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Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau

The Tibetan Plateau, known as the “Roof of the World” and “The Third Pole”, harbors numerous saline lakes primarily distributed in the Northern Tibetan Plateau. However, the challenging conditions of high altitude, low oxygen level, and harsh climate have limited investigations into the actinobacter...

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Autores principales: Liu, Shao-Wei, Zhai, Xiao-Xu, Liu, Di, Liu, Yu-Yu, Sui, Li-Ying, Luo, Ke-Ke, Yang, Qin, Li, Fei-Na, Nikandrova, Arina A., Imamutdinova, Arina N., Lukianov, Dmitrii A., Osterman, Ilya A., Sergiev, Petr V., Zhang, Ben-Yin, Zhang, De-Jun, Xue, Chun-Mei, Sun, Cheng-Hang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609225/
https://www.ncbi.nlm.nih.gov/pubmed/37894133
http://dx.doi.org/10.3390/microorganisms11102475
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author Liu, Shao-Wei
Zhai, Xiao-Xu
Liu, Di
Liu, Yu-Yu
Sui, Li-Ying
Luo, Ke-Ke
Yang, Qin
Li, Fei-Na
Nikandrova, Arina A.
Imamutdinova, Arina N.
Lukianov, Dmitrii A.
Osterman, Ilya A.
Sergiev, Petr V.
Zhang, Ben-Yin
Zhang, De-Jun
Xue, Chun-Mei
Sun, Cheng-Hang
author_facet Liu, Shao-Wei
Zhai, Xiao-Xu
Liu, Di
Liu, Yu-Yu
Sui, Li-Ying
Luo, Ke-Ke
Yang, Qin
Li, Fei-Na
Nikandrova, Arina A.
Imamutdinova, Arina N.
Lukianov, Dmitrii A.
Osterman, Ilya A.
Sergiev, Petr V.
Zhang, Ben-Yin
Zhang, De-Jun
Xue, Chun-Mei
Sun, Cheng-Hang
author_sort Liu, Shao-Wei
collection PubMed
description The Tibetan Plateau, known as the “Roof of the World” and “The Third Pole”, harbors numerous saline lakes primarily distributed in the Northern Tibetan Plateau. However, the challenging conditions of high altitude, low oxygen level, and harsh climate have limited investigations into the actinobacteria from these saline lakes. This study focuses on investigating the biodiversity and bioactive secondary metabolites of cultivable actinobacteria isolated from the sediments of four saline lakes on the Northern Tibetan Plateau. A total of 255 actinobacterial strains affiliated with 21 genera in 12 families of 7 orders were recovered by using the pure culture technique and 16S rRNA gene phylogenetic analysis. To facilitate a high-throughput bioactivity evaluation, 192 isolates underwent OSMAC cultivation in a miniaturized 24-well microbioreactor system (MATRIX cultivation). The antibacterial activity of crude extracts was then evaluated in a 96-well plate antibacterial assay. Forty-six strains demonstrated antagonistic effects against at least one tested pathogen, and their underlying antibacterial mechanisms were further investigated through a dual-fluorescent reporter assay (pDualrep2). Two Streptomyces strains (378 and 549) that produce compounds triggering DNA damage were prioritized for subsequent chemical investigations. Metabolomics profiling involving HPLC-UV/vis, UPLC-QTOF-MS/MS, and molecular networking identified three types of bioactive metabolites belonging to the aromatic polyketide family, i.e., cosmomycin, kidamycin, and hedamycin. In-depth analysis of the metabolomic data unveiled some potentially novel anthracycline compounds. A genome mining study based on the whole-genome sequences of strains 378 and 549 identified gene clusters potentially responsible for cosmomycin and kidamycin biosynthesis. This work highlights the effectiveness of combining metabolomic and genomic approaches to rapidly identify bioactive chemicals within microbial extracts. The saline lakes on the Northern Tibetan Plateau present prospective sources for discovering novel actinobacteria and biologically active compounds.
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spelling pubmed-106092252023-10-28 Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau Liu, Shao-Wei Zhai, Xiao-Xu Liu, Di Liu, Yu-Yu Sui, Li-Ying Luo, Ke-Ke Yang, Qin Li, Fei-Na Nikandrova, Arina A. Imamutdinova, Arina N. Lukianov, Dmitrii A. Osterman, Ilya A. Sergiev, Petr V. Zhang, Ben-Yin Zhang, De-Jun Xue, Chun-Mei Sun, Cheng-Hang Microorganisms Article The Tibetan Plateau, known as the “Roof of the World” and “The Third Pole”, harbors numerous saline lakes primarily distributed in the Northern Tibetan Plateau. However, the challenging conditions of high altitude, low oxygen level, and harsh climate have limited investigations into the actinobacteria from these saline lakes. This study focuses on investigating the biodiversity and bioactive secondary metabolites of cultivable actinobacteria isolated from the sediments of four saline lakes on the Northern Tibetan Plateau. A total of 255 actinobacterial strains affiliated with 21 genera in 12 families of 7 orders were recovered by using the pure culture technique and 16S rRNA gene phylogenetic analysis. To facilitate a high-throughput bioactivity evaluation, 192 isolates underwent OSMAC cultivation in a miniaturized 24-well microbioreactor system (MATRIX cultivation). The antibacterial activity of crude extracts was then evaluated in a 96-well plate antibacterial assay. Forty-six strains demonstrated antagonistic effects against at least one tested pathogen, and their underlying antibacterial mechanisms were further investigated through a dual-fluorescent reporter assay (pDualrep2). Two Streptomyces strains (378 and 549) that produce compounds triggering DNA damage were prioritized for subsequent chemical investigations. Metabolomics profiling involving HPLC-UV/vis, UPLC-QTOF-MS/MS, and molecular networking identified three types of bioactive metabolites belonging to the aromatic polyketide family, i.e., cosmomycin, kidamycin, and hedamycin. In-depth analysis of the metabolomic data unveiled some potentially novel anthracycline compounds. A genome mining study based on the whole-genome sequences of strains 378 and 549 identified gene clusters potentially responsible for cosmomycin and kidamycin biosynthesis. This work highlights the effectiveness of combining metabolomic and genomic approaches to rapidly identify bioactive chemicals within microbial extracts. The saline lakes on the Northern Tibetan Plateau present prospective sources for discovering novel actinobacteria and biologically active compounds. MDPI 2023-10-01 /pmc/articles/PMC10609225/ /pubmed/37894133 http://dx.doi.org/10.3390/microorganisms11102475 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Shao-Wei
Zhai, Xiao-Xu
Liu, Di
Liu, Yu-Yu
Sui, Li-Ying
Luo, Ke-Ke
Yang, Qin
Li, Fei-Na
Nikandrova, Arina A.
Imamutdinova, Arina N.
Lukianov, Dmitrii A.
Osterman, Ilya A.
Sergiev, Petr V.
Zhang, Ben-Yin
Zhang, De-Jun
Xue, Chun-Mei
Sun, Cheng-Hang
Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title_full Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title_fullStr Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title_full_unstemmed Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title_short Bioprospecting of Actinobacterial Diversity and Antibacterial Secondary Metabolites from the Sediments of Four Saline Lakes on the Northern Tibetan Plateau
title_sort bioprospecting of actinobacterial diversity and antibacterial secondary metabolites from the sediments of four saline lakes on the northern tibetan plateau
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10609225/
https://www.ncbi.nlm.nih.gov/pubmed/37894133
http://dx.doi.org/10.3390/microorganisms11102475
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