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植物物种在冶炼厂废堆根区中的微生物的活性和多样性。

Activity and Diversity of Microorganisms in Root Zone of Plant Species Spontaneously Inhabiting Smelter Waste Piles.

机构信息

Department of Microbiology, Institute of Soil Science and Plant Cultivation-State Research Institute, Czartoryskich 8, 24-100 Pulawy, Poland.

Department of Soil Science Erosion and Land Protection, Institute of Soil Science and Plant Cultivation-State Research Institute, Czartoryskich 8, 24-100 Pulawy, Poland.

出版信息

Molecules. 2020 Nov 30;25(23):5638. doi: 10.3390/molecules25235638.

Abstract

The aim was to assess plant driven changes in the activity and diversity of microorganisms in the top layer of the zinc and lead smelter waste piles. The study sites comprised two types (flotation waste-FW and slag waste-SW) of smelter waste deposits in Piekary Slaskie, Poland. Cadmium, zinc, lead, and arsenic contents in these technosols were extremely high. The root zone of 8 spontaneous plant species (FW-, , , , and ; and SW-; , ) and barren areas of each waste deposit were sampled. We observed a significant difference in microbial characteristics attributed to different plant species. The enzymatic activity was mostly driven by plant-microbial interactions and it was significantly greater in soil affected by plants than in bulk soil. Furthermore, as it was revealed by BIOLOG Ecoplate analysis, microorganisms inhabiting barren areas of the waste piles rely on significantly different sources of carbon than those found in the zone affected by spontaneous plants. Among phyla, Actinobacteriota were the most abundant, contributing to at least 25% of the total abundance. Bacteria belonging to genera were the most abundant with the substantial contribution of and , especially in the root zone. The contribution of unclassified bacteria was high-up to 38% of the total abundance. This demonstrates the unique character of bacterial communities in the smelter waste.

摘要

本研究旨在评估植物对锌铅冶炼厂废渣顶层中微生物活性和多样性的影响。研究地点为波兰皮耶卡尔斯基的两种冶炼厂废渣堆积物(浮选废渣 FW 和炉渣废渣 SW)。这些技术土壤中的镉、锌、铅和砷含量极高。对 8 种自发植物物种(FW-、、、、和;SW-、、、)的根区和每个废渣堆积物的荒芜区进行了采样。我们观察到,不同植物物种导致微生物特征存在显著差异。酶活性主要受植物-微生物相互作用的驱动,受植物影响的土壤中的酶活性明显高于原状土壤中的酶活性。此外,BIOLOG Ecoplate 分析表明,栖息在废渣堆荒芜区的微生物依赖于与受自发植物影响的区域中不同的碳源。在门水平上,放线菌门是最丰富的,至少占总丰度的 25%。属于 属的细菌最为丰富,尤其是在根区,贡献了大量的 和 。未分类细菌的贡献也很高,占总丰度的 38%。这表明了冶炼厂废区细菌群落的独特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6d9/7730207/c02ea205dfca/molecules-25-05638-g001.jpg

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