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铜镉复合污染对稻田土壤细菌分类和功能特性的影响。

Copper and cadmium co-contamination affects soil bacterial taxonomic and functional attributes in paddy soils.

机构信息

Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Pollut. 2023 Jul 15;329:121724. doi: 10.1016/j.envpol.2023.121724. Epub 2023 Apr 25.

Abstract

Microorganisms inhabiting heavy metal-contaminated soils have evolved specific metabolic capabilities to survive, which has the potential for effective bioremediation. However, the ecological consequence of copper (Cu) and cadmium (Cd) on bacterial taxonomic and functional attributes of rice field remains unclear. Here, we selected paddy soils along a polluted river in southern China to evaluate the role of Cu and Cd contaminant fractions in regulating bacterial co-occurrence patterns. We also assessed the effects of these heavy metal fractions on the relative abundance of functional genes using shotgun metagenomic analysis. Soil Cu and Cd concentrations in paddy soils gradually decreased from upstream to downstream of the river, and had a greater impact on bacterial communities and metabolic potentials than soil general properties. Soil Cu and Cd contamination led to drastic changes in the cumulative relative abundance of ecological modules in bacterial co-occurrence networks. Bacteria associated with AD3, HSB_OF53-F07 (both belonging to Chloroflexi), Rokubacteriales, and Nitrospira were identified as tolerant to Cu and Cd contamination. The Cu and Cd contaminant fractions were positively correlated with the genes involved in metal resistance, carbon (C) fixation, nitrification, and denitrification, but negatively correlated with the genes related to nitrogen (N) fixation. These results indicated that soil Cu and Cd pollution not only enriched metal resistant genes, but also affected genes related to microbial C and N cycling. This is critical for facilitating microbiome bioremediation of metal-contaminated paddy soils.

摘要

栖息在重金属污染土壤中的微生物已经进化出了特定的代谢能力来生存,这为有效的生物修复提供了潜力。然而,铜 (Cu) 和镉 (Cd) 对稻田土壤细菌分类和功能属性的生态后果仍不清楚。在这里,我们选择了中国南方一条受污染河流沿岸的稻田土壤,以评估 Cu 和 Cd 污染物分数在调节细菌共生模式中的作用。我们还使用高通量宏基因组分析评估了这些重金属分数对功能基因相对丰度的影响。稻田土壤中 Cu 和 Cd 的浓度从河流的上游到下游逐渐降低,对细菌群落和代谢潜力的影响大于土壤一般性质。Cu 和 Cd 污染导致细菌共生网络中生态模块的累积相对丰度发生剧烈变化。与 AD3、HSB_OF53-F07(均属于绿弯菌门)、Rokubacteriales 和 Nitrospira 相关的细菌被鉴定为对 Cu 和 Cd 污染具有耐受性。Cu 和 Cd 污染物分数与金属抗性、碳 (C) 固定、硝化和反硝化相关的基因呈正相关,与氮 (N) 固定相关的基因呈负相关。这些结果表明,土壤 Cu 和 Cd 污染不仅富集了金属抗性基因,还影响了与微生物 C 和 N 循环相关的基因。这对于促进受金属污染的稻田土壤微生物修复至关重要。

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