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首页> 外文期刊>Trends in Microbiology >From Axenic to Mixed Cultures: Technological Advances Accelerating a Paradigm Shift in Microbiology
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From Axenic to Mixed Cultures: Technological Advances Accelerating a Paradigm Shift in Microbiology

机译:从轴静脉到混合培养物:技术进步加速微生物学中的范式转变

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Since the onset of microbiology in the late 19th century, scientists have been growing microorganisms almost exclusively as pure cultures, resulting in a limited and biased view of the microbial world. Only a paradigm shift in cultivation techniques - from axenic to mixed cultures - can allow a full comprehension of the (chemical) communication of microorganisms, with profound consequences for natural product discovery, microbial ecology, symbiosis, and pathogenesis, to name a few areas. Three main technical advances during the last decade are fueling the realization of this revolution in microbiology: microfluidics, next-generation 3D-bioprinting, and single-cell metabolomics. These technological advances can be implemented for large-scale, systematic cocultivation studies involving three or more microorganisms. In this review, we present recent trends in microbiology tools and discuss how these can be employed to decode the chemical language that microorganisms use to communicate.
机译:自19世纪后期的微生物学开始以来,科学家几乎完全是纯文化的微生物,导致微生物世界的有限和偏见的观点。 只有栽培技术的范式转变 - 从轴静脉到混合培养物 - 可以充分了解微生物的(化学)通信,对天然产品发现,微生物生态,共生和发病机制的深远后果,以命名几个区域。 过去十年的三个主要技术进步正在推动微生物学中这种革命的实现:微流体,下一代3D-生物监测和单细胞代谢组。 这些技术进步可以用于大规模,系统的共同化研究涉及三种或更多种微生物。 在这篇综述中,我们展示了近期微生物工具的趋势,并讨论了如何使用这些方法来解码微生物用于沟通的化学语言。

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