Genome-based analysis of the type II PKS biosynthesis pathway of xanthones in Streptomyces caelestis and their antifungal activity

The ethyl acetate extract from the liquid fermentation of Aw99c exhibited high and broad antifungal activities against plant pathogenic fungi. Bioassay guide fractionation led to the discovery of two xanthones, citreamicin ε and θ. The draft genome sequence of Aw99c was analyzed by a similarity-base...

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Veröffentlicht in:RSC advances 2019-11, Vol.9 (64), p.37376-37383
Hauptverfasser: Liu, Ling-Li, Liu, Hong-Fei, Gao, Hua-Hua, Yang, Zheng-Zhong, Feng, Xiao-Lan, Gao, Jin-Ming, Zhao, Jian-Bang
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Sprache:eng
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Zusammenfassung:The ethyl acetate extract from the liquid fermentation of Aw99c exhibited high and broad antifungal activities against plant pathogenic fungi. Bioassay guide fractionation led to the discovery of two xanthones, citreamicin ε and θ. The draft genome sequence of Aw99c was analyzed by a similarity-based approach to elucidate the pathway for the citreamicins. A 48 kb citreamicin ( ) gene cluster with 51 open reading frames encoding type II polyketide synthases and unique polyketide tailoring enzymes was proposed based on the genome analysis and the chemical structure derivation. antifungal assay showed that citreamicin ε exhibited significant growth inhibition against the plant pathogenic fungi with MIC values ranging from 1.56 to 12.5 μM. The cellular structural change of treated with citreamicin ε was detected by SEM and the result showed that citreamicin ε caused disruptive surface of the mycelia.
ISSN:2046-2069
2046-2069
DOI:10.1039/c9ra07345k