森林火灾对不同岩性和土层土壤微生物基质利用和脱氢酶活性的影响

IF 1.5 Q4 ENGINEERING, ENVIRONMENTAL
Ji-Seul Kim, Hyeong Chul Jeong, EunYoung Lee
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引用次数: 0

摘要

本研究探讨了森林火灾对森林土壤微生物活性的影响。森林土壤按岩石成因(火成岩、变质岩和沉积岩)分类,按底土深度(表土、底土)分层。平均井色发育指数(AWCD)和Shannon多样性指数表明,未受损表土的微生物活性高于火灾破坏表土。相比之下,火灾破坏的底土,特别是变质和沉积土壤,由于有机质分解,微生物活动随着时间的推移而增加。在所有岩石类型的未损坏土壤中,基材利用率显著增加(*p <;0.05, **p <;Shannon指数显示,表层土壤微生物多样性最高,沉积岩微生物多样性最高。脱氢酶活性在火灾破坏的表层土中活性降低,而在变质和沉积底土中活性升高。主成分分析(PCA)将微生物指标(AWCD, Shannon指数)与矿物组成(如正长石和角闪石)联系起来,突出了土壤化学在塑造微生物对火灾的反应中的作用。这些见解促进了对不同地质背景下火灾引起的土壤微生物功能变化的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impact of Forest Fires on Soil Microbial Substrate Utilization and Dehydrogenase Activity in Different Rock Types and Soil Layers

Impact of Forest Fires on Soil Microbial Substrate Utilization and Dehydrogenase Activity in Different Rock Types and Soil Layers

This study explored the effects of forest fires on soil microbial activity in forest soils classified by rock origin (igneous, metamorphic, and sedimentary) and stratified by subsoil depth (topsoil, subsoil). Microbial activity, indicated by average well color development (AWCD) and Shannon diversity indices, was higher in undamaged topsoils compared to fire-damaged ones. In contrast, fire-damaged subsoils, particularly in metamorphic and sedimentary soils, exhibited increased microbial activity over time due to organic matter decomposition. A significant increase in substrate utilization was observed in undamaged soils across all rock types (*p < 0.05, **p < 0.01) in topsoil, with sedimentary rock exhibiting the highest microbial diversity based on Shannon indices. The dehydrogenase activity followed a similar pattern, with reduced activity in fire-damaged topsoil but higher activity in damaged metamorphic and sedimentary subsoils. Principal component analysis (PCA) linked microbial indicators (AWCD, Shannon index) to mineral compositions like orthoclase and hornblende, highlighting the role of soil chemistry in shaping microbial responses to fire. These insights advance the understanding of fire-induced changes in soil microbial functions across diverse geological contexts.

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来源期刊
Environmental Quality Management
Environmental Quality Management Environmental Science-Management, Monitoring, Policy and Law
CiteScore
2.20
自引率
0.00%
发文量
94
期刊介绍: Four times a year, this practical journal shows you how to improve environmental performance and exceed voluntary standards such as ISO 14000. In each issue, you"ll find in-depth articles and the most current case studies of successful environmental quality improvement efforts -- and guidance on how you can apply these goals to your organization. Written by leading industry experts and practitioners, Environmental Quality Management brings you innovative practices in Performance Measurement...Life-Cycle Assessments...Safety Management... Environmental Auditing...ISO 14000 Standards and Certification..."Green Accounting"...Environmental Communication...Sustainable Development Issues...Environmental Benchmarking...Global Environmental Law and Regulation.
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