重新审视领域细菌和真核生物耐受铅和镉的生化途径及其在生物修复中的联合作用。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-27 DOI:10.1007/s12223-024-01198-5
Kaneez Fatima, Hareem Mohsin, Maryam Afzal
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引用次数: 0

摘要

随着城市化和工业化进程的加快,铅(Pb)和镉(Cd)等重金属(HMs)污染显著增加。它是最难处理的污染物之一,主要影响生态系统的生物和非生物组成部分,如人类福祉、动物、土壤健康、作物产量以及原核生物(细菌)和真核生物(植物、真菌和藻类)的多样性。在较高浓度下,这些金属对它们的生长具有毒性,并对环境构成严重威胁,因此必须采取创新和可持续的补救策略。细菌表现出多种机制来应对暴露于 HM 的情况,包括生物吸附、螯合和外排机制,而真菌则通过菌根结合和菌丝网络做出贡献。藻类,尤其是微藻,具有有效的生物吸附和生物累积能力。植物作为植物修复者,可以过度积累金属,为土壤改良提供了一种基于自然的方法。将这些生物制剂结合起来,可以提高修复效率。本综述旨在深入探讨原核生物和真核生物在管理环境中 HM 压力方面的相互作用。
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Revisiting biochemical pathways for lead and cadmium tolerance by domain bacteria, eukarya, and their joint action in bioremediation.

With the advent rise is in urbanization and industrialization, heavy metals (HMs) such as lead (Pb) and cadmium (Cd) contamination have increased considerably. It is among the most recalcitrant pollutants majorly affecting the biotic and abiotic components of the ecosystem like human well-being, animals, soil health, crop productivity, and diversity of prokaryotes (bacteria) and eukaryotes (plants, fungi, and algae). At higher concentrations, these metals are toxic for their growth and pose a significant environmental threat, necessitating innovative and sustainable remediation strategies. Bacteria exhibit diverse mechanisms to cope with HM exposure, including biosorption, chelation, and efflux mechanism, while fungi contribute through mycorrhizal associations and hyphal networks. Algae, especially microalgae, demonstrate effective biosorption and bioaccumulation capacities. Plants, as phytoremediators, hyperaccumulate metals, providing a nature-based approach for soil reclamation. Integration of these biological agents in combination presents opportunities for enhanced remediation efficiency. This comprehensive review aims to provide insights into joint action of prokaryotic and eukaryotic interactions in the management of HM stress in the environment.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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