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Development of Steady-State Diffusion Gradients for the Cultivation of Degradative Microbial Consortia

机译:稳态扩散梯度的发展,以培养降解微生物群落

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A diffusion gradient plate was constructed and evaluated for its potential use in the isolation of degradative microbial consortia from natural habitats. In this model, a steady-state concentration gradient of diclofop methyl, established by diffusion through an agarose gel, provided the carbon for microbial growth. Colonization of the gel surface was observed with epifluorescence and scanning confocal laser microscopy to determine microbial responses to the diclofop gradient. A detectable gradient developed over a narrow band (R2 = 0.89) and the cell numbers on the gel surface (R2 = 0.85). The numerical model was subsequently used to redesign the physical model. The detectable concentration gradient in the modified physical model extended over the length of the gel (38 mm). The simulated profile again showed a good correlation with the measured profile (R2 = 0.96) and the microbial responses to the concentration gradient (R2 = 0.99). It was concluded that these gradients provide the steady-state environments needed to sustain steady-state consortia. They also provide a physical pathway for the development of degradative biofilms from low to high concentrations of toxicants and simulate conditions under which low concentrations of toxicant are supplied at a constant flux over long periods of time, such as the conditions that could occur in natural environments.
机译:构建扩散梯度板并评估其在从自然栖息地中分离降解微生物聚生体中的潜在用途。在该模型中,通过在琼脂糖凝胶中扩散而建立的双氯芬酸甲酯的稳态浓度梯度为微生物的生长提供了碳。用落射荧光和扫描共聚焦激光显微镜观察凝胶表面的定殖,以确定微生物对双氯芬普梯度的反应。在窄带(R2 = 0.89)和凝胶表面的细胞数(R2 = 0.85)上出现了可检测到的梯度。数值模型随后被用于重新设计物理模型。修改后的物理模型中可检测到的浓度梯度在凝胶的整个长度(38毫米)上扩展。模拟轮廓再次显示出与测量轮廓(R2 = 0.96)和微生物对浓度梯度的响应(R2 = 0.99)具有良好的相关性。结论是,这些梯度提供了维持稳态财团所需的稳态环境。它们还为从低浓度到高浓度毒物的降解生物膜的发育提供了一条物理途径,并模拟了在很长一段时间内以恒定流量提供低浓度毒物的条件,例如自然环境中可能发生的条件。 。

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