Search results for "Bacillales"

showing 10 items of 60 documents

Cabbage and fermented vegetables: from death rate heterogeneity in countries to candidates for mitigation strategies of severe COVID-19

2021

International audience; Large differences in COVID-19 death rates exist between countries and between regions of the same country. Some very low death rate countries such as Eastern Asia, Central Europe, or the Balkans have a common feature of eating large quantities of fermented foods. Although biases exist when examining ecological studies, fermented vegetables or cabbage have been associated with low death rates in European countries. SARS-CoV-2 binds to its receptor, the angiotensin-converting enzyme 2 (ACE2). As a result of SARS-CoV-2 binding, ACE2 downregulation enhances the angiotensin II receptor type 1 (AT1 R) axis associated with oxidative stress. This leads to insulin resistance …

ARIA groupAntioxidantMediterranean dietmedicine.medical_treatmentBrassicasulforaphaneMESH: Angiotensin-Converting Enzyme 2ReviewcabbageAntioxidants0302 clinical medicine10183 Swiss Institute of Allergy and Asthma ResearchVegetableskimchiFood sciencekimči0303 health sciencesMESH: NF-E2-Related Factor 23. Good healthAngiotensin-converting enzyme 22723 Immunology and Allergyfermentirana zelenjavaMESH: EcologyKeywords: Angiotensin converting enzyme 2NF-E2-Related Factor 2KEAP1-NRF2 SYSTEMImmunologyReviewsBrassicaNRF203 medical and health sciencesudc:578:635.34:663.15:COVID‐19angiotensin-converting enzyme 2CorrespondenceHumansMESH: SARS-CoV-2LactobacilluINTERMITTENT HYPOXIA2403 ImmunologyScience & TechnologyMESH: HumansAngiotensin II receptor type 1koronavirusMESH: Antioxidantsmedicine.disease030228 respiratory systemchemistryFermentationAllergymedicine.disease_causechemistry.chemical_compoundLINKING GUT MICROBIOTALactobacillalesLactobacillusImmunology and AllergyMESH: COVID-19Angiotensin converting enzyme 2030212 general & internal medicineOXIDATIVE STRESS[SDV.IMM.ALL]Life Sciences [q-bio]/Immunology/AllergologyKeywords: Angiotensin converting enzyme 2; COVID-19; Lactobacillus; cabbage; diet; fermented vegetable; kimchi; sulforaphane.angiotensin-converting enzyme 2; cabbage; COVID-19; diet; fermented vegetable; kimchi; Lactobacillus; sulforaphane2. Zero hungerFOODSEcologyLactobacillalesMortality rate10177 Dermatology ClinicMEDITERRANEAN DIET1107 ImmunologyLife Sciences & Biomedicinefermented vegetable610 Medicine & healthSettore MED/10 - Malattie Dell'Apparato RespiratorioBiologyMESH: FermentationMESH: Gastrointestinal MicrobiomeInsulin resistanceMESH: DietDownregulation and upregulationmedicine030304 developmental biologySARS-CoV-2COVID-19MESH: BrassicaCOVID-19; Lactobacillus; angiotensin-converting enzyme 2; cabbage; diet; fermented vegetable; kimchi; sulforaphane; Angiotensin-Converting Enzyme 2; Antioxidants; COVID-19; Diet; Ecology; Gastrointestinal Microbiome; Humans; Lactobacillales; NF-E2-Related Factor 2; Brassica; Fermentation; SARS-CoV-2; Vegetablesbiology.organism_classificationMESH: VegetablesDYSFUNCTIONDietGastrointestinal MicrobiomeLactobacillusMESH: Lactobacillalesangiotensin-converting enzyme 2 cabbage COVID-19 diet fermented vegetable kimchi Lactobacillus sulforaphanedietOxidative stressSulforaphane
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Safety and immunomodulatory effects of three probiotic strains isolated from the feces of breast-fed infants in healthy adults: SETOPROB study.

2013

We previously described the isolation and characterization of three probiotic strains from the feces of exclusively breast-fed newborn infants: Lactobacillus paracasei CNCM I-4034, Bifidobacterium breve CNCM I-4035 and Lactobacillus rhamnosus CNCM I-4036. These strains were shown to adhere to intestinal mucus in vitro, to be sensitive to antibiotics and to resist biliary salts and low pH. In the present study, a multicenter, randomized, double-blind, placebo-controlled trial with 100 healthy volunteers in three Spanish cities was carried out to evaluate the tolerance, safety, gut colonization and immunomodulatory effects of these three probiotics. Volunteers underwent a 15-day washout perio…

ARN Bacterianoved/biology.organism_classification_rank.speciesPhysiologylcsh:Medicine:Phenomena and Processes::Biological Phenomena::Ecological and Environmental Phenomena::Environment::Ecosystem::Biodiversity::Biota::Microbiota [Medical Subject Headings]law.inventionFecesProbioticAntibioticslawLactobacillus:Phenomena and Processes::Physiological Phenomena::Nutritional Physiological Phenomena::Child Nutritional Physiological Phenomena::Infant Nutritional Physiological Phenomena::Breast Feeding [Medical Subject Headings]lcsh:Science:Chemicals and Drugs::Nucleic Acids Nucleotides and Nucleosides::Nucleic Acids::RNA::RNA Bacterial [Medical Subject Headings]BifidobacteriumMultidisciplinaryBifidobacterium brevebiologyLacticaseibacillus rhamnosusMicrobiotaHibridación in SituInterleukin-10:Organisms::Bacteria::Gram-Positive Bacteria::Lactobacillales::Lactobacillaceae::Lactobacillus [Medical Subject Headings]Breast FeedingBloodCytokinesFemaleResearch ArticleAdult:Anatomy::Fluids and Secretions::Feces [Medical Subject Headings]Lactobacillus paracasei:Organisms::Bacteria::Endospore-Forming Bacteria::Gram-Positive Endospore-Forming Bacteria::Gram-Positive Endospore-Forming Rods::Clostridium::Clostridium difficile [Medical Subject Headings]Microbiology:Chemicals and Drugs::Nucleic Acids Nucleotides and Nucleosides::Nucleic Acids::Nucleic Acid Probes::Oligonucleotide Probes [Medical Subject Headings]Double-Blind MethodLactobacillus rhamnosusHumansImmunologic Factors:Analytical Diagnostic and Therapeutic Techniques and Equipment::Diagnosis::Diagnostic Techniques and Procedures::Clinical Laboratory Techniques::Cytological Techniques::Histocytological Preparation Techniques::Staining and Labeling::In Situ Hybridization [Medical Subject Headings]FecesSafety studiesved/biologyProbioticslcsh:RClostridium difficile:Organisms::Bacteria::Gram-Positive Bacteria::Actinobacteria::Bifidobacterium [Medical Subject Headings]biology.organism_classificationImmunoglobulin ALactobacilluslcsh:QInterleukin-4BifidobacteriumBreast feedingSondas de OligonucleótidosPLoS ONE
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Meconium microbiota types dominated by lactic acid or enteric bacteria are differentially associated with maternal eczema and respiratory problems in…

2013

Background Culture-dependent methods have shown that meconium, the newborn's first intestinal discharge, is not sterile, but the diversity of bacteria present in this material needs to be further characterized by means of more sensitive molecular techniques. Objective Our aims were to characterize molecularly the meconium microbiota in term infants, to assess whether it contributes to the future microbiota of the infants' gastrointestinal tract, and to evaluate how it relates to lifestyle variables and atopy-related conditions. Methods We applied high-throughput pyrosequencing of the 16S rRNA gene to study the meconium microbiota in twenty term newborns from a Spanish birth cohort. For comp…

AdultDNA BacterialHypersensitivity ImmediateMeconiumImmunologyEczemaBiologyAtopyfluids and secretionsEnterobacteriaceaeMeconiumLactobacillalesPregnancyRisk FactorsRNA Ribosomal 16SmedicineHumansImmunology and AllergyClinical significanceLife StylePhylogenyFecesPregnancyGastrointestinal tractInfant NewbornBacteria Presentmedicine.diseasebiology.organism_classificationIntestinesImmunologyMetagenomeFemaleBacteria
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Binding of Cyt1Aa and Cry11Aa Toxins of Bacillus thuringiensis Serovar israelensis to Brush Border Membrane Vesicles of Tipula paludosa (Diptera: Nem…

2007

ABSTRACT Bacillus thuringiensis serovar israelensis ( B. thuringiensis subsp. israelensis ) produces four insecticidal crystal proteins (ICPs) (Cry4A, Cry4B, Cry11A, and Cyt1A). Toxicity of recombinant B. thuringiensis subsp. israelensis strains expressing only one of the toxins was determined with first instars of Tipula paludosa (Diptera: Nematocera). Cyt1A was the most toxic protein, whereas Cry4A, Cry4B, and Cry11A were virtually nontoxic. Synergistic effects were recorded when Cry4A and/or Cry4B was combined with Cyt1A but not with Cry11A. The binding and pore formation are key steps in the mode of action of B. thuringiensis subsp. israelensis ICPs. Binding and pore-forming activity of…

BacillaceaeEcologybiologyBrush borderToxinTipula paludosabiology.organism_classificationProteinase Kmedicine.disease_causeTrypsinApplied Microbiology and BiotechnologyBacillalesMicrobiologyBiochemistryBacillus thuringiensisbiology.proteinmedicineFood ScienceBiotechnologymedicine.drugApplied and Environmental Microbiology
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Effect of Bacillus thuringiensis toxins on the midgut of the nun moth Lymantria monacha.

2000

Three steps of the proposed mode of action of Bacillus thuringiensis toxins have been studied in Lymantria monacha. We demonstrated that only the toxins that caused typical pathological changes in midgut epithelial cells and bound to the midgut brush border membrane were able to drastically reduce the midgut transepithelial voltage of the nun moth.

BacillaceaebiologyBrush borderfungiBacterial ToxinsBacillus thuringiensisMidgutMothsbiology.organism_classificationdigestive systemBacillalesMicrobiologyLepidoptera genitaliaIntestinesBacillus thuringiensisparasitic diseasesAnimalssense organsMode of actionEcology Evolution Behavior and SystematicsTransepithelial potential differenceJournal of invertebrate pathology
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Large Blooms of

2018

ABSTRACT Biological soil crusts (biocrusts) account for a substantial portion of primary production in dryland ecosystems. They successionally mature to deliver a suite of ecosystem services, such as carbon sequestration, water retention and nutrient cycling, and climate regulation. Biocrust assemblages are extremely well adapted to survive desiccation and to rapidly take advantage of the periodic precipitation events typical of arid ecosystems. Here we focus on the wetting response of incipient cyanobacterial crusts as they mature from “light” to “dark.” We sampled a cyanobacterial biocrust chronosequence before (dry) and temporally following a controlled wetting event and used high-throug…

Bacillalesfood and beveragesFirmicutespulsed-activity eventecological successioncarbon lossstabilitybiological soil crustresistanceRNA Ribosomal 16Secosystem servicesEcosystemSoil MicrobiologyResearch ArticlemBio
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Update on the detection of beta-exotoxin in Bacillus thuringiensis strains by HPLC analysis.

2001

Aims: The current work aimed to study the presence of β-exotoxin by high-performance liquid chromatography (HPLC) in supernatant fluids from final whole cultures of the 69 type strains and 13 subtypes of Bacillus thuringiensis strains, as well as from some insecticidal strains. Methods and Results: Results from HPLC and bioassays with Ephestia kuhniella (Lepidoptera Pyralidae) were compared. Type I β-exotoxin was only detected in type strains representing serotypes H1, H9 and H10a,10b. Discrepancies between HPLC and bioassays were found in H8a,8b and some insecticidal strains, which suggests the occurrence of another soluble toxin different from type I β-exotoxin, possibly type II β-exotoxi…

Bacillus (shape)BacillaceaeAdenosineInsectabiologyToxinEphestiaBacillus thuringiensisSugar AcidsGeneral Medicinebiology.organism_classificationmedicine.disease_causeApplied Microbiology and BiotechnologyBacillalesMicrobiologyBacillus thuringiensismedicinebacteriaBioassayAnimalsBiological AssayExotoxinChromatography High Pressure LiquidBiotechnologyJournal of applied microbiology
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Comparison of Different Methodologies for Binding Assays of Bacillus thuringiensis Toxins to Membrane Vesicles from Insect Midguts

2002

Bacterial ToxinsBacillus thuringiensisMothsSpodopteraHemolysin ProteinsCell membraneHemolysin ProteinsBacterial ProteinsBacillus thuringiensisBotanymedicineAnimalsEcology Evolution Behavior and SystematicsBacillaceaeBacillus thuringiensis ToxinsbiologyVesicleCell MembraneMidgutbiology.organism_classificationBacillalesEndotoxinsmedicine.anatomical_structureBiochemistryDigestive SystemBacteriaJournal of Invertebrate Pathology
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Resistance to the Bacillus thuringiensis bioinsecticide in a field population of Plutella xylostella is due to a change in a midgut membrane receptor.

1991

The biochemical mechanism for resistance to Bacillus thuringiensis crystal proteins was studied in a field population of diamondback moths (Plutella xylostella) with a reduced susceptibility to the bioinsecticidal spray. The toxicity and binding characteristics of three crystal proteins [CryIA(b), CryIB, and CryIC] were compared between the field population and a laboratory strain. The field population proved resistant (greater than 200-fold compared with the laboratory strain) to CryIA(b), one of the crystal proteins in the insecticidal formulation. Binding studies showed that the two strains differ in a membrane receptor that recognizes CryIA(b). This crystal protein did not bind to the b…

Bacterial ToxinsBacillus thuringiensismedicine.disease_causeBinding CompetitiveMicrobiologyInsecticide ResistanceHemolysin ProteinsBacterial ProteinsBacillus thuringiensismedicineEscherichia coliAnimalsPest Control BiologicalEscherichia coliMultidisciplinaryBacillaceaebiologyStrain (chemistry)Bacillus thuringiensis ToxinsMicrovilliParasporal bodyPlutellaMidgutGene Expression Regulation Bacterialbiology.organism_classificationBacillalesMolecular biologyEndotoxinsLepidopteraGenes BacterialResearch Article
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Genetic and Biochemical Approach for Characterization of Resistance to Bacillus thuringiensis Toxin Cry1Ac in a Field Population of the Diamondback M…

2000

ABSTRACT Four subpopulations of a Plutella xylostella (L.) strain from Malaysia (F 4 to F 8 ) were selected with Bacillus thuringiensis subsp. kurstaki HD-1, Bacillus thuringiensis subsp. aizawai , Cry1Ab, and Cry1Ac, respectively, while a fifth subpopulation was left as unselected (UNSEL-MEL). Bioassays at F 9 found that selection with Cry1Ac, Cry1Ab, B. thuringiensis subsp. kurstaki , and B. thuringiensis subsp. aizawai gave resistance ratios of >95, 10, 7, and 3, respectively, compared with UNSEL-MEL (>10,500, 500, >100, and 26, respectively, compared with a susceptible population, ROTH). Resistance to Cry1Ac, Cry1Ab, B. thuringiensis subsp. kurstaki , and B. thuringiensis subsp…

Bacterial ToxinsPopulationBacillus thuringiensisMothsBiologyApplied Microbiology and BiotechnologyMicrobiologyInsecticide ResistanceHemolysin ProteinsBacterial ProteinsBacillus thuringiensisBotanyInvertebrate MicrobiologyAnimalsSelection GeneticPest Control BiologicaleducationCrosses GeneticCross-resistanceGenes Dominanteducation.field_of_studyDiamondback mothBacillus thuringiensis ToxinsEcologyfungiParasporal bodyGenetic VariationPlutellabiology.organism_classificationBacillalesEndotoxinsGenetics PopulationCry1AcDigestive SystemFood ScienceBiotechnologyApplied and Environmental Microbiology
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