Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry of the Russian Academy of Sciences, 117997 Moscow, Russia.
Department of Chemistry, Lomonosov Moscow State University, 119991 Moscow, Russia.
Int J Mol Sci. 2023 Dec 30;25(1):537. doi: 10.3390/ijms25010537.
Natural compounds continue to serve as the most fruitful source of new antimicrobials. Analysis of bacterial genomes have revealed that the biosynthetic potential of antibiotic producers by far exceeds the number of already discovered structures. However, due to the repeated discovery of known substances, it has become necessary to change both approaches to the search for antibiotics and the sources of producer strains. The pressure of natural selection and the diversity of interactions in symbiotic communities make animal microbiomes promising sources of novel substances. Here, microorganisms associated with various animals were examined in terms of their antimicrobial agents. The application of alternative cultivation techniques, ultrahigh-throughput screening, and genomic analysis facilitated the investigation of compounds produced by unique representatives of the animal microbiota. We believe that new strategies of antipathogen defense will be discovered by precisely studying cell-cell and host-microbe interactions in microbiomes in the wild.
天然化合物仍然是新抗菌药物最丰富的来源。对细菌基因组的分析表明,抗生素产生菌的生物合成潜力远远超过已经发现的结构数量。然而,由于已知物质的反复发现,有必要改变寻找抗生素的方法和产生菌的来源。自然选择的压力和共生群落中相互作用的多样性使动物微生物组成为新型物质的有前途的来源。在这里,从抗菌剂的角度研究了与各种动物相关的微生物。替代培养技术、超高通量筛选和基因组分析的应用促进了对动物微生物组中独特代表所产生化合物的研究。我们相信,通过在野外对微生物组中的细胞-细胞和宿主-微生物相互作用进行精确研究,将发现新的抗病原体防御策略。