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嗜冷细菌群落对煤烟的生物降解作用。

Soot biodegradation by psychrotolerant bacterial consortia.

机构信息

State Key Laboratory of Cryospheric Science, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Donggang West Rd. 320, Lanzhou, 730000, China.

University of Chinese Academy of Sciences (UCAS), Beijing, China.

出版信息

Biodegradation. 2022 Aug;33(4):407-418. doi: 10.1007/s10532-022-09990-1. Epub 2022 Jun 6.

Abstract

To probe the bioavailability of soot released into the atmosphere is pivotal to understanding their environmental impacts. Soot aerosol absorbs organic matter, creating a hot spot for biogeochemical transformation and the global carbon cycle. Soot primarily contains condensed aromatics chemically recalcitrant; however, oligotrophic microorganisms might use it as a nutritional source. This study investigated the influence of psychrotolerant bacterial consortia on soot. Significant increase in the bacterial biomass, reduction in water-insoluble organic carbon (OC) and elemental carbon (EC) in soot residues and increase in water-soluble OC in the filtrate signifies the use of soot as a carbon and nutritional source. The influence on morphology and composition of soot was reported using Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy, and Energy Dispersive X-Ray analysis (EDX). The FTIR analysis showed significant variations in the pattern of soot spectra, suggesting degradation. Elemental analysis and EDX showed a reduction in carbon percentage. Besides, the reduction of optical density with incubation time signifies the OC and EC consumption. This study shows that soot can be a substrate and pivotal factor in the microbial food web. Nowadays, soot emission to the environment is growing; therefore, soot involvement in microbe-mediated processes should be closely focused.

摘要

探究大气中释放的烟尘的生物可利用性对于了解其环境影响至关重要。烟尘气溶胶吸收有机物,成为生物地球化学转化和全球碳循环的热点。烟尘主要含有化学上难降解的凝聚芳烃;然而,贫营养微生物可能将其用作营养源。本研究调查了耐冷细菌群落对烟尘的影响。烟尘残渣中细菌生物量显著增加,水不溶性有机碳(OC)和元素碳(EC)减少,滤液中水溶性 OC 增加,表明烟尘可作为碳和营养源被利用。使用傅里叶变换红外光谱(FTIR)、扫描电子显微镜和能量色散 X 射线分析(EDX)报告了对烟尘形态和组成的影响。FTIR 分析表明烟尘谱图的模式发生了显著变化,表明发生了降解。元素分析和 EDX 显示碳百分比降低。此外,随着孵育时间的延长,光密度的降低表明 OC 和 EC 的消耗。本研究表明,烟尘可以作为微生物食物网中的基质和关键因素。如今,烟尘向环境的排放不断增加;因此,应该密切关注烟尘在微生物介导过程中的作用。

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