Suzuki Marcelino T, Parrot Delphine, Berg Gabriele, Grube Martin, Tomasi Sophie
Sorbonne Universités, UPMC Univ. Paris 06, CNRS, Laboratoire de Biodiversité et Biotechnologie Microbiennes (LBBM), Observatoire Océanologique, F-66650, Banyuls/Mer, France.
UMR CNRS 6226, Institut des Sciences chimiques de Rennes, Equipe PNSCM "Produits Naturels - Synthèses - Chimie Médicinale", UFR Sciences Pharmaceutiques et Biologiques, Univ. Rennes 1, Université Européenne de Bretagne, 2 Avenue du Pr. Léon Bernard, F-35043, Rennes, France.
Appl Microbiol Biotechnol. 2016 Jan;100(2):583-95. doi: 10.1007/s00253-015-7114-z. Epub 2015 Nov 9.
The search for microorganisms from novel sources and in particular microbial symbioses represents a promising approach in biotechnology. In this context, lichens have increasingly become a subject of research in microbial biotechnology, particularly after the recognition that a diverse community of bacteria other than cyanobacteria is an additional partner to the traditionally recognized algae-fungus mutualism. Here, we review recent studies using culture-dependent as well as culture-independent approaches showing that lichens can harbor diverse bacterial families known for the production of compounds of biotechnological interest and that several microorganisms isolated from lichens, in particular Actinobacteria and Cyanobacteria, can produce a number of bioactive compounds, many of them with biotechnological potential.
从新来源,特别是微生物共生体中寻找微生物,是生物技术领域一种很有前景的方法。在这种背景下,地衣越来越成为微生物生物技术研究的对象,尤其是在人们认识到除蓝细菌之外的各种细菌群落是传统上所认可的藻类 - 真菌共生关系中的额外伙伴之后。在此,我们综述了近期使用依赖培养和不依赖培养方法的研究,这些研究表明地衣可含有因产生具有生物技术意义的化合物而闻名的多种细菌科,并且从地衣中分离出的几种微生物,特别是放线菌和蓝细菌,能够产生许多生物活性化合物,其中许多具有生物技术潜力。