School of Life Sciences, University of Warwick, Coventry, UK.
University of the Balearic Islands, Palma, Spain.
Microb Biotechnol. 2021 Jan;14(1):291-306. doi: 10.1111/1751-7915.13722. Epub 2020 Dec 5.
Filamentous members of the phylum Actinobacteria are a remarkable source of natural products with pharmaceutical potential. The discovery of novel molecules from these organisms is, however, hindered because most of the biosynthetic gene clusters (BGCs) encoding these secondary metabolites are cryptic or silent and are referred to as orphan BGCs. While co-culture has proven to be a promising approach to unlock the biosynthetic potential of many microorganisms by activating the expression of these orphan BGCs, it still remains an underexplored technique. The marine actinobacterium Salinispora tropica, for instance, produces valuable compounds such as the anti-cancer molecule salinosporamide but half of its putative BGCs are still orphan. Although previous studies have used marine heterotrophs to induce orphan BGCs in Salinispora, its co-culture with marine phototrophs has yet to be investigated. Following the observation of an antimicrobial activity against a range of phytoplankton by S. tropica, we here report that the photosynthate released by photosynthetic primary producers influences its biosynthetic capacities with production of cryptic molecules and the activation of orphan BGCs. Our work, using an approach combining metabolomics and proteomics, pioneers the use of phototrophs as a promising strategy to accelerate the discovery of novel natural products from marine actinobacteria.
放线菌门的丝状成员是具有药物潜力的天然产物的重要来源。然而,由于大多数编码这些次级代谢物的生物合成基因簇(BGCs)是隐藏的或沉默的,因此被称为孤儿 BGCs,这些生物体中新分子的发现受到了阻碍。虽然共培养已被证明是一种通过激活这些孤儿 BGCs 的表达来解锁许多微生物生物合成潜力的有前途的方法,但它仍然是一种未充分探索的技术。例如,海洋放线菌盐单胞菌(Salinispora tropica)产生有价值的化合物,如抗癌分子 Salinosporamide,但它一半的假定 BGCs 仍然是孤儿。尽管先前的研究已经使用海洋异养生物来诱导 Salinispora 中的孤儿 BGCs,但它与海洋光合生物的共培养尚未得到研究。在观察到 S. tropica 对一系列浮游植物具有抗菌活性后,我们在这里报告称,光合初级生产者释放的光合作用产物会影响其生物合成能力,产生隐藏分子并激活孤儿 BGCs。我们的工作使用了一种结合代谢组学和蛋白质组学的方法,开创了使用光合生物作为加速从海洋放线菌中发现新型天然产物的有前途的策略。