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首页> 外文期刊>Applied and Environmental Microbiology >Importance of Preferential Flow and Soil Management in Vertical Transport of a Biocontrol Strain of Pseudomonas fluorescens in Structured Field Soil.
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Importance of Preferential Flow and Soil Management in Vertical Transport of a Biocontrol Strain of Pseudomonas fluorescens in Structured Field Soil.

机译:在结构性田间土壤中,荧光假单胞菌生物防治菌株在垂直运输中优先流动和土壤管理的重要性。

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摘要

The large-scale release of wild-type or genetically modified bacteria into the environment for control of plant diseases or for bioremediation entails the potential risk of groundwater contamination by these microorganisms. For a model study on patterns of vertical transport of bacteria under field conditions, the biocontrol strain Pseudomonas fluorescens CHA0, marked with a spontaneous resistance to rifampin (CHA0-Rif), was applied to a grass-clover ley plot (rotation grassland) and a wheat plot. Immediately after bacterial application, heavy precipitation was simulated by sprinkling, over a period of 8 h, 40 mm of water containing the mobile tracer potassium bromide and the dye Brilliant Blue FCF to identify channels of preferential flow. One day later, a 150-cm-deep soil trench was dug and soil profiles were prepared. Soil samples were extracted at different depths of the profiles and analyzed for the number of CHA0-Rif cells and the concentration of bromide and Brilliant Blue FCF. Dye coverage in the soil profiles was estimated by image analysis. CHA0 was present at 10(sup8) CFU/g in the surface soil, and 10(sup6) to 10(sup7) CFU/g of CHA0 was detected along macropores between 10 and 150 cm deep. Similarly, the concentration of the tracer bromide along the macropores remained at the same level below 20 cm deep. Dye coverage in lower soil layers was higher in the ley than in the wheat plot. In nonstained parts of the profiles, the number of CHA0-Rif cells was substantially smaller and the bromide concentration was below the detection limit in most samples. We conclude that after heavy rainfall, released bacteria are rapidly transported in large numbers through the channels of preferential flow to deeper soil layers. Under these conditions, the transport of CHA0-Rif is similar to that of the conservative tracer bromide and is affected by cultural practice.
机译:为了控制植物病害或进行生物修复,将野生型或转基因细菌大规模释放到环境中,这些微生物可能会污染地下水。为了对田间条件下细菌的垂直运输模式进行模型研究,将具有自然抗利福平特性的生物防治菌株荧光假单胞菌CHA0(CHA0-Rif)应用于草-三叶草地(旋转草地)和麦田。细菌施用后,立即通过在8小时内撒上40 mm水,其中包含流动示踪剂溴化钾和Brilliant Blue FCF染料,以识别优先流动的通道,从而模拟了严重的沉淀。一天后,挖了一个150厘米深的土壤沟渠,准备了土壤剖面。在剖面的不同深度处提取土壤样品,并分析CHA0-Rif细胞的数量以及溴化物和亮蓝FCF的浓度。通过图像分析估计土壤剖面中的染料覆盖率。在表层土壤中,CHA0的含量为10(sup8)CFU / g,沿着10至150 cm深的大孔检测到的CHA0含量为10(sup6)至10(sup7)CFU / g。同样,沿大孔的示踪溴化物浓度仍保持在20 cm以下的相同水平。莱里较低土壤层的染料覆盖率高于小麦田。在轮廓的未染色部分中,大多数样品中CHA0-Rif细胞的数量明显较少,且溴化物浓度低于检测极限。我们得出的结论是,暴雨过后,释放的细菌通过优先流动的渠道迅速大量迁移到更深的土壤层。在这些条件下,CHA0-Rif的转运与保守示踪剂溴化物的转运相似,并受文化习俗的影响。

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