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The Sound of Silence: Activating Silent Biosynthetic Gene Clusters in Marine MicroorganismsExo-metabolome of Pseudovibrio sp. FO-BEG1 analyzed by ultra-high resolution mass spectrometry and the effect of phosphate limitationSubstrate use of Pseudovibrio sp. growing in ultra-oligotrophic seawaterPhosphate Limitation Triggers the Dissolution of Precipitated Iron by the Marine Bacterium Pseudovibrio sp. FO-BEG1Comparative Genomic Analysis Reveals a Diverse Repertoire of Genes Involved in Prokaryote-Eukaryote Interactions within the Pseudovibrio Genus.Phosphate Limitation Induces Drastic Physiological Changes, Virulence-Related Gene Expression, and Secondary Metabolite Production in Pseudovibrio sp. Strain FO-BEG1.Identification of Secondary Metabolite Gene Clusters in the Pseudovibrio Genus Reveals Encouraging Biosynthetic Potential toward the Production of Novel Bioactive Compounds.The genus Pseudovibrio contains metabolically versatile bacteria adapted for symbiosis.Dynamics of hydrogen-producing bacteria in a repeated batch fermentation process using lake sediment as inoculum.The Paenibacillus polymyxa species is abundant among hydrogen-producing facultative anaerobic bacteria in Lake Averno sediment.Kinetic analysis of a complete nitrifier reveals an oligotrophic lifestyle.Extending the "One Strain Many Compounds" (OSMAC) Principle to Marine MicroorganismsFunctional diversity enables multiple symbiont strains to coexist in deep-sea musselsScientific communication strategies of microbiologists in the era of social media
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description
researcher, ORCID id # 0000-0002-7600-1953
@en
wetenschapper
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name
Stefano Romano
@ast
Stefano Romano
@en
Stefano Romano
@es
Stefano Romano
@nl
type
label
Stefano Romano
@ast
Stefano Romano
@en
Stefano Romano
@es
Stefano Romano
@nl
prefLabel
Stefano Romano
@ast
Stefano Romano
@en
Stefano Romano
@es
Stefano Romano
@nl
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53878331000
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0000-0002-7600-1953