0000000000179280

AUTHOR

Benjamin Weiss

0000-0003-4718-1956

showing 4 related works from this author

Symbiont Genomic Features and Localization in the Bean Beetle Callosobruchus maculatus

2021

A pervasive pest of stored leguminous products, the bean beetle Callosobruchus maculatus (Coleoptera: Chrysomelidae) associates with a simple bacterial community during adulthood. Despite its economic importance, little is known about the compositional stability, heritability, localization, and metabolic potential of the bacterial symbionts of C. maculatus. In this study, we applied community profiling using 16S rRNA gene sequencing to reveal a highly conserved bacterial assembly shared between larvae and adults. Dominated by Firmicutes and Proteobacteria, this community is localized extracellularly along the epithelial lining of the bean beetle's digestive tract. Our analysis revealed that…

0106 biological sciences0303 health sciencesEcologyHost (biology)Firmicutesmedia_common.quotation_subjectfungiStaphylococcus gallinarumfood and beveragesZoologyInsectBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesApplied Microbiology and BiotechnologyCallosobruchus maculatus03 medical and health sciencesB vitaminsPEST analysisProteobacteria030304 developmental biologyFood ScienceBiotechnologymedia_commonApplied and Environmental Microbiology
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Bacterial communities associated with the ectoparasitic mites Varroa destructor and Tropilaelaps mercedesae of the honey bee (Apis mellifera).

2017

Varroa and Tropilaelaps mites have been reported as serious ectoparasites of the honey bee (Apis mellifera). In this study, bacterial communities associated with Varroa destructor and Tropilaelaps mercedesae from northern Thailand were determined, using both culture-dependent and culture-independent approaches. Adult female mites were collected from apiaries in Chiang Mai and Lampang provinces. Culturable bacteria were isolated from individual mites. On average, we observed approximately 1340 and 1140 CFU/mite in Varroa and Tropilaelaps, respectively. All isolates were assigned to the genus Enterococcus. Six samples of genomic DNA from 30-50 mites were extracted and subjected to pyrosequenc…

0301 basic medicineVeterinary medicinefood.ingredientVarroidae030106 microbiologyApplied Microbiology and BiotechnologyMicrobiology03 medical and health sciencesfoodDeformed wing virusRNA Ribosomal 16SMiteAnimalsIn Situ Hybridization FluorescencePhylogenyMitesintegumentary systemEcologybiologyBacteriaTropilaelapsHoney beeBeesbiology.organism_classificationThailandVarroa destructorVarroaFemaleVarroa sensitive hygieneArsenophonusFEMS microbiology ecology
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Honey Bee Suppresses the Parasitic Mite Vitellogenin by Antimicrobial Peptide

2020

AbstractThe negative effects of honey bee parasitic mites and deformed wing virus (DWV) on honey bee and colony health have been well characterized. However, the relationship between DWV and mites, particularly viral replication inside the mites, remains unclear. Furthermore, the physiological outcomes of honey bee immune responses stimulated by DWV and the mite to the host (honey bee) and perhaps the pathogen/parasite (DWV/mite) are not yet understood. To answer these questions, we studied the tripartite interactions between the honey bee,Tropilaelaps mercedesae, and DWV as the model.T. mercedesaefunctioned as a vector for DWV without supporting active viral replication. Thus, DWV negligib…

Microbiology (medical)antimicrobial peptidevector-pathogen interactionlcsh:QR1-502Vitellogeninmedicine.disease_causeMicrobiologylcsh:MicrobiologyMicrobiology03 medical and health sciencesVitellogeninhost-parasite/pathogen interactionDeformed wing virusInfestationparasitic diseasesMitemedicinehoney beeParasite hosting030304 developmental biologyOriginal Research0303 health sciencesbiologyintegumentary system030306 microbiologyHost (biology)deformed wing virusfungifood and beveragesHoney beebiology.organism_classificationparasitic miteVarroa destructorVector (epidemiology)biology.proteinbehavior and behavior mechanismsFrontiers in Microbiology
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Drastic Genome Reduction in an Herbivore's Pectinolytic Symbiont.

2017

Pectin, an integral component of the plant cell wall, is a recalcitrant substrate against enzymatic challenges by most animals. In characterizing the source of a leaf beetle’s (Cassida rubiginosa) pectin-degrading phenotype, we demonstrate its dependency on an extracellular bacterium housed in specialized organs connected to the foregut. Despite possessing the smallest genome (0.27 Mb) of any organism not subsisting within a host cell, the symbiont nonetheless retained a functional pectinolytic metabolism targeting the polysaccharide’s two most abundant classes: homogalacturonan and rhamnogalacturonan I. Comparative transcriptomics revealed pectinase expression to be enriched in the symbiot…

0106 biological sciences0301 basic medicine010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyCell wall03 medical and health sciencesSymbiosisEnterobacteriaceaeGenome SizeBotanyExtracellularAnimalsPectinaseSymbiosisOrganismbiologyHost (biology)food and beveragesbiology.organism_classificationPhenotypeColeoptera030104 developmental biologyBiochemistryPectinsBacteriaGenome BacterialCell
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