0000000000326161

AUTHOR

Rebeca Domínguez-santos

showing 6 related works from this author

Interkingdom Gut Microbiome and Resistome of the Cockroach Blattella germanica

2021

Cockroaches are intriguing animals with two coexisting symbiotic systems, an endosymbiont in the fat body, involved in nitrogen metabolism, and a gut microbiome whose diversity, complexity, role, and developmental dynamics have not been fully elucidated. In this work, we present a metagenomic approach to study Blattella germanica populations not treated, treated with kanamycin, and recovered after treatment, both naturally and by adding feces to the diet, with the aim of better understanding the structure and function of its gut microbiome along the development as well as the characterization of its resistome.

kanamycinPhysiologygut microbiomeBiochemistryMicrobiology03 medical and health sciencesSymbiosisKanamycinbiology.animalGeneticsmedicineMicrobiomeSymbiosisMolecular BiologyEcology Evolution Behavior and Systematics030304 developmental biologyGeneticsGut microbiome0303 health sciencesCockroachbiology030306 microbiologyKanamycinHindgutbiology.organism_classificationQR1-502symbiosisComputer Science ApplicationsResistomeantibiotic resistance genes (ARGs)Blattella germanicaMetagenomicsModeling and SimulationBacteriaResearch Articlemedicine.drugmSystems
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Gut Microbiota Cannot Compensate the Impact of (quasi) Aposymbiosis in Blattella germanica

2021

Simple Summary The German cockroach Blattella germanica is a good model to study complex symbiotic relationships because the following two symbiotic systems coexist in a single individual: the endosymbiont Blattabacterium (living inside specialized cells called bacteriocytes) and the gut microbiota. Although the role of the endosymbiont has been fully elucidated, the function of the gut microbiota remains unclear. The study of the gut microbiota will benefit from the availability of insects deprived of Blattabacterium. Our goal is to determine the effect of the removal (or, at least, the reduction) of the endosymbiont population on the cockroach’s fitness, in a normal gut microbiota communi…

medicine.drug_classQH301-705.5AntibioticsPopulationMicrobiologia<i>Blattella germanica</i>Gut florarifampicindigestive systemBacterisGeneral Biochemistry Genetics and Molecular BiologyArticleMicrobiologyBlattabacteriumSymbiosisbiology.animalmedicineBiology (General)educationCockroacheducation.field_of_studyBlattabacteriumGeneral Immunology and Microbiologybiologygut microbiotaHost (biology)Bacteriocyteaposymbiontfungibiochemical phenomena metabolism and nutritionbiology.organism_classificationsymbiosisBlattella germanicabacteriaGeneral Agricultural and Biological Sciences<i>Blattabacterium</i>
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Rifampicin treatment of Blattella germanica evidences a fecal transmission route of their gut microbiota

2018

Eukaryotes have established symbiotic relationship with microorganisms, which enables them to accomplish functions that they cannot perform alone. In the German cockroach, Blattella germanica, the obligate endosymbiont Blattabacterium coexists with a rich gut microbiota. The transmission of Blattabacterium is vertical, but little is known about how the gut microbiota colonizes newborn individuals. In this study, we treated B. germanica populations with rifampicin, a broad-spectrum antibiotic, during two generations and analyzed gut bacterial composition and the Blattabacterium load in control and rifampicin-treated populations. Rifampicin exerted a drastic effect on gut microbiota compositi…

0301 basic medicineAdultMalemedicine.drug_class030106 microbiologyAntibioticsPopulationL73 Animal diseasesGut microbiotaGut floraL70 Veterinary science and hygieneL01 Animal husbandryApplied Microbiology and BiotechnologyMicrobiologydigestive systemMicrobiology03 medical and health sciencesBlattabacteriumFecesSymbiosismedicineAnimalsHumanseducationSymbiosisFecesPhylogenyGerman cockroacheducation.field_of_studyEndosymbiontEcologybiologyObligateBlattellidaebiology.organism_classificationAntibiotic treatmentAnti-Bacterial AgentsBacterial Typing TechniquesGastrointestinal MicrobiomeInsect symbiosisRifampinFlavobacteriaceaeMicrobiota transmission
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Unraveling assemblage, functions and stability of the gut microbiota of Blattella germanica by antibiotic treatment

2020

Symbiosis between prokaryotes and eukaryotes is a widespread phenomenon that has contributed to the evolution of eukaryotes. In cockroaches, two types of symbionts coexist: an endosymbiont in the fat body (Blattabacterium), and a rich gut microbiota. The transmission mode of Blattabacterium is vertical, while the gut microbiota of a new generation is mainly formed by bacterial species present in feces. We have carried out a metagenomic analysis of Blattella germanica populations, treated and non-treated with two antibiotics (vancomycin and ampicillin) over two generations to (1) determine the core of bacterial communities and potential functions of the gut microbiota and (2) to gain insight…

Microbiology (medical)functional resiliencePopulationDIVERSITYINSECTSlcsh:QR1-502ZoologyBACTERIAL COMMUNITYGut floraMicrobiologydigestive systemantibioticslcsh:Microbiology03 medical and health sciencesBlattabacteriumSymbiosiseducationFecesOriginal Research030304 developmental biology0303 health scienceseducation.field_of_studyScience & TechnologyendosymbiosisEndosymbiosisbiologygut microbiota030306 microbiologyMIDGUTbiology.organism_classificationVANCOMYCINALIGNMENTCOCKROACHBlattella germanicaMetagenomicsEVOLUTIONARYLife Sciences & BiomedicineBacteriaRESISTANCE
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Identification of the Gene Repertoire of the IMD Pathway and Expression of Antimicrobial Peptide Genes in Several Tissues and Hemolymph of the Cockro…

2022

This article belongs to the Special Issue Antimicrobial Peptides and Immunology.

Innate immune responseantimicrobial peptides (AMPs); IMD pathway; innate immune response; symbiosis; transcriptome; <i>Blattella germanica</i>Antimicrobial peptides (AMPs)Organic ChemistryAntibiòtics pèptidsIMD pathwayGeneral MedicineCatalysisComputer Science ApplicationsInorganic ChemistryBlattella germanicaTranscripció genèticaResposta immunitàriaPhysical and Theoretical ChemistryTranscriptomeSymbiosisMolecular BiologySpectroscopyInternational Journal of Molecular Sciences
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Of Cockroaches and Symbionts: Recent Advances in the Characterization of the Relationship between Blattella germanica and Its Dual Symbiotic System

2022

This article belongs to the Collection Feature Review Papers for Life.

BlattabacteriumBiologiafungiAntibiòtics pèptidsMicrobiologiaPaleontologyGut microbiotaResistomeGeneral Biochemistry Genetics and Molecular BiologyBlattella germanicaSpace and Planetary ScienceAntimicrobial peptidesModel insectSymbiosisSystems biologyEcology Evolution Behavior and SystematicsLife
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