Institute for General Microbiology, Christian Albrechts University Kiel, Kiel, Germany.
Methods Mol Biol. 2023;2555:23-49. doi: 10.1007/978-1-0716-2795-2_3.
The marine ecosystem covers more than 70% of the world's surface, and oceans represent a source of varied types of organisms due to the diversified environment. Consequently, the marine environment is an exceptional depot of novel bioactive natural products, with structural and chemical features generally not found in terrestrial habitats. Here, in particular, microbes represent a vast source of unknown and probably new physiological characteristics. They have evolved during extended evolutionary processes of physiological adaptations under various environmental conditions and selection pressures. However, to date, the biodiversity of marine microbes and the versatility of their bioactive compounds and metabolites have not been fully explored. Thus, metagenomic tools are required to exploit the untapped marine microbial diversity and their bioactive compounds. This chapter focuses on function-based marine metagenomics to screen for bioactive molecules of value for biotechnology. Functional metagenomic strategies are described, including sampling in the marine environment, constructing marine metagenomic large-insert libraries, and examples on function-based screens for quorum quenching and anti-biofilm activities.
海洋生态系统覆盖了超过 70%的地球表面,由于环境的多样化,海洋是各种类型生物的来源。因此,海洋环境是新型生物活性天然产物的特殊蕴藏库,其结构和化学特征通常在陆地生境中找不到。在这里,微生物是未知的、可能是新的生理特性的巨大来源。它们是在各种环境条件和选择压力下的生理适应的长期进化过程中进化而来的。然而,迄今为止,海洋微生物的生物多样性及其生物活性化合物和代谢物的多功能性尚未得到充分探索。因此,需要宏基因组学工具来开发未开发的海洋微生物多样性及其生物活性化合物。本章重点介绍基于功能的海洋宏基因组学,以筛选对生物技术有价值的生物活性分子。描述了功能宏基因组学策略,包括海洋环境中的采样、构建海洋宏基因组大片段文库,以及基于功能的群体感应淬灭和抗生物膜活性筛选的示例。