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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The micro-Petri dish, a million-well growth chip for the culture and high-throughput screening of microorganisms
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The micro-Petri dish, a million-well growth chip for the culture and high-throughput screening of microorganisms

机译:微培养皿,百万孔生长芯片,用于微生物的培养和高通量筛选

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摘要

A miniaturized, disposable microbial culture chip has been fabricated by microengineering a highly porous ceramic sheet with up to one million growth compartments. This versatile culture format, with discrete compartments as small as 7 × 7 μm, allowed the growth of segregated microbial samples at an unprecedented density. The chip has been used for four complementary applications in microbiology. (i) As a fast viable counting system that showed a dynamic range of over 10,000, a low degree of bias, and a high culturing efficiency. (ii) In high-throughput screening, with the recovery of 1 fluorescent microcolony in 10,000. (iii) In screening for an enzyme-based, non dominant phenotype by the targeted recovery of Escherichia coli transformed with the plasmid pUC18, based on expression of the lacZ reporter gene without antibiotic-resistance selection. The ease of rapid, successive changes in the environment of the organisms on the chip, needed for detection of β-galactosidase activity, highlights an advantageous feature that was also used to screen a metagenomic library for the same activity, (iv) In high-throughput screening of > 200,000 isolates from Rhine water based on metabolism of a fluorogenic organophosphate compound, resulting in the recovery of 22 microcolonies with the desired phenotype. These isolates were predicted, on the basis of rRNA sequence, to include six new species. These four applications suggest that the potential for such simple, readily manufactured chips to impact microbial culture is extensive and may facilitate the full automation and multiplexing of microbial culturing, screening, counting, and selection.
机译:通过对多达一百万个生长室的高度多孔的陶瓷片进行微工程处理,可以制造出一种微型的一次性微生物培养芯片。这种通用的培养形式具有小至7×7μm的离散隔间,使分离的微生物样品能够以前所未有的密度生长。该芯片已用于微生物学的四个互补应用。 (i)作为一种快速可行的计数系统,其动态范围超过10,000,偏差程度低,并且培养效率高。 (ii)在高通量筛选中,在10,000个中回收了1个荧光微菌落。 (iii)基于lacZ报道基因的表达而无需选择抗生素抗性,通过靶向回收用质粒pUC18转化的大肠杆菌筛选基于酶的非显性表型。检测β-半乳糖苷酶活性所需的芯片上生物快速,连续变化的环境的简便性凸显了一项有利功能,该功能还用于筛选具有相同活性的宏基因组文库,(iv)基于荧光有机磷酸酯化合物的代谢,从莱茵河水中筛选出> 200,000个分离物,从而回收了22个具有所需表型的微菌落。根据rRNA序列预测这些分离株将包括六个新物种。这四个应用表明,这种简单,易于制造的芯片影响微生物培养的潜力是广泛的,并且可以促进微生物培养,筛选,计数和选择的完全自动化和多重化。

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