EventsThe 2nd International Electronic Conference on Microbiology
Published
with-doi10.3390/ECM2023-16477 (registering DOI)
This submission belongs to the session S6. Microbial Characterization and Bioprocess of the event The 2nd International Electronic Conference on Microbiology
Published date
30 Nov, 2023
Academic Editor
author-avatarMaurizio Ciani
Citation
Constança D. F. Bertrand, Rodrigo Martins, Francisco Quintas-Nunes, Pedro Reynolds-Brandão, Maria Teresa B. Crespo, Francisco X. Nascimento, Saccharopolyspora sp. NFXS83 in marine biotechnological applications: from microalgae growth promotion to the production of secondary metabolites, in Proceedings of The 2nd International Electronic Conference on Microbiology, 1 December–15 December 2023, MDPI: Basel, Switzerland, doi: 10.3390/ECM2023-16477
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Saccharopolyspora sp. NFXS83 in marine biotechnological applications: from microalgae growth promotion to the production of secondary metabolites

Francisco Quintas-Nunes 1,2
image
1. Instituto de Biologia Experimentar e Tecnológica - iBET, Portugal
2. ITQB—Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, 2780-157 Oeiras, Portugal
3. Instituto de Biologia Experimentar e Tecnológica - iBET
Abstract

Marine bacteria are a significant source of bioactive compounds for various biotechnological applications. Among these, actinomycetes have been found to produce a wide range of secondary metabolites of interest. Saccharopolyspora is one of the genera of actinomycetes that has been recognized as a potential source of these compounds. This study reports the characterization and genomic analysis of Saccharopolyspora sp. NFXS83, a marine bacterium isolated from seawater from the Sado estuary in Portugal. The NFXS83 strain produced multiple functional and stable extracellular enzymes under high-salt conditions, showed the ability to synthesize auxins such as indole-3-acetic acid, and produced diffusible secondary metabolites capable of inhibiting the growth of Staphylococcus aureus. Furthermore, when Phaeodactylum tricornutum was co-cultivated with strain NFXS83 a significant increase in microalgae cell count, cell size, auto-fluorescence, and fucoxanthin content was observed. Detailed analysis revealed the presence of clusters involved in the production of various secondary metabolites, including extracellular enzymes, antimicrobial compounds, terpenes, and carotenoids in the genome of strain NFXS83. Ultimately, these findings indicate that Saccharopolyspora sp. NFXS83 has a significant potential for a wide range of marine biotechnological applications.

Keywords
Saccharopolyspora
marine
microalgae
secondary metabolites
biotechnology
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