科技景观土壤中酶活性分布的生态特征

V. Chorna, I. Wagner, V. Katsevych
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引用次数: 3

摘要

建立了Nikopol锰矿盆地人工土壤、灰绿色和红棕色粘土和类黄土壤土上的草质成岩土壤层的分布、总磷、有效磷浓度和磷酸酶活性水平的具体特征。通过对磷酸酶活性的评价,对技术土壤状况进行了综合评价;这种酶使土壤富含矿物磷,从而提高其对生物体的可利用性。在目前的生物指示方法中,土壤酶促法是最可靠和最有前途的方法,因为与其他指标相比,酶活性是土壤生物原性的稳定指标。土壤酶活性决定了生物地球化学过程的强度和目标。人工土壤(r = 0.87)、灰绿色土壤(r = 0.77)、红棕色土壤(r = 0.62)和类黄土壤土(r = 0.95)上的土壤中可溶性磷浓度与磷酸酶活性值之间存在较高的相关性。在所有类型的人工土壤中,水解酶和磷酸酶的活性随深度的增加而降低。在各种人为和自然生态系统影响下,酶活性研究在诊断土壤肥力动态方面具有很高的效率。使用这种方法的优点是能够在退化过程的早期阶段迅速确定生态系统中发生的变化,并预测其目标和相应的强度。研究发现,在复杂的生物地质体系统中,磷酸酶活性水平和流动磷化合物值是人工环境中环境条件变化的敏感定量指标,它们为土壤柱内发生的过程提供了良好的数据。磷酸酶活性水平是一种可靠而有前景的技术生物监测方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ecological features of enzyme activity distribution in edaphotops of technogenic landscapes
Specific features of distribution total, available phosphorus concentrations and levels of phosphatase enzymatic activity at the layers of artificial soil, sod-lithogenic soils onto gray-green and red-brown clays and on loess-like loams in the Nikopol manganese ore basin are established. It is presented general assessment of technosoil status by evaluation of phosphatase enzyme activity; this enzyme enriches the soil with mineral phosphorus and thereby improves its availability for living organisms. Among current bioindication methodology, soil enzymatic method is the most reliable and promising because enzymatic activity serves a stable indicator of soil biogenicity in comparison with other indicators. Soil enzymatic activity determines both intensity and targeting of biogeochemical processes. High correlation between concentrations of soluble phosphorus and phosphatase activity values by layers of artificial soil (r = 0.87), sod-lithogenic soils onto gray-green (r = 0.77), red-brown clays (r = 0.62) and onto loess-like loam (r = 0.95) was determined. Tendency of decreasing hydrolytic enzyme activity, phosphatase, with depth in all types of artificial soil studied was established. High efficiency of the enzymatic activity study in diagnostics of soil fertility dynamics under impact of various anthropogenic and natural ecosystems was determined. Advantages of using this method are capability to determine rapidly the changes occurring in ecosystems in the early stages of degradation processes and prediction of their targeting and, accordingly, their intensity. It has been found that levels of phosphatase activity and values of mobile phosphorus compounds in complex biogeocoenotic systems are sensitive quantitative indicators of changes in environmental conditions in man-made environment, and they generate good data about processes occurred within the soil column. The use of phosphatase activity level can be a reliable and promising method on biomonitoring of technogenic edaphotops.
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