Daâssi Dalel, Qabil Almaghribi Fatimah
Department of Biology, College of Sciences and Arts, Khulais, University of Jeddah, Jeddah, Saudi Arabia.
3 Biotech. 2022 Jun;12(6):139. doi: 10.1007/s13205-022-03198-z. Epub 2022 May 25.
Soil is an environmental matrix that carries life for all living things. With the rise of human activities and the acceleration of population, the soil has been exposed in part to pollution by the discharge of various xenobiotics and persistent pollutants into it. The disposal of toxic substances such as polycyclic aromatic hydrocarbons (PAHs) alters soil properties, affects microbial biodiversity, and damages objects. Considering the mutagenicity, carcinogenicity, and toxicity of petroleum hydrocarbons, the restoration and clean-up of PAH-polluted sites represents an important technological and environmental challenge for sustainable growth and development. Though several treatment methods to remediate PAH-polluted soils exist, interesting bacteria, fungi, and their enzymes receive considerable attention. The aim of the present review is to discuss PAHs' impact on soil properties. Also, this review illustrates physicochemical and biological remediation strategies for treating PAH-contaminated soil. The degradation pathways and contributing factors of microbial PAH-degradation are elucidated. This review also assesses the use of conventional microbial remediation compared to the application of genetically engineered microorganisms (GEM) that can provide a cost-effective and eco-friendly PAH-bioremediation strategy.
土壤是承载所有生物生命的环境基质。随着人类活动的增加和人口的加速增长,土壤部分地受到各种外来生物和持久性污染物排放的污染。多环芳烃(PAHs)等有毒物质的排放改变了土壤性质,影响了微生物多样性,并破坏了物体。考虑到石油烃的致突变性、致癌性和毒性,修复多环芳烃污染场地是可持续增长和发展面临的一项重要技术和环境挑战。虽然存在几种修复多环芳烃污染土壤的处理方法,但有趣的细菌、真菌及其酶受到了相当大的关注。本综述的目的是讨论多环芳烃对土壤性质的影响。此外,本综述阐述了处理多环芳烃污染土壤的物理化学和生物修复策略。阐明了微生物降解多环芳烃的途径和影响因素。本综述还评估了传统微生物修复与基因工程微生物(GEM)应用的比较,基因工程微生物可以提供一种经济高效且环保的多环芳烃生物修复策略。