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Interfacing phylogenetic oligonucleotide probe hybridizations with representations of microbial populations and specific growth rates in mathematical models of activated sludge processes

机译:系统发育寡核苷酸探针杂交技术与活性污泥过程数学模型中微生物种群和特定生长率的表征

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摘要

Accurate estimates of microbial population concentrations and the direct, in situ determination of kinetic parameters could improve the calibration and validation of existing mechanistic mathematical models of biological nutrient removal activated sludge systems. Oligonucleotide probe hybridizations show promise for measuring concentrations and in situ specific growth rates of microbial populations. The most common targets for oligonucleotide probes are the phylogenetically conserved ribosomal RNA molecules. Recent advances in hybridization techniques have improved the quantitative nature of ribosomal RNA based assays. However, correlations between concentrations of "theoretical" microbial populations predicted by mechanistic models and quantitative information obtained with oligonucleotide probe hybridizations are not yet developed. Future work should develop such correlations, while addressing the limitations of the molecular assays.
机译:微生物种群浓度的准确估算以及动力学参数的直接,原位测定可以改善对现有生物脱氮活性污泥系统力学数学模型的校准和验证。寡核苷酸探针杂交显示出有望测量微生物种群的浓度和原位比生长速率。寡核苷酸探针最常见的靶标是系统保守的核糖体RNA分子。杂交技术的最新进展改善了基于核糖体RNA的测定的定量性质。然而,由机理模型预测的“理论”微生物群体的浓度与通过寡核苷酸探针杂交获得的定量信息之间的相关性尚未开发。未来的工作应该发展这种相关性,同时解决分子测定的局限性。

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