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Rubrolone production by Dactylosporangium vinaceum: biosynthesis, modulation and possible biological function

机译:Daytylosporangium Vinaceum的摩罗松生产:生物合成,调制和可能的生物功能

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Rare actinomycetes are likely treasure troves for bioactive natural products, and it is therefore important that we enrich our understanding of biosynthetic potential of these relatively understudied bacteria. Dactylosporangium are a genus of such rare Actinobacteria that are known to produce a number of important antibacterial compounds, but for which there are still no fully assembled reference genomes, and where the extent of encoded biosynthetic capacity is not defined. Dactylosporangium vinaceum (NRRL B-16297) is known to readily produce a deep wine red-coloured diffusible pigment of unknown origin, and it was decided to define the chemical identity of this natural product pigment, and in parallel use whole genome sequencing and transcriptional analysis to lay a foundation for understanding the biosynthetic capacity of these bacteria. Results show that the produced pigment is made of various rubrolone conjugates, the spontaneous product of the reactive pre-rubrolone, produced by the bacterium. Genome and transcriptome analysis identified the highly expressed biosynthetic gene cluster (BGC) for pre-rubrolone. Further analysis of the fully assembled genome found it to carry 24 additional BGCs, of which the majority were poorly transcribed, confirming the encoded capacity of this bacterium to produce natural products but also illustrating the main bottleneck to exploiting this capacity. Finally, analysis of the potential environmental role of pre-rubrolone found it to react with a number of amine containing antibiotics, antimicrobial peptides and siderophores pointing to its potential role as a "minesweeper" of xenobiotic molecules in the bacterial environment.
机译:稀有放线菌可能是生物活性天然产物的宝库,因此,我们必须丰富对这些相对未被研究的细菌生物合成潜力的了解。指孢菌是一种罕见的放线菌属,已知能产生许多重要的抗菌化合物,但目前还没有完全组装的参考基因组,编码生物合成能力的范围尚未确定。Dactylosporangium vinaceum(NRRL B-1697)是已知的容易产生深葡萄酒红色可扩散色素的未知来源,并决定定义该天然产物色素的化学身份,并并行使用全基因组测序和转录分析,为理解这些细菌的生物合成能力奠定了基础。结果表明,所制备的色素是由多种rubrolone结合物组成的,这是细菌产生的反应性前rubrolone的自发产物。基因组和转录组分析确定了前rubrolone的高表达生物合成基因簇(BGC)。对完全组装的基因组的进一步分析发现,它携带了24个额外的BGC,其中大多数转录不良,证实了这种细菌产生天然产物的编码能力,但也说明了利用这种能力的主要瓶颈。最后,对前rubrolone的潜在环境作用的分析发现,它与许多含胺抗生素、抗菌肽和铁载体发生反应,表明其在细菌环境中作为外源分子的“扫雷者”的潜在作用。

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