基因组
环境科学
环境化学
微生物种群生物学
生态系统
污染
污染
土壤污染
生物指示剂
微生物
重金属
超量积累植物
物种丰富度
土壤水分
生物多样性
生态学
Mercury(编程语言)
土工试验
环境修复
原子吸收光谱法
土壤微生物学
生物修复
微生物生态学
鉴定(生物学)
生态系统健康
环境质量
环境监测
土壤质量
土壤分类
群落结构
土壤污染物
仿形(计算机编程)
污染物
人类健康
环境工程
作者
Iskander Isgandarov,Жанар Абилда,Рахим Канат,Dias Daurov,Zagipa Sapakhova,Dmitriy Volkov,Kabyl Zh. Zhambakin,Dmitry S. Volkov,Abylay Begaly,Makpal Temirkhanovna Kargayeva
出处
期刊:Microorganisms
[Multidisciplinary Digital Publishing Institute]
日期:2026-01-15
卷期号:14 (1): 196-196
标识
DOI:10.3390/microorganisms14010196
摘要
Heavy metal pollution poses a serious threat to soil ecosystems worldwide, as long-term exposure can alter microbial community functioning and reduce overall ecosystem resilience. This study investigated the impact of heavy metal contamination in technogenic industrial areas of the East Kazakhstan Region on soil microbial communities. Soil samples were collected for chemical and metagenomic analyses. Concentrations of Zn, Pb, Cu, and Cd were quantified by flame atomic absorption spectrometry (FAAS). Using long-read whole-metagenome nanopore sequencing, we conducted strain-level profiling of soils with different levels of metal contamination. This approach provided high-resolution taxonomic data, enabling detailed characterization of microbial community structure. Heavy metal exposure did not significantly reduce microbial diversity or richness but influences the quality of community composition. Metal-resistant taxa dominated contaminated soils. Overall, the results highlight the value of long-read sequencing for resolving strain-level responses to environmental contamination.
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