Isolation and characterization of a new cyclic lipopeptide surfactin from a marine-derived Bacillus velezensis SH-B74

A marine-sediment-derived bacterium Bacillus velezensis SH-B74 can produce cyclic lipopeptides (CLPs). This study presented the isolation, characterization, and activity evaluation of a new CLP from the bacterial cultures of the strain SH-B74. Multiple chromatographic methods (solid-phase extraction...

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Veröffentlicht in:Journal of antibiotics 2020-12, Vol.73 (12), p.863-867
Hauptverfasser: Ma, Zongwang, Zhang, Songya, Zhang, Shihu, Wu, Guoyang, Shao, Yue, Mi, Quanfeng, Liang, Junyu, Sun, Kun, Hu, Jiangchun
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container_end_page 867
container_issue 12
container_start_page 863
container_title Journal of antibiotics
container_volume 73
creator Ma, Zongwang
Zhang, Songya
Zhang, Shihu
Wu, Guoyang
Shao, Yue
Mi, Quanfeng
Liang, Junyu
Sun, Kun
Hu, Jiangchun
description A marine-sediment-derived bacterium Bacillus velezensis SH-B74 can produce cyclic lipopeptides (CLPs). This study presented the isolation, characterization, and activity evaluation of a new CLP from the bacterial cultures of the strain SH-B74. Multiple chromatographic methods (solid-phase extraction and reversed-phase high-performance liquid chromatography) were applied to the purifying procedure of CLP, and the structural characterization of the new CLP was conducted by various spectroscopy (1D and 2D nuclear magnetic resonance together with Fourier transform infrared spectroscopy) and spectrometry (liquid chromatography-mass spectrometry, high-resolution mass spectrometry and tandem mass spectrometry) techniques as well as Marfey’s method. The results displayed that the new CLP ( anteiso -C 15 Ile 2,7 surfactin, 1 ) consists of a peptidic backbone of l -Glu 1 , l -Ile 2 , d -Leu 3 , l -Val 4 , l -Asp 5 , d -Leu 6 , l -Ile 7 , and an anteiso -C 15 type saturated fatty acid chain. Further activity assay showed that the new CLP displays activity on the inhibition of the appressoria formation of rice blast causal pathogen Magnaporthe oryzae . To sum up, the results presented the perspective of potential application of the new CLP as a green agrichemical to control M . oryzae .
doi_str_mv 10.1038/s41429-020-0347-9
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This study presented the isolation, characterization, and activity evaluation of a new CLP from the bacterial cultures of the strain SH-B74. Multiple chromatographic methods (solid-phase extraction and reversed-phase high-performance liquid chromatography) were applied to the purifying procedure of CLP, and the structural characterization of the new CLP was conducted by various spectroscopy (1D and 2D nuclear magnetic resonance together with Fourier transform infrared spectroscopy) and spectrometry (liquid chromatography-mass spectrometry, high-resolution mass spectrometry and tandem mass spectrometry) techniques as well as Marfey’s method. The results displayed that the new CLP ( anteiso -C 15 Ile 2,7 surfactin, 1 ) consists of a peptidic backbone of l -Glu 1 , l -Ile 2 , d -Leu 3 , l -Val 4 , l -Asp 5 , d -Leu 6 , l -Ile 7 , and an anteiso -C 15 type saturated fatty acid chain. 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subjects 631/154/433
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82/16
82/58
82/6
Agrochemicals
Antifungal Agents - chemistry
Antifungal Agents - isolation & purification
Antifungal Agents - pharmacology
Aquatic Organisms - chemistry
Ascomycota - drug effects
Bacillus - chemistry
Bacteriology
Biomedical and Life Sciences
Bioorganic Chemistry
Brief Communication
Chromatography
Chromatography, High Pressure Liquid
Fourier transforms
Infrared spectroscopy
Ions
Life Sciences
Lipopeptides - chemistry
Lipopeptides - isolation & purification
Lipopeptides - pharmacology
Liquid chromatography
Magnetic Resonance Spectroscopy
Mass spectrometry
Medicinal Chemistry
Microbiology
Molecular Structure
NMR
Nuclear magnetic resonance
Organic Chemistry
Oryza - microbiology
Peptides, Cyclic - chemistry
Peptides, Cyclic - isolation & purification
Peptides, Cyclic - pharmacology
Plant Diseases - prevention & control
Scientific imaging
Spectroscopy, Fourier Transform Infrared
Tandem Mass Spectrometry
title Isolation and characterization of a new cyclic lipopeptide surfactin from a marine-derived Bacillus velezensis SH-B74
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