调查粉煤灰污染对土壤微生物多样性的影响:印度Kolaghat热电厂附近的宏基因组研究。

IF 5.8 3区 环境科学与生态学 0 ENVIRONMENTAL SCIENCES
Biswajit Paul, Palash Pan, Nandan Bhattacharyya
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引用次数: 0

摘要

土壤宏基因组学利用全基因组霰弹枪测序(WGS)揭示了土壤中微生物的多样性和功能。本研究旨在利用全基因组霰弹枪测序技术,探讨印度西孟加拉邦Kolaghat热电厂附近暴露于粉煤灰的土壤中微生物的多样性和功能适应。了解微生物群落对这种污染的反应对于制定有效的生物修复策略至关重要。从该地区收集土壤样本,指定为BP1样本,用于详细的宏基因组学分析。该研究提取浓度为46.2 ng/µl的DNA,随后进行质量检查和分析以鉴定微生物群落。分析表明,细菌群落以放线菌门(48.28%)和变形菌门(40.80%)为主,真菌以子囊菌门(89.50%)为主。病毒中以Negarnaviricota最常见,Insthoviricetes占94.60%。多样性分析表明,细菌种群保持稳定,真菌多样性波动,病毒多样性增加,反映出复杂的生态相互作用。参与脂质和碳水化合物代谢的关键基因的存在表明微生物适应重金属和有机污染物的污染。耐应力变形菌和放线菌的优势突出了它们在生物修复中的潜在作用。未来的研究应该探索这些微生物的潜力,特别是ABC转运体在改善污染物降解方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigating the impact of fly ash contamination on soil microbial diversity: a metagenomic study near Kolaghat Thermal Power Plant, India.

Soil metagenomics using whole genome shotgun sequencing (WGS) uncovers microbial diversity and functionality in soils. This study aimed to explore microbial diversity and functional adaptation in soils exposed to fly ash near the Kolaghat Thermal Power Plant, West Bengal, India, using whole genome shotgun sequencing. Understanding how microbial communities respond to such contamination is essential for developing effective bioremediation strategies. Soil samples were collected from the area, designated as BP1 sample selected for detailed metagenomics analysis. The study extracted DNA with a concentration of 46.2 ng/µl, followed by quality checks and profiling to identify microbial communities. Analysis showed that bacterial communities were dominated by Actinobacteria (48.28%) and Proteobacteria (40.80%), while fungi were primarily represented by Ascomycota (89.50%). Among viruses, Negarnaviricota were most prevalent, with the class Insthoviricetes accounting for 94.60%. Diversity analysis indicated that bacterial populations remained stable, fungal diversity fluctuated, and viral diversity increased, reflecting complex ecological interactions. The presence of key genes involved in lipid and carbohydrate metabolism suggests that microbes adapted to contamination by heavy metals and organic pollutants. The dominance of stress-tolerant Proteobacteria and Actinobacteria highlights their potential role in bioremediation. Future research should explore the potential of these microbes, particularly the role of ABC transporters, in improving pollutant degradation.

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来源期刊
CiteScore
8.70
自引率
17.20%
发文量
6549
审稿时长
3.8 months
期刊介绍: Environmental Science and Pollution Research (ESPR) serves the international community in all areas of Environmental Science and related subjects with emphasis on chemical compounds. This includes: - Terrestrial Biology and Ecology - Aquatic Biology and Ecology - Atmospheric Chemistry - Environmental Microbiology/Biobased Energy Sources - Phytoremediation and Ecosystem Restoration - Environmental Analyses and Monitoring - Assessment of Risks and Interactions of Pollutants in the Environment - Conservation Biology and Sustainable Agriculture - Impact of Chemicals/Pollutants on Human and Animal Health It reports from a broad interdisciplinary outlook.
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