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受铅锌严重污染的森林土壤的功能多样性与微生物活性

Functional Diversity and Microbial Activity of Forest Soils that Are Heavily Contaminated by Lead and Zinc.

作者信息

Pająk Marek, Błońska Ewa, Frąc Magdalena, Oszust Karolina

机构信息

Department of Forest Ecology and Reclamation, University of Agriculture in Krakow, Al. 29-go Listopada 46, 31-425 Kraków, Poland.

Department of Forest Soil, Faculty of Forestry, University of Agriculture in Krakow, Al. 29-go Listopada 46, 31-425 Kraków, Poland.

出版信息

Water Air Soil Pollut. 2016;227(9):348. doi: 10.1007/s11270-016-3051-4. Epub 2016 Aug 29.

Abstract

The objective of this study was to assess the impact of metal contamination on microbial functional diversity and enzyme activity in forest soils. This study involved the evaluation of the influence of the texture, carbon content and distance to the source of contamination on the change in soil microbial activity, which did not investigate in previous studies. The study area is located in southern Poland near the city of Olkusz around the flotation sedimentation pond of lead and zinc at the Mining and Metallurgical Company "ZGH Bolesław, Inc.". The central point of the study area was selected as the middle part of the sedimentation pond. The experiment was conducted over a regular 500 × 500-m grid, where 33 sampling points were established. Contents of organic carbon and trace elements (Zn, Pb and Cd), pH and soil texture were investigated. The study included the determination of dehydrogenase and urease activities and microbial functional diversity evaluation based on the community-level physiological profiling approach by Biolog EcoPlate. The greatest reduction in the dehydrogenase and urease activities was observed in light sandy soils with Zn content >220 mg · kg and a Pb content > 100 mg · kg. Soils with a higher concentration of fine fraction, despite having the greatest concentrations of metals, were characterized by high rates of Biolog®-derived parameters and a lower reduction of enzyme activity.

摘要

本研究的目的是评估金属污染对森林土壤中微生物功能多样性和酶活性的影响。本研究涉及评估质地、碳含量以及与污染源的距离对土壤微生物活性变化的影响,而此前的研究并未对此进行调查。研究区域位于波兰南部,靠近奥尔库什市,位于“ZGH博莱斯瓦夫公司”的铅锌浮选沉淀池周围。研究区域的中心点选在沉淀池的中部。实验在一个规则的500×500米网格上进行,共设置了33个采样点。对有机碳和微量元素(锌、铅和镉)的含量、pH值和土壤质地进行了调查。该研究包括基于Biolog EcoPlate的群落水平生理剖面法测定脱氢酶和脲酶活性以及评估微生物功能多样性。在锌含量>220毫克·千克且铅含量>100毫克·千克的轻质砂土中,观察到脱氢酶和脲酶活性的最大降幅。细粒级含量较高的土壤,尽管金属浓度最高,但其Biolog®衍生参数率较高,酶活性降低幅度较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c56/5003905/c7deb77d601d/11270_2016_3051_Fig1_HTML.jpg

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