Exploring halophilic environments as a source of new antibiotics.

IF 6 2区 生物学 Q1 MICROBIOLOGY Critical Reviews in Microbiology Pub Date : 2024-05-01 Epub Date: 2023-04-20 DOI:10.1080/1040841X.2023.2197491
Thomas P Thompson, Brendan F Gilmore
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Abstract

Microbial natural products from microbes in extreme environments, including haloarchaea, and halophilic bacteria, possess a huge capacity to produce novel antibiotics. Additionally, enhanced isolation techniques and improved tools for genomic mining have expanded the efficiencies in the antibiotic discovery process. This review article provides a detailed overview of known antimicrobial compounds produced by halophiles from all three domains of life. We summarize that while halophilic bacteria, in particular actinomycetes, contribute the vast majority of these compounds the importance of understudied halophiles from other domains of life requires additional consideration. Finally, we conclude by discussing upcoming technologies- enhanced isolation and metagenomic screening, as tools that will be required to overcome the barriers to antimicrobial drug discovery. This review highlights the potential of these microbes from extreme environments, and their importance to the wider scientific community, with the hope of provoking discussion and collaborations within halophile biodiscovery. Importantly, we emphasize the importance of bioprospecting from communities of lesser-studied halophilic and halotolerant microorganisms as sources of novel therapeutically relevant chemical diversity to combat the high rediscovery rates. The complexity of halophiles will necessitate a multitude of scientific disciplines to unravel their potential and therefore this review reflects these research communities.

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探索嗜卤环境作为新抗生素来源的可能性。
来自极端环境中微生物(包括卤代古细菌和嗜卤细菌)的微生物天然产物具有生产新型抗生素的巨大能力。此外,分离技术的提高和基因组挖掘工具的改进也提高了抗生素发现过程的效率。这篇综述文章详细概述了所有三个生命领域的嗜卤生物所产生的已知抗菌化合物。我们总结说,虽然嗜卤细菌,尤其是放线菌,贡献了这些化合物中的绝大部分,但对其他生命领域中未被充分研究的嗜卤生物的重要性还需要更多的考虑。最后,我们讨论了即将出现的技术--强化分离和元基因组筛选--作为克服抗菌药物发现障碍所需的工具。这篇综述强调了这些来自极端环境的微生物的潜力及其对更广泛科学界的重要性,希望能在嗜卤生物发现领域引发讨论和合作。重要的是,我们强调了从研究较少的嗜卤和耐卤微生物群落中进行生物勘探的重要性,将其作为新型治疗相关化学多样性的来源,以应对较高的再发现率。嗜卤微生物的复杂性要求多个科学学科共同发掘它们的潜力,因此本综述反映了这些研究领域的情况。
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来源期刊
Critical Reviews in Microbiology
Critical Reviews in Microbiology 生物-微生物学
CiteScore
14.70
自引率
0.00%
发文量
99
期刊介绍: Critical Reviews in Microbiology is an international, peer-reviewed journal that publishes comprehensive reviews covering all areas of microbiology relevant to humans and animals, including medical and veterinary microbiology, public health and environmental microbiology. These may include subjects related to microbial molecular biology, immunopathogenicity, physiology, biochemistry, structure, and epidemiology. Of particular interest are reviews covering clinical aspects of bacterial, virological, fungal and parasitic diseases. All reviews must be analytical, comprehensive, and balanced in nature. Editors welcome uninvited submissions, as well as suggested topics for reviews accompanied by an abstract.
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