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The study of the molecular ecology of bacteria involved in a life cycle impact assessment of agricultural adjuvants

机译:农业佐剂生命周期影响评估中涉及的细菌分子生态学研究

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摘要

The life cycle impact assessment of chemicals in the environment is essential for establishing an environmentally conscious, material-recycling society. To understand the life cycle of chemicals through the environmental problems arising from the al-kylphenol polyethoxylate (APEO?) issue, our research has focused as follows; (1) clarification of environmental fate based on interaction between bacteria and environmental factors; (2) establishment of a rapid and simple bacterial identification method. Environmental elements, such as Ca~(2+), Mg~(2+) and Fe~(3+), may influence the activity and rate of APEO? biodegradation in the environment. A highly reliable method for phylogenetic analysis at the strain level, named the SiO-GERMS (SlO-spc-alpha operon gene encoded ribosomal protein mass spectrum) method, was developed using bacterial ribosomal subunit proteins as theoretical biomarkers encoded in the SlO-spc-alpha operon with a validation procedure.
机译:环境中化学物质的生命周期影响评估对于建立一个具有环境意识的物质回收社会至关重要。为了了解由于烷基苯酚聚乙氧基化物(APEO?)问题引起的环境问题,化学品的生命周期,我们的研究重点如下: (1)根据细菌与环境因素之间的相互作用来澄清环境命运; (2)建立快速简便的细菌鉴定方法。 Ca〜(2 +),Mg〜(2+)和Fe〜(3+)等环境元素可能影响APEO的活性和速率。环境中的生物降解。使用细菌核糖体亚基蛋白作为Slo-spc-编码的理论生物标记物,开发了一种高度可靠的系统发育分析方法,称为SiO-GERMS(S10-spc-alpha操纵子基因编码核糖体蛋白质谱)方法。带有验证程序的alpha操纵子。

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