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赞比亚基特韦铜钴污染尾矿土壤中真菌丰度和多样性的数据。

Data on fungal abundance and diversity in copper and cobalt contaminated tailing soils in Kitwe, Zambia.

作者信息

Dusengemungu Leonce, Gwanama Cousins, Mubemba Benjamin

机构信息

School of Mathematics and Natural Sciences, The Copperbelt University, Kitwe, Zambia.

The Copperbelt University, Africa Centre of Excellence for Sustainable Mining, Kitwe, Zambia.

出版信息

Data Brief. 2023 Dec 12;52:109951. doi: 10.1016/j.dib.2023.109951. eCollection 2024 Feb.

DOI:10.1016/j.dib.2023.109951
PMID:38186741
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10770708/
Abstract

Mining activities in the Zambian Copperbelt Province have led to the release of heavy metal-containing waste, causing contamination in nearby areas. Despite this environmental challenge, limited knowledge exists regarding the mycobiota in copper mine sites. This study investigates fungal community structure in copper(Cu) and cobalt (Co) contaminated soils around decommisioned dams in Kitwe. Metagenomic analysis of the ITSF1 gene amplicons was used for the purpose. The composition of soil fungal communities was characterized, and the findings revealed significant insights. At the phylum level, dominated the fungal profiles in the tailings (64.59%), followed by (21.30%), (4.53%), and (0.0275%). Several fungal genera, including , P, and , were more abundant in contaminated tailings soils, suggesting their potential in leaching, absorbing, and transforming heavy metals. In contrast, the reference soil at Mwekera National Forest exhibited different dominance patterns with four fungal phyla identified, with and dominating most samples. , known for forming arbuscular mycorrhizae with plants, were found in contaminated soils, while , which can serve ecological roles in various ecosystems, were also present. Notable fungal species such as , and demonstrated resilience to Cu and Co, the primary contaminants in the Copperbelt.

摘要

赞比亚铜带省的采矿活动导致了含重金属废物的排放,对附近地区造成了污染。尽管面临这一环境挑战,但关于铜矿场地中真菌群落的知识却很有限。本研究调查了基特韦退役水坝周围铜(Cu)和钴(Co)污染土壤中的真菌群落结构。为此,采用了对ITSF1基因扩增子的宏基因组分析。对土壤真菌群落的组成进行了表征,研究结果揭示了重要的见解。在门水平上,尾矿中真菌分布以(64.59%)为主,其次是(21.30%)、(4.53%)和(0.0275%)。包括、P和在内的几个真菌属在受污染的尾矿土壤中更为丰富,表明它们在浸出、吸收和转化重金属方面具有潜力。相比之下,姆韦凯拉国家森林的参考土壤呈现出不同的优势模式,共鉴定出四个真菌门,其中和在大多数样本中占主导地位。以与植物形成丛枝菌根而闻名的在受污染土壤中被发现,同时,在各种生态系统中发挥生态作用的也存在。诸如和等显著的真菌物种对铜带地区的主要污染物铜和钴表现出抗性。

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本文引用的文献

1
Species richness and phytoremediation potential of mine wastelands-native trees across the Zambian Copperbelt Region.赞比亚铜带地区矿区荒地本土树木的物种丰富度及植物修复潜力
Heliyon. 2023 Feb 10;9(3):e13585. doi: 10.1016/j.heliyon.2023.e13585. eCollection 2023 Mar.
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