Search results for "Flora"

showing 10 items of 989 documents

Early Development of the Gut Microbiota and Immune Health

2014

In recent years, the increase in human microbiome research brought about by the rapidly evolving “omic” technologies has established that the balance among the microbial groups present in the human gut, and their multipronged interactions with the host, are crucial for health. On the other hand, epidemiological and experimental support has also grown for the ‘early programming hypothesis’, according to which factors that act in utero and early in life program the risks for adverse health outcomes later on. The microbiota of the gut develops during infancy, in close interaction with immune development, and with extensive variability across individuals. It follows that the specific process of…

Microbiology (medical)atopylcsh:MedicineReviewDiseaseinfant gutBiologyGut floraHealth outcomesantibioticsImmune systemHuman gutImmunology and Allergyearly programmingmicrobe-host interactionsMolecular BiologyGut colonizationIntrauterine transmissionnecrotizing enterocolitisgut microbiotaGeneral Immunology and Microbiologylcsh:RHuman microbiomehuman microbiomebiology.organism_classificationintrauterine transmissionInfectious DiseasesImmunologyimmune diseasePathogens
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Gut Microbiota Dysbiosis Influences Metabolic Homeostasis in Spodoptera frugiperda

2021

Insect gut microbiota plays important roles in acquiring nutrition, preventing pathogens infection, modulating immune responses, and communicating with environment. Gut microbiota can be affected by external factors such as foods and antibiotics. Spodoptera frugiperda (Lepidoptera: Noctuidae) is an important destructive pest of grain crops worldwide. The function of gut microbiota in S. frugiperda remains to be investigated. In this study, we fed S. frugiperda larvae with artificial diet with antibiotic mixture (penicillin, gentamicin, rifampicin, and streptomycin) to perturb gut microbiota, and then examined the effect of gut microbiota dysbiosis on S. frugiperda gene expression by RNA seq…

Microbiology (medical)autophagyFirmicutesmedicine.drug_classvirusesAntibioticsGut floradigestive systemMicrobiologyantibioticsMicrobiologyActinobacteriaTranscriptomeparasitic diseasesmedicineKEGGOriginal Researchbiologygut microbiotafungiBacteroidetesSpodoptera frugiperdabiology.organism_classificationmedicine.diseaseQR1-502Dysbiosismetabolic homeostasisenergyFrontiers in Microbiology
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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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Metagenomics of human microbiome: beyond 16s rDNA.

2012

Clin Microbiol Infect 2012; 18 (Suppl. 4): 4749 Abstract The gut microbiota presents a symbiotic relationship with the human host playing a beneficial role in human health. Since its establishment, the bacterial community is subjected to the influence of many different factors that shape its composition within each individual. However, an important convergence is observed at functional level in the gut microbiota. A metatranscriptomic study of healthy individuals showed homogeneity in the composition of the active microbiota that increased further at functional level.

Microbiology (medical)intestinal microbiotametabolic functionsBiologyGut floraevolutionary developmentdigestive systemDNA RibosomalHuman healthRNA Ribosomal 16SEpigenetic landscapeHumansmetatranscriptomicsEcologyHuman microbiomeGeneral MedicineSequence Analysis DNA16S ribosomal RNAbiology.organism_classificationInfectious DiseasesEvolutionary biologyMetagenomicsHealthy individualsMetagenomeMetagenomicsTranscriptomeClinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases
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Adaptation of the Human Gut Microbiota Metabolic Network During the First Year After Birth

2019

Predicting the metabolic behavior of the human gut microbiota in different contexts is one of the most promising areas of constraint-based modeling. Recently, we presented a supra-organismal approach to build context-specific metabolic networks of bacterial communities using functional and taxonomic assignments of meta-omics data. In this work, this algorithm is applied to elucidate the metabolic changes induced over the first year after birth in the gut microbiota of a cohort of Spanish infants. We used metagenomics data of fecal samples and nutritional data of 13 infants at five time points. The resulting networks for each time point were analyzed, finding significant alterations once sol…

Microbiology (medical)lcsh:QR1-502Metabolic networkComputational biologyBiologyGut floradigestive systemMicrobiologylcsh:Microbiology03 medical and health sciencesMetabolomicsHuman gutpersonalized nutritionFecesOriginal Research030304 developmental biologyhuman gut microbiomemetagenomics0303 health sciences030306 microbiologyExperimental validationbiology.organism_classificationmetabolomicsMetagenomicsmetabolic networksAdaptation
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Metagenomic Survey of the Highly Polyphagous Anastrepha ludens Developing in Ancestral and Exotic Hosts Reveals the Lack of a Stable Microbiota in La…

2021

We studied the microbiota of a highly polyphagous insect, Anastrepha ludens (Diptera: Tephritidae), developing in six of its hosts, including two ancestral (Casimiroa edulis and C. greggii), three exotic (Mangifera indica cv. Ataulfo, Prunus persica cv. Criollo, and Citrus x aurantium) and one occasional host (Capsicum pubescens cv. Manzano), that is only used when extreme drought conditions limit fruiting by the common hosts. One of the exotic hosts (“criollo” peach) is rife with polyphenols and the occasional host with capsaicinoids exerting high fitness costs on the larvae. We pursued the following questions: (1) How is the microbial composition of the larval food related to the composit…

Microbiology (medical)media_common.quotation_subjectZoologyInsectGut floradigestive systemMicrobiology03 medical and health sciencesPrunusfluids and secretionsTephritidaemicrobiotaMetamorphosis030304 developmental biologymedia_common0303 health sciencesLarvabiology030306 microbiologyHost (biology)Tephritidaefungifood and beveragesplant-insect interactionsbiology.organism_classificationAnastrepha ludensQR1-502stomatognathic diseasesgutAnastrepha ludensFrontiers in Microbiology
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Colonization Resistance of the Gut Microbiota against Clostridium difficile

2015

Antibiotics strongly disrupt the human gut microbiota, which in consequence loses its colonization resistance capacity, allowing infection by opportunistic pathogens such as Clostridium difficile. This bacterium is the main cause of antibiotic-associated diarrhea and a current problem in developed countries, since its incidence and severity have increased during the last years. Furthermore, the emergence of antibiotic resistance strains has reduced the efficiency of the standard treatment with antibiotics, leading to a higher rate of relapses. Here, we review recent efforts focused on the impact of antibiotics in the gut microbiome and their relationship with C. difficile colonization, as w…

Microbiology (medical)medicine.drug_classAntibioticsReviewColonisation resistanceBiologyGut floradigestive systemBiochemistryMicrobiologyantibioticsMicrobiologyAntibiotic resistancecolonization resistancemedicinePharmacology (medical)ColonizationGeneral Pharmacology Toxicology and PharmaceuticsPathogenlcsh:RM1-950Clostridium difficileClostridium difficileAntimicrobialbiology.organism_classificationlcsh:Therapeutics. PharmacologyInfectious Diseasesgut microbiota restorationAntibiotics
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Gut microbiota imbalance and chaperoning system malfunction are central to ulcerative colitis pathogenesis and can be counteracted with specifically …

2013

In this work, we propose that for further studies of the physiopathology and treatment for inflammatory bowel diseases, an integral view of the conditions, including the triad of microbiota-heat shock proteins (HSPs)-probiotics, ought to be considered. Microbiota is the complex microbial flora that resides in the gut, affecting not only gut functions but also the health status of the whole body. Alteration in the microbiota's composition has been implicated in a variety of pathological conditions (e.g., ulcerative colitis, UC), involving both gut and extra-intestinal tissues and organs. Some of these pathologies are also associated with an altered expression of HSPs (chaperones) and this is…

Microbiology (medical)medicine.medical_specialtyImmunologyInflammationBiologyGut floradigestive systemMedical microbiologyFlora (microbiology)Heat shock proteinmedicineHumansImmunology and AllergyColitisCrohn's diseaseMicrobiotaProbioticsGeneral Medicinemedicine.diseasebiology.organism_classificationMicrobiota Probiotics Ulcerative colitis Heat shock proteins Molecular chaperones InflammationUlcerative colitisGastrointestinal TractImmunologyColitis Ulcerativemedicine.symptomMolecular ChaperonesMedical Microbiology and Immunology
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Gut Microbiota Analysis in Postoperative Lynch Syndrome Patients

2019

Lynch syndrome (LS) is a dominantly inherited condition with incomplete penetrance, characterized by high predisposition to colorectal cancer (CRC), endometrial and ovarian cancers, as well as to other tumors. LS is associated with constitutive DNA mismatch repair (MMR) gene defects, and carriers of the same pathogenic variants can show great phenotypic heterogeneity in terms of cancer spectrum. In the last years, human gut microbiota got a foothold among risk factors responsible for the onset and evolution of sporadic CRC, but its possible involvement in the modulation of LS patients’ phenotype still needs to be investigated. In this pilot study, we performed 16S rRNA gene sequencing of ba…

Microbiology (medical)medicine.medical_specialtyfecal biomarkersColorectal cancerlcsh:QR1-502Faecalibacterium prausnitziiGut floraMicrobiologyGastroenterologylcsh:Microbiology16S sequencing03 medical and health sciencesInternal medicinemedicineOriginal Research030304 developmental biology0303 health sciencesfecal microbiotabiology030306 microbiologyGenetic heterogeneityfood and beveragesCancermedicine.diseasebiology.organism_classificationPenetrancedigestive system diseasesLynch syndromeLynch syndromeBacteroides fragilishereditary cancer predispositionFrontiers in Microbiology
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Impact of Acute and Chronic Amyloid-β Peptide Exposure on Gut Microbial Commensals in the Mouse

2020

Alzheimer’s disease (AD) is the most common form of dementia. Besides its cognitive phenotype, AD leads to crucial changes in gut microbiome composition in model mice and in patients, but the reported data are still highly inconsistent. Therefore, we investigated chronic effects of AD-characteristic neurotoxic amyloid-β (Aβ) peptides as provided by transgenic overexpression (5xFAD mouse model) and acute effects due to oral application of Aβ on gut microbes. Astonishingly, one-time feeding of wild type mice with Aβ42 provoked immediate changes in gut microbiome composition (β diversity) as compared to controls. Such obvious changes were not observed when comparing 5xFAD mice with wild type l…

Microbiology (medical)mouse modelTransgenelcsh:QR1-502microbiomeDiseaseGut floraMicrobiologylcsh:Microbiology03 medical and health sciencesIn vivomedicineMicrobiomeOriginal Research030304 developmental biologyAmyloid-β peptide0303 health sciencesanti-microbialbiology030306 microbiologyWild typebiology.organism_classificationmedicine.disease5xFADPhenotypeImmunologyAlzheimer’s diseaseDysbiosisFrontiers in Microbiology
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