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每克基质中使用 1000 个生物传感器对大量土壤进行非破坏性化学感应。

Nondestructive Chemical Sensing within Bulk Soil Using 1000 Biosensors Per Gram of Matrix.

机构信息

Systems, Synthetic, and Physical Biology Graduate Program, Rice University, 6100 Main Street, MS-180, Houston, Texas 77005, United States.

Department of Earth, Environmental and Planetary Sciences, Rice University, 6100 Main St, MS-126, Houston, Texas 77005, United States.

出版信息

ACS Synth Biol. 2022 Jul 15;11(7):2372-2383. doi: 10.1021/acssynbio.2c00083. Epub 2022 Jun 17.

DOI:10.1021/acssynbio.2c00083
PMID:35715210
Abstract

Gene expression can be monitored in hard-to-image environmental materials using gas-reporting biosensors, but these outputs have only been applied in autoclaved matrices that are hydrated with rich medium. To better understand the compatibility of indicator gas reporting with environmental samples, we evaluated how matrix hydration affects the gas signal of an engineered microbe added to a sieved soil. A gas-reporting microbe presented a gas signal in a forest soil (Alfisol) when hydrated to an environmentally relevant osmotic pressure. When the gas signal was concentrated prior to analysis, a biosensor titer of 10 cells/gram of soil produced a significant signal when soil was supplemented with halides. A signal was also observed without halide amendment, but a higher cell titer (10 cells/gram of soil) was required. A sugar-regulated gas biosensor was able to report with a similar level of sensitivity when added to an unsterilized soil matrix, illustrating how gas concentration enables biosensing within a soil containing environmental microbes. These results establish conditions where engineered microbes can report on gene expression in living environmental matrices with decreased perturbation of the soil environment compared to previously reported approaches, using biosensor titers that are orders of magnitude lower than the number of cells typically observed in a gram of soil.

摘要

可以使用气体报告生物传感器监测难以成像的环境材料中的基因表达,但这些输出仅应用于用丰富培养基水合的高压灭菌基质中。为了更好地了解指示剂气体报告与环境样品的兼容性,我们评估了基质水合如何影响添加到筛分土壤中的工程微生物的气体信号。当水合到与环境相关的渗透压时,气体报告微生物在森林土壤(Alfisol)中呈现气体信号。当在分析之前浓缩气体信号时,当土壤中补充卤化物时,生物传感器滴度为 10 个细胞/克土壤会产生显著信号。即使没有添加卤化物也观察到了信号,但需要更高的细胞滴度(10 个细胞/克土壤)。当添加到未灭菌的土壤基质时,受糖调控的气体生物传感器能够以类似的灵敏度进行报告,这说明了气体浓缩如何能够在含有环境微生物的土壤中进行生物感应。这些结果确定了在与先前报道的方法相比对土壤环境的干扰较小的情况下,工程微生物可以在活的环境基质中报告基因表达的条件,使用的生物传感器滴度比通常在一克土壤中观察到的细胞数量低几个数量级。

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