Li Dak Sum Yip Yio Chin Kenneth Li Marine Biopharmaceutical Research Center, College of Food and Pharmaceutical Sciences, Ningbo University, Ningbo, 315832, People's Republic of China.
Ningbo Institute of Marine Medicine, Peking University, Ningbo, 315832, People's Republic of China.
J Microbiol. 2023 Jul;61(7):655-662. doi: 10.1007/s12275-023-00063-3. Epub 2023 Aug 17.
Pure cultivation of microbes is still limited by the challenges of microbial uncultivability, with most microbial strains unable to be cultivated under standard laboratory conditions. The experience accumulated from advanced techniques such as in situ cultivation has identified that microbial interactions exist in natural habitats but are absent in laboratory cultures. These microbial interactions are likely one of the key factors in isolating previously uncultured microbes. The need for better knowledge of the mechanisms operating in microbial interactions has led to various experiments that have utilized microbial interactions in different approaches to microbial cultivation. These new attempts to understand microbial interactions not only present a new perspective on microbial uncultivability but also provide an opportunity to access uncultured phylogenetically novel microbes with their potential biotechnology applications. In this review, we focus on studies of the mechanisms of microbial interaction where the growth of other microbes is affected. Additionally, we review some successful applications of microbial interactions in cultivation methods, an approach that can play an important role in the bioprospecting of untapped microbial resources.
纯微生物培养仍然受到微生物不可培养性的挑战的限制,大多数微生物菌株无法在标准实验室条件下培养。原位培养等先进技术积累的经验表明,微生物相互作用存在于自然栖息地,但不存在于实验室培养物中。这些微生物相互作用可能是分离以前未培养微生物的关键因素之一。需要更好地了解微生物相互作用中起作用的机制,导致了各种实验,这些实验利用微生物相互作用的不同方法来进行微生物培养。这些新的尝试理解微生物相互作用不仅为微生物不可培养性提供了一个新的视角,而且为获得具有潜在生物技术应用的未培养的系统发育新颖的微生物提供了机会。在这篇综述中,我们重点研究了其他微生物生长受到影响的微生物相互作用机制的研究。此外,我们还回顾了微生物相互作用在培养方法中的一些成功应用,这种方法在未开发的微生物资源的生物勘探中可以发挥重要作用。