molecular clock rate in Triatominae, and Prosorrhynchan Hemiptera in general, appears to be of 1.8% per 100 million years (my). The ITS-2 molecular clock rate in Triatominae is estimated to be around 0.4-1% per 1 my, indicating that ITS-2 evolves 23-55 times faster than 18S rDNA. Inferred chronological data about the evolution of Triatominae fit well with current hypotheses on their evolutionary histories…

Microbiology (medical)Chagas diseaseChagas diseaselcsh:Arctic medicine. Tropical medicinelcsh:RC955-962lcsh:QR1-502ZoologyTAXONOMIEDNA RibosomalPolymerase Chain Reactionnuclear rDNAlcsh:Microbiology18S geneEvolution MolecularBiological ClocksevolutionRNA Ribosomal 18SmedicineETUDE COMPARATIVEAnimalsINSECTE NUISIBLECell LineagePHYLOGENIEInternal transcribed spacerMolecular clockRibosomal DNATriatominaeHEURE MOLECULAIRETriatominae vectorsGENE 18SBase SequencebiologyVECTEURITS2 SPACER.INTERNAL TRANSCRIBED SPACERmolecular clockSequence Analysis DNAbiology.organism_classificationmedicine.diseaseHemipteraEVOLUTIONInsect VectorsReduviidaeMALADIE DE CHAGASTaxonomy (biology)TriatominaeITS-2 spacerANALYSE GENETIQUE
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Genetic structure of Triatoma venosa (Hemiptera: Reduviidae): molecular and morphometric evidence.

2006

Triatoma venosa presents a restricted geographical distribution in America and is considered as a secondary vector of Chagas disease in Colombia and Ecuador. A total of 120 adult insects were collected in domestic and peridomestic habitats in an endemic area of the department of Boyaca, Colombia, in order to determine their genetic structure through morphometric and molecular techniques. The head and wings of each specimen were used for the analyses of size, shape, and sexual dimorphism. A significant sexual dimorphism was found, although no differences in size among the studied groups were detected. Differences were found in the analyzed structures except for male heads. DNA was extracted …

Microbiology (medical)Chagas diseaseMalelcsh:Arctic medicine. Tropical medicinelcsh:RC955-962Triatoma venosalcsh:QR1-502Zoologyvector controllcsh:Microbiologyrandom amplified polymorphic DNADNA Ribosomal SpacermedicineAnimalsTriatomageometric morphometryinternal transcriber space-2Sex Characteristicsbiologybiology.organism_classificationmedicine.diseaseHemipteraRAPDInsect VectorsRandom Amplified Polymorphic DNA TechniqueSexual dimorphismGenetics PopulationReduviidaeVector (epidemiology)Genetic structureFemaleTriatoma venosaMemorias do Instituto Oswaldo Cruz
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Mealybugs nested endosymbiosis: going into the 'matryoshka' system in Planococcus citri in depth.

2013

Abstract Background In all branches of life there are plenty of symbiotic associations. Insects are particularly well suited to establishing intracellular symbiosis with bacteria, providing them with metabolic capabilities they lack. Essential primary endosymbionts can coexist with facultative secondary symbionts which can, eventually, establish metabolic complementation with the primary endosymbiont, becoming a co-primary. Usually, both endosymbionts maintain their cellular identity. An exception is the endosymbiosis found in mealybugs of the subfamily Pseudoccinae, such as Planococcus citri, with Moranella endobia located inside Tremblaya princeps. Results We report the genome sequencing …

Microbiology (medical)DNA BacterialSubfamilyMoranella endobiaMolecular Sequence DataMicrobiologyGenomeDNA sequencingBacterial geneticsMicrobiologyHemipteraEnterobacteriaceaePlanococcus citriNested endosymbiosisAnimalsSymbiosisTremblaya princepsOrganismComparative genomicsEndosymbiosisbiologyBetaproteobacteriaSequence Analysis DNAbiology.organism_classificationPlanococcus citriEvolutionary biologyfunctional complementationGenome BacterialResearch ArticleBMC 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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Characterization of the hemoglobin of the backswimmer Anisops deanei (Hemiptera).

2012

Abstract While O 2 -binding hemoglobin-like proteins are present in many insects, prominent amounts of hemoglobin have only been found in a few species. Backswimmers of the genera Anisops and Buenoa (Notonectidae) have high concentrations of hemoglobin in the large tracheal cells of the abdomen. Oxygen from the hemoglobin is delivered to a gas bubble and controls the buoyant density, which enables the bugs to maintain their position without swimming and to remain stationary in the mid-water zone where they hunt for prey. We have obtained the cDNA sequences of three Anisops deanei hemoglobin chains by RT-PCR and RACE techniques. The deduced amino acid sequences show an unusual insertion of a…

Molecular Sequence DataNotonectidaeLigandsBiochemistrylaw.inventionHemipteraHemoglobinslawComplementary DNAAnimalsHumansGlobinAmino Acid SequenceMolecular BiologyPhylogenychemistry.chemical_classificationbiologyHeteropteraSequence Analysis DNAbiology.organism_classificationHemipteraBiological EvolutionAmino acidOxygenKineticschemistryBiochemistryInsect ScienceRecombinant DNAInsect ProteinsHemoglobinInsect biochemistry and molecular biology
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A new genus and species of asteraceae-inhabiting aphid (hemiptera: aphididae) from Costa Rica and Mexico

2013

P. 323-331 Ucrimyzus villalobosi Mier Durante & Pérez Hidalgo gen. n., sp. n. (Hemiptera: Aphididae: Macrosiphini) are described from apterous and alate viviparous females collected on species of genera Bidens, Schkuhria, Senecio and Stevia (Asteraceae: Asteroideae) in Costa Rica and Mexico. Principal components analysis (PCA) was done to verify that the studied aphids belong to a single species regardless of their geographical origin or host plant. Molecular analyses were carried out on the sequences of a fragment of the mitochondrial gene encoding for cytochrome c oxidase subunit 1 (COI) and of a fragment of the nuclear gene encoding elongation factor 1α (EF1α). The taxonomic discussion t…

MorphologyCosta RicaBiologíaElongation factor 1αPrincipal components analysisSenecioSchkuhriaMacrosiphiniGenusBotanyZoologíaUcrimyzus gen. n.Ecology Evolution Behavior and SystematicsAphidbiologyMéxicoAphididaebiology.organism_classificationHemipteraEcología. Medio ambienteCytochrome oxidase 1Insect ScienceAsteroideaeAphidsTaxonomy (biology)
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A new species of the genus Cyclopelta (Hemiptera: Dinidoridae) from Thailand, with a key to its Oriental species

2013

Cyclopelta gibbosasp. nov., a new species of dinidorid bug is described from Thailand and compared with Cyclopelta obscura. It is the ninth Oriental species of the genus, and the fourth known species from Thailand. A key to all the Oriental species of the genus Cyclopelta is also provided. The type specimens are deposited with the Smithsonian National Museum of Natural History, Washington, USA, and the Department of Biosystematics, Opole University, Poland.

National Museum of Natural HistoryType (biology)DinidoridaebiologyGenusInsect ScienceHeteropteraZoologyKey (lock)biology.organism_classificationCyclopeltaHemipteraOriental Insects
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Genome Evolution in the Primary Endosymbiont of Whiteflies Sheds Light on Their Divergence

2015

International audience; Hemipteran insects are well-known in their ability to establish symbiotic relationships with bacteria. Among them, heteropteran insects present an array of symbiotic systems, ranging from the most common gut crypt symbiosis to the more restricted bacteriome-associated endosymbiosis, which have only been detected in members of the superfamily Lygaeoidea and the family Cimicidae so far. Genomic data of heteropteran endosymbionts are scarce and have merely been analyzed from the Wolbachia endosymbiont in bed bug and a few gut crypt-associated symbionts in pentatomoid bugs. In this study, we present the first detailed genomic analysis of a bacteriome-associated endosymbi…

Nonsynonymous substitutionMutation rateGenome evolution[SDV]Life Sciences [q-bio]Lineage (evolution)divergence timecomparative genomicsPortieraBiologyGenomeEvolution MolecularHemipterataxonomyMolecular evolutionwhitefliesGeneticsAnimalsSymbiosisgenome reductionCladeEcology Evolution Behavior and SystematicsComparative genomicsGeneticsendosymbiosisamino acid biosynthesismolecular evolutiongenome stasisfungiGenomicsbiochemical phenomena metabolism and nutritionLygaeoideaHalomonadaceaebacteriametabolismendosymbiontGenome BacterialResearch ArticleGenome Biology and Evolution
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