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高通量超声喷雾接种法促进稀有微生物物种的菌落培养。

A high-throughput ultrasonic spraying inoculation method promotes colony cultivation of rare microbial species.

机构信息

Britton Chance Centre for Biomedical Photonics at Wuhan National Laboratory for Optoelectronics - Hubei Bioinformatics and Molecular Imaging Key Laboratory, Systems Biology Theme, Department of Biomedical Engineering, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.

Hubei Key Laboratory of Purification and Application of Plant Anti-Cancer Active Ingredients, Department of Chemistry and Life Science, Hubei University of Education, No. 129, Gaoxin 2nd Road, East Lake High-Tech Zone, Wuhan, 430205, China.

出版信息

Environ Microbiol. 2021 Feb;23(2):1275-1285. doi: 10.1111/1462-2920.15386. Epub 2021 Jan 12.

Abstract

Current method for obtaining microbial colonies still relies on traditional dilution and spreading plate (DSP) procedures, which is labor-intensive, skill-dependent, low-throughput and inevitably causing dilution-to-extinction of rare microorganisms. Herein, we proposed a novel ultrasonic spraying inoculation (USI) method that disperses microbial suspensions into millions of aerosols containing single cells, which lately be deposited freely on a gel plate to achieve high-throughput culturing of colonies. Compared with DSP, USI significantly increased both distributing uniformity and throughput of the colonies on agar plates, improving the minimal colony-forming abundance of rare Escherichia coli mixed in a lake sample from 1% to 0.01%. Applying this novel USI to a lake sample, 16 cellulose-degrading colonies were screened out among 4766 colonies on an enlarged 150-mm-diameter LB plate. Meanwhile, they could only be occasionally observed when using commonly used DSP procedures. 16S rRNA sequencing further showed that USI increased colony-forming species from 11 (by DSP) to 23, including seven completely undetectable microorganisms in DSP-reared communities. In addition to avoidance of dilution-to-extinction, operation-friendly USI efficiently inoculated microbial samples on the agar plate in a high-throughput and single-cell form, which eliminated masking or out-competition from other species in associated groups, thereby improving rare species cultivability.

摘要

目前获得微生物菌落的方法仍然依赖于传统的稀释和涂布平板(DSP)程序,这种方法既耗费体力,又依赖于技术,通量低,不可避免地会导致稀有微生物的稀释至灭绝。在此,我们提出了一种新颖的超声喷雾接种(USI)方法,该方法将微生物悬浮液分散成含有单细胞的数百万个气溶胶,这些气溶胶随后自由沉积在凝胶平板上,从而实现了菌落的高通量培养。与 DSP 相比,USI 显著提高了琼脂平板上菌落的分布均匀性和通量,将混合在湖样中的稀有大肠杆菌的最小菌落形成丰度从 1%提高到 0.01%。将这种新颖的 USI 应用于湖水样本,在放大的 150 毫米直径 LB 平板上从 4766 个菌落中筛选出 16 个纤维素降解菌。同时,当使用常用的 DSP 程序时,这些菌只能偶尔观察到。16S rRNA 测序进一步表明,USI 增加了菌落形成的物种数量,从 11 种(由 DSP 产生)增加到 23 种,包括 DSP 培养的群落中完全无法检测到的七种微生物。除了避免稀释至灭绝之外,操作友好的 USI 还能以高通量和单细胞的形式将微生物样品高效地接种到琼脂平板上,从而消除了相关群体中其他物种的掩盖或竞争,从而提高了稀有物种的可培养性。

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