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Uncovering the biotechnological capacity of marine and brackish water Planctomycetota
AbstractAn appealing strategy for finding novel bioactive molecules in Nature consists in exploring underrepresented and -studied microorganisms. Here, we investigated the antimicrobial and tumoral anti-proliferative bioactivities of twenty-three marine and estuarine bacteria of the fascinating phylum Planctomycetota.
Olga Maria Lage +2 more
exaly +3 more sources
Abstract Members of the bacterial phylum Planctomycetota have recently emerged as promising and for the most part untapped sources of novel bioactive compounds. The characterization of more than 100 novel species in the last decade stimulated recent bioprospection studies that start to unveil the chemical repertoire of the ...
Lars Milke +2 more
exaly +5 more sources
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Journal of Clinical Microbiology, 2023
Increased interest in farmed aquatic species, aquatic conservation measures, and microbial metabolic end-product utilization have translated into a need for awareness and recognition of novel microbial species and revisions to bacterial taxonomy. Because this need has largely been unmet, through a 4-year literature review, we present lists
Claire R. Burbick +5 more
openaire +2 more sources
Increased interest in farmed aquatic species, aquatic conservation measures, and microbial metabolic end-product utilization have translated into a need for awareness and recognition of novel microbial species and revisions to bacterial taxonomy. Because this need has largely been unmet, through a 4-year literature review, we present lists
Claire R. Burbick +5 more
openaire +2 more sources
Applied and Environmental Microbiology
ABSTRACT The biochemical and structural characteristics of Pt Lam, a laminarinase from deep-sea Planctomycetota , have been extensively elucidated, unveiling the fundamental molecular mechanisms governing substrate recognition and enzymatic ...
Wei Li +5 more
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ABSTRACT The biochemical and structural characteristics of Pt Lam, a laminarinase from deep-sea Planctomycetota , have been extensively elucidated, unveiling the fundamental molecular mechanisms governing substrate recognition and enzymatic ...
Wei Li +5 more
openaire +2 more sources
ABSTRACT The outstanding hydrolytic potential of the Planctomycetota phylum for complex polysaccharide degradation has recently been acknowledged based on the numerous carbohydrate-active enzymes (CAZymes) encoded in their genomes.
Dominika Klimek +2 more
openaire +1 more source
Dominika Klimek +2 more
openaire +1 more source
The Planctomycetota phylum has been identified as a group of bacteria with significant carbohydrate hydrolytic potential, making them one of key candidates for applications in diverse biotechnology sectors. However, comprehensive studies on their diversity, ecology, and enzymatic capacities remain limited.
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openaire +1 more source

