0000000000543874

AUTHOR

Alba Iglesias

showing 4 related works from this author

The coffee-machine bacteriome: biodiversity and colonisation of the wasted coffee tray leach

2015

AbstractMicrobial communities are ubiquitous in both natural and artificial environments. However, microbial diversity is usually reduced under strong selection pressures, such as those present in habitats rich in recalcitrant or toxic compounds displaying antimicrobial properties. Caffeine is a natural alkaloid present in coffee, tea and soft drinks with well-known antibacterial properties. Here we present the first systematic analysis of coffee machine-associated bacteria. We sampled the coffee waste reservoir of ten different Nespresso machines and conducted a dynamic monitoring of the colonization process in a new machine. Our results reveal the existence of a varied bacterial community…

Food HandlingMicrobial ConsortiaBiodiversityAgrobacteriumBiologyCoffeeArticleBioremediationEnterobacteriaceaeCaffeinePseudomonasRNA Ribosomal 16SColonizationMicrobiomeMultidisciplinaryDecaffeinationEcologybusiness.industryBacteriomeBiodiversitySequence Analysis DNAbiology.organism_classificationAdaptation PhysiologicalBiotechnologyAnti-Bacterial AgentsColonisationBiodegradation EnvironmentalMicroscopy Electron ScanningbusinessPaenibacillusBacteriaEnterococcusScientific Reports
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Engineering Bacteria to Form a Biofilm and Induce Clumping in Caenorhabditis elegans

2014

Bacteria are needed for a vast range of biotechnological processes, which they carry out either as pure cultures or in association with other bacteria and/or fungi. The potential of bacteria as biofactories is hampered, though, by their limited mobility in solid or semisolid media such as agricultural or domestic waste. This work represents an attempt toward overcoming this limitation by associating bacterial biotechnological properties with the transport ability of the nematode Caenorhabditis elegans. We report here biofilm formation on C. elegans by engineered Escherichia coli expressing a Xhenorhabdus nematophila adhesion operon and induction of nematode social feeding behavior (clumping…

OperonBiomedical EngineeringBioengineeringBiologymedicine.disease_causeBiochemistry Genetics and Molecular Biology (miscellaneous)Biotechnological processMicrobiologyRNA interferenceEscherichia colimedicineAnimalsCaenorhabditis elegansCaenorhabditis elegans ProteinsSymbiosisEscherichia coliCaenorhabditis elegansBiofilmFeeding BehaviorGeneral Medicinebiology.organism_classificationNematodeBiofilmsRNA InterferenceSynthetic BiologyBacteriaACS Synthetic Biology
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Towards light-mediated sensing of bacterial comfort

2013

Abstract Bacterial comfort is central to biotechnological applications. Here, we report the characterization of different sensoring systems, the first step within a broader synthetic biology-inspired light-mediated strategy to determine Escherichia coli perception of environmental factors critical to bacterial performance. We did so by directly ‘asking’ bacterial cultures with light-encoded questions corresponding to the excitation wavelength of fluorescent proteins placed under the control of environment-sensitive promoters. We built four genetic constructions with fluorescent proteins responding to glucose, temperature, oxygen and nitrogen; and a fifth construction allowing UV-induced exp…

Transcriptional ActivationNitrogenComputer scienceGreen Fluorescent ProteinsGene Expression Regulation BacterialApplied Microbiology and BiotechnologyOxygenCore (optical fiber)Synthetic biologyGlucoseGenes BacterialGenes ReporterEscherichia coliKey (cryptography)Gene-Environment InteractionSynthetic BiologyBiochemical engineeringPromoter Regions GeneticLetters in Applied Microbiology
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Out of the Abyss: Genome and Metagenome Mining Reveals Unexpected Environmental Distribution of Abyssomicins.

2020

AbstractNatural products have traditionally been discovered through the screening of culturable microbial isolates from all sort of environments. The sequencing revolution allowed the identification of dozens of biosynthetic gene clusters (BGCs) within single bacterial genomes, either from cultured or uncultured strains. However, we are still far from fully exploiting the microbial reservoir, as most of the species are non-model organisms with complex regulatory systems and yet recalcitrant to be engineered. Today, genomic and metagenomic data produced by laboratories worldwide covering the most different natural and artificial environments on Earth, are an invaluable source of raw informat…

Microbiology (medical)bioprospectinglcsh:QR1-502Bacterial genome sizeComputational biologyBiology010402 general chemistryMicrobiology01 natural sciencesGenomelcsh:Microbiology03 medical and health sciencesgenome miningGeneOriginal Research030304 developmental biology2. Zero hunger0303 health sciencesBioprospecting030306 microbiology010405 organic chemistrymetagenome miningbiosynthetic gene cluster distribution and evolution0104 chemical sciencesabyssomicinsMetagenomicsGenome miningIdentification (biology)Frontiers in microbiology
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