Effects on the activities of urease and catalase from bronopol were studied.
研究了溴硝醇农药施入土壤后,土壤中脲酶和过氧化氢酶活性的变化情况.
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Conclusion V. Parahaemolyticus with positive and negative urease have stronger pathogenicity.
结论脲酶阴性与阳性副溶血性弧菌均有较强的致病性.
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By simulating methods, the effect of ethanol on soil urease activity was studied systematically.
通过模拟方法, 较系统地研究了乙醇对土壤脲酶活性的影响.
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Specifically, It'showed the different testing methods and their results of the fat and urease.
重点研究了脂肪和尿素酶活性的不同测定方法的检测效果.
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显著增强土壤过氧化氢酶 、 酶和磷酸酶活性.
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The activity of Soil urease, acidphosphotase and invertase weakened with increase of soil depth.
各林地土壤脲酶、酸酶和转化酶随着土壤剖面的加深,其活性减弱.
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The results indicates that the TI still remains activity when urease full deactivate.
结果表明,在脲酶完全失活条件下,胰蛋白酶抑制素仍残留一定活性.
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Soil enzyme including phosphatase, urease, proteinase, catalase were analysed.
土壤酶主要测定了磷酸酶 、 酶 、 白酶 、 氧化氢酶活性的变化.
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There was little effect on soil urease and catalase activity for different peat levels.
但增施草炭对土壤中脲酶和过氧化氢酶影响较小.
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目的高密度培养重组细菌和高效表达重组幽门螺杆菌尿素酶A融合蛋白.
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渭北黄土区6年生核桃根际土壤的过氧化氢酶、脲酶、磷酸酶和蔗糖酶活性的空间变化随着土层剖面的加深而活性降低,说明土壤中各种酶的活性可能和核桃根系的分泌物有关。
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4个月后,玉米秸用量为1.2%的处理土壤脲酶、蔗糖酶、过氧化氢酶活性最高。施用麦秸的处理土壤脲酶、蔗糖酶、过氧化氢酶活性均随用量增加而升高。
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生态改良对土壤中四种酶活性的影响大小依次为:蔗糖酶脲酶中性磷酸酶过氧化氢酶。
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The uncertainty of the determination of urease activity in cereal and feedstuff was evaluated.
对粮食、饲料中尿素酶活性测量结果的不确定度进行了评定.
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Moderately halophilic bacteria that imposed on the A6 in soil urease activity were not obvious.
说明施加A6中度嗜盐菌对土壤中脲酶活性影响不明显。
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体外实验评分标准:共分为菌苔、尿素酶、H2O2试验、涂片4项,每项5分。
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堆肥可显著提高Cd污染土壤中脲酶、蔗糖酶、磷酸酶及蛋白酶的活性,改善土壤生化性质。
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