Expanding the chemical diversity through microorganisms co-culture: Current status and outlook

生化工程 多样性(政治) 基石 药物发现 计算生物学 分离(微生物学) 生物 生物技术 计算机科学 数据科学 政治学 微生物学 生物信息学 工程类 地理 考古 法学
作者
Divya Arora,Prasoon Gupta,Sundeep Jaglan,Catherine Roullier,Olivier Grovel,Samuel Bertrand
出处
期刊:Biotechnology Advances [Elsevier]
卷期号:40: 107521-107521 被引量:114
标识
DOI:10.1016/j.biotechadv.2020.107521
摘要

Natural products (NPs) are considered as a cornerstone for the generation of bioactive leads in drug discovery programs. However, one of the major limitations of NP drug discovery program is "rediscovery" of known compounds, thereby hindering the rate of drug discovery efficiency. Therefore, in recent years, to overcome these limitations, a great deal of attention has been drawn towards understanding the role of microorganisms' co-culture in inducing novel chemical entities. Such induction could be related to activation of genes which might be silent or expressed at very low levels (below detection limit) in pure-strain cultures under normal laboratory conditions. In this review, chemical diversity of compounds isolated from microbial co-cultures, is discussed. For this purpose, chemodiversity has been represented as a chemical-structure network based on the "Tanimoto Structural Similarity Index". This highlights the huge structural diversity induced by microbial co-culture. In addition, the current trends in microbial co-culture research are highlighted. Finally, the current challenges (1 - induction monitoring, 2 - reproducibility, 3 - growth time effect and 4 - up-scaling for isolation purposes) are discussed. The information in this review will support researchers to design microbial co-culture strategies for future research efforts. In addition, guidelines for co-culture induction reporting are also provided to strengthen future reporting in this NP field.
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