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首页> 外文期刊>Fresenius environmental bulletin >SENSITIVITY OF BETA-GLUCOSIDASE TO SOIL CONTAMINATION WITH ZINC, COPPER, NICKEL, CADMIUM AND LEAD
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SENSITIVITY OF BETA-GLUCOSIDASE TO SOIL CONTAMINATION WITH ZINC, COPPER, NICKEL, CADMIUM AND LEAD

机译:β-葡糖苷酶对锌,铜,镍,镉和铅对土壤污染的敏感性

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In the experiment, loamy sand, sandy loam and sandy clay loam with a pH of 7.0 and 5.5 were contaminated with Zn2+, Cu2+, Ni2+, Cd2+ and Pb2+ in the laboratory. The analyzed substrates differed in their chemical properties, and therefore they were contaminated with six different doses of each metal. Substrate samples were incubated for 30, 60 and 120 days, and the activity of p-glucosidase was determined at the end of each incubation period. The results were used to calculate the enzyme's resistance to soil contamination with heavy metals.Enzyme activity in soil with natural levels of trace elements ranged from 0.539 mM PNP kg-1 h-1 DM in sandy clay loam with a pH of 7.0 to 0.247 mM p-nitrophenol (PNP) kg-1 h-1 DM in the same substrate with a pH of 5.5. The highest levels of p-glucosidase activity were noted in sandy clay loam, and the lowest in loamy sand. In acidic soils, enzyme activity increased after the first incubation period (30 days), whereas in neutral substrates, higher levels of p-glucosidase activity were observed after two successive incubation periods (60 and 120 days), p-glucosidase was most resistant to contamination with Cu2+ (RS=0.997) and least resistant to contamination with Zn2+ (RS=0.097).
机译:在实验中,实验室中pH值为7.0和5.5的质壤土,砂质壤土和砂质壤土均被Zn2 +,Cu2 +,Ni2 +,Cd2 +和Pb2 +污染。被分析的底物的化学性质不同,因此被六种不同剂量的每种金属污染。将底物样品孵育30、60和120天,并在每个孵育期结束时确定p-葡萄糖苷酶的活性。结果用于计算酶对土壤中重金属污染的抵抗力。在7.0到0.247 mM的沙质壤土中,自然微量元素在土壤中的酶活性范围为0.539 mM PNP kg-1 h-1 DM。对硝基苯酚(PNP)kg-1 h-1 DM在同一底物中,pH值为5.5。在砂质壤土中p-葡萄糖苷酶活性最高,而在壤土中最低。在酸性土壤中,酶的活性在第一个孵育期(30天)后增加,而在中性底物中,在连续两个孵育期(60和120天)后观察到较高水平的p-葡萄糖苷酶活性,p-葡萄糖苷酶对Cu2 +污染(RS = 0.997),对Zn2 +污染的抵抗力最低(RS = 0.097)。

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