放线菌素
同色链霉菌
黄色粘球菌
生物
生物合成
基因簇
生物化学
次生代谢物
代谢物
链霉菌
铁载体
细菌
放线菌
代谢组
次生代谢
链霉菌科
微生物学
基因
竞赛(生物学)
聚酮
基因表达调控
抗生素
调节基因
代谢途径
突变体
非核糖体肽
细胞生物学
基因表达
氨基酸
作者
Namil Lee,Woori Kim,Jinkyoo Chung,Yongjae Lee,Suhyung Cho,Kyoung‐Soon Jang,Sun Chang Kim,Bernhard Ø. Palsson,Byung‐Kwan Cho
出处
期刊:The ISME Journal
[Springer Nature]
日期:2020-01-28
卷期号:14 (5): 1111-1124
被引量:90
标识
DOI:10.1038/s41396-020-0594-6
摘要
Abstract Microbial coculture to mimic the ecological habitat has been suggested as an approach to elucidate the effect of microbial interaction on secondary metabolite biosynthesis of Streptomyces. However, because of chemical complexity during coculture, underlying mechanisms are largely unknown. Here, we found that iron competition triggered antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus. During coculture, M. xanthus enhanced the production of a siderophore, myxochelin, leading M. xanthus to dominate iron scavenging and S. coelicolor to experience iron-restricted conditions. This chemical competition, but not physical contact, activated the actinorhodin biosynthetic gene cluster and the branched-chain amino acid degradation pathway which imply the potential to produce precursors, along with activation of a novel actinorhodin export system. Furthermore, we found that iron restriction increased the expression of 21 secondary metabolite biosynthetic gene clusters (smBGCs) in other Streptomyces species. These findings suggested that the availability for key ions stimulates specific smBGCs, which had the potential to enhance secondary metabolite biosynthesis in Streptomyces.
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