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Transport of a genetically engineered Pseudomonas fluorescens strain through a soil microcosm.

机译:基因改造的荧光假单胞菌菌株通过土壤微观世界的运输。

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摘要

Vertical soil microcosms flushed with groundwater were used to study the influence of water movement on survival and transport of a genetically engineered Pseudomonas fluorescens C5t strain through a loamy sand and a loam soil. Transport of cells introduced into the top 1 cm of the vertical soil microcosms was dependent on the flow rate of water and the number of times microcosms were flushed with groundwater. The presence of wheat roots growing downward in the microcosms contributed only slightly to the movement of P. fluorescens C5t cells to lower soil regions of the loamy sand microcosms, but enhanced downward transport in the loam microcosms. Furthermore, the introduced P. fluorescens C5t cells were detected in the effluent water samples even after three flushes of groundwater and 10 days of incubation. As evidenced by a comparison of counts from immunofluorescence and selective plating, nonculturable C5t cells occurred in day 10 soil and percolated water samples, primarily of the loamy sand microcosms. Vertical soil microcosms that use water movement may be useful in studying the survival and transport of genetically engineered bacteria in soil under a variety of conditions prior to field testing.
机译:使用地下水冲洗的垂直土壤微观世界研究水分运动对转基因荧光假单胞菌C5t菌株通过壤土和壤土生存和运输的影响。引入垂直土壤微观顶部1 cm的细胞的运输取决于水的流量和微观地下水被地下水冲洗的次数。在微观世界中向下生长的小麦根的存在仅对荧光假单胞菌C5t细胞向壤质沙微观世界的较低土壤区域的移动贡献很小,但是在壤土微观世界中增强了向下的运输。此外,即使在冲洗了3次地下水并孵育了10天后,仍在废水样品中检测到引入的荧光假单胞菌C5t细胞。通过免疫荧光计数和选择性平板计数的比较证明,不可培养的C5t细胞出现在第10天的土壤和渗透水样品中,主要是壤土沙的微观世界。在田间测试之前,利用水分运动的垂直土壤微观世界可能有助于研究基因工程细菌在土壤中在各种条件下的存活和运输。

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