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Relationship between Glyoxylate Cycle and Nitrification Efficiency Based on Heterotrophic Nitrification Bacterium Acinetobacter sp.Y1

机译:基于异养硝化菌的甘油酯循环与硝化效率的关系SP.Y1

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The growth and ammonium removal ability of heterotrophic nitrification bacterium are strongly influenced by carbon sources, as well as the activities of key enzymes of glyoxylate cycle. To obtain a better insight into the relationship between glyoxylate cycle and nitrification, the two key enzymes of glyoxylate cycle and the ammonium removal ability of Acinetobacter sp.Y1 grew with different carbon sources were examined. Strain Y1 showed a wide organic carbon substrates, and grew but no nitrify in the medium with sucrose and glycerol as sole carbon source. The strain Y1 showed the most activities of isocitrate lyase and malate synthase when the ammonium removal rate reached highest, and no activities of the two enzymes were detected when the strain grew without nitrification phase. The positive correlation relationship was found between the glyoxylate cycle and nitrification.
机译:异养硝化细菌的生长和铵去除能力受碳源的强烈影响,以及甘油酯循环的关键酶的活性。为了更好地了解甘油酯循环和硝化之间的关系,研究了乙二醇盐循环的两个关键酶和乙酰杆菌SP.Y1的铵去除能力以不同的碳源增长。菌株Y1显示出宽的有机碳基材,并且在培养基中生长但没有硝化,蔗糖和甘油作为唯一的碳源。当铵去除率达到最高时,菌株Y1显示出最多的异偶氮酶和苹果酸盐合酶的活性,并且当菌株在没有硝化阶段的情况下造成菌株时,检测到两种酶的活性。在乙醛酸循环和硝化之间发现了阳性相关关系。

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