Laboratoire Biotechnologie et Chimie Marines, Université Bretagne Sud, EA3884, LBCM, IUEM, CEDEX, 56321 Lorient, France.
CRIOBE, USR3278-EPHE/CNRS/UPVD/PSL, University of Perpignan via Domitia, 52 Avenue Paul Alduy, 66860 Perpignan, France.
Mar Drugs. 2022 Feb 21;20(2):153. doi: 10.3390/md20020153.
Natural products from plants have been listed for hundreds of years as a source of biologically active molecules. In recent years, the marine environment has demonstrated its ability to provide new structural entities. More than 70% of our planet's surface is covered by oceans, and with the technical advances in diving and remotely operated vehicles, it is becoming easier to collect samples. Although the risk of rediscovery is significant, the discovery of silent gene clusters and innovative analytical techniques has renewed interest in natural product research. Different strategies have been proposed to activate these silent genes, including co-culture, or mixed fermentation, a cultivation-based approach. This review highlights the potential of co-culture of marine microorganisms to induce the production of new metabolites as well as to increase the yields of respective target metabolites with pharmacological potential, and moreover to indirectly improve the biological activity of a crude extract.
植物来源的天然产物作为具有生物活性的分子来源已被记载了数百年。近年来,海洋环境已经证明了它提供新结构实体的能力。我们星球超过 70%的表面被海洋覆盖,随着潜水和远程操作车辆技术的进步,收集样本变得越来越容易。尽管再次发现的风险很大,但沉默基因簇的发现和创新的分析技术重新激发了人们对天然产物研究的兴趣。已经提出了不同的策略来激活这些沉默基因,包括共培养或混合发酵,这是一种基于培养的方法。本文综述了海洋微生物共培养诱导产生新代谢产物的潜力,以及提高具有药理潜力的各自目标代谢产物的产量,并且还可以间接提高粗提物的生物活性。