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The role of inter-species interactions in Salinispora specialized metabolism

机译:种间相互作用在盐藻专业代谢中的作用

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摘要

Bacterial genome sequences consistently contain many more biosynthetic gene clusters encoding specialized metabolites than predicted by the compounds discovered from the respective strains. One hypothesis invoked to explain the cryptic nature of these gene clusters is that standard laboratory conditions do not provide the environmental cues needed to trigger gene expression. A potential source of such cues is other members of the bacterial community, which are logical targets for competitive interactions. In this study, we examined the effects of such interactions on specialized metabolism in the marine actinomycete Salinispora tropica. The results show that antibiotic activities and the concentration of some small molecules increase in the presence of co-occurring bacterial strains relative to monocultures. Some increases in antibiotic activity could be linked to nutrient depletion by the competitor as opposed to the production of a chemical cue. Other increases were correlated with the production of specific compounds by S. tropica. In particular, one interaction with a Vibrio sp. consistently induced antibiotic activity and was associated with parent ions that were unique to this interaction, although the associated compound could not be identified. This study provides insight into the metabolomic complexities of bacterial interactions and baseline information for future genome mining efforts.
机译:细菌基因组序列始终包含比从各个菌株中发现的化合物所预测的更多的生物合成基因簇,这些基因簇编码专门的代谢产物。用来解释这些基因簇的隐秘性质的一种假设是,标准实验室条件不能提供触发基因表达所需的环境提示。这种提示的潜在来源是细菌群落的其他成员,它们是竞争性相互作用的逻辑目标。在这项研究中,我们研究了这种相互作用对海洋放线菌热带盐藻中特化代谢的影响。结果表明,相对于单培养,在共生细菌菌株的存在下,抗生素活性和一些小分子的浓度增加。抗生素活性的某些增加可能与竞争者的营养消耗有关,而不是产生化学提示。其他增加与热带链球菌产生特定化合物有关。特别地,与弧菌一种相互作用。始终诱导抗生素活性,并且与这种相互作用所独有的母体离子相关,尽管无法确定相关化合物。这项研究提供了对细菌相互作用的代谢组学复杂性的了解,并为将来的基因组挖掘工作提供了基线信息。

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