Mechanisms of microbial resistance against cadmium – a review

IF 3 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Monu Sharma, Sonu Sharma,  Paavan, Mahiti Gupta, Soniya Goyal, Daizee Talukder, Mohd. Sayeed Akhtar, Raman Kumar, Ahmad Umar, Abdulrab Ahmed M. Alkhanjaf, Sotirios Baskoutas
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Abstract

The escalating cadmium influx from industrial activities and anthropogenic sources has raised serious environmental concerns due to its toxic effects on ecosystems and human health. This review delves into the intricate mechanisms underlying microbial resistance to cadmium, shedding light on the multifaceted interplay between microorganisms and this hazardous heavy metal. Cadmium overexposure elicits severe health repercussions, including renal carcinoma, mucous membrane degradation, bone density loss, and kidney stone formation in humans. Moreover, its deleterious impact extends to animal and plant metabolism. While physico-chemical methods like reverse osmosis and ion exchange are employed to mitigate cadmium contamination, their costliness and incomplete efficacy necessitate alternative strategies. Microbes, particularly bacteria and fungi, exhibit remarkable resilience to elevated cadmium concentrations through intricate resistance mechanisms. This paper elucidates the ingenious strategies employed by these microorganisms to combat cadmium stress, encompassing metal ion sequestration, efflux pumps, and enzymatic detoxification pathways. Bioremediation emerges as a promising avenue for tackling cadmium pollution, leveraging microorganisms' ability to transform toxic cadmium forms into less hazardous derivatives. Unlike conventional methods, bioremediation offers a cost-effective, environmentally benign, and efficient approach. This review amalgamates the current understanding of microbial cadmium resistance mechanisms, highlighting their potential for sustainable remediation strategies. By unraveling the intricate interactions between microorganisms and cadmium, this study contributes to advancing our knowledge of bioremediation approaches, thereby paving the way for safer and more effective cadmium mitigation practices.

Abstract Image

微生物抗镉机制综述
由于镉对生态系统和人类健康的毒性影响,来自工业活动和人为来源的镉流入量不断增加,引起了严重的环境问题。这篇综述深入探讨了微生物抗镉的复杂机制,揭示了微生物与这种有害重金属之间多方面的相互作用。过量接触镉会对人体健康造成严重影响,包括肾癌、粘膜退化、骨密度下降和肾结石形成。此外,其有害影响还延伸到动物和植物的新陈代谢。虽然人们采用反渗透和离子交换等物理化学方法来减轻镉污染,但这些方法成本高昂且效果不佳,因此有必要采用其他策略。微生物,尤其是细菌和真菌,通过复杂的抗镉机制,对镉浓度的升高表现出卓越的适应能力。本文阐明了这些微生物对抗镉胁迫的巧妙策略,包括金属离子螯合、外排泵和酶解毒途径。利用微生物将有毒镉形式转化为危害较小的衍生物的能力,生物修复成为解决镉污染问题的一条大有可为的途径。与传统方法不同,生物修复提供了一种成本效益高、对环境无害且高效的方法。这篇综述综合了目前对微生物抗镉机制的理解,强调了它们在可持续修复战略中的潜力。通过揭示微生物与镉之间错综复杂的相互作用,这项研究有助于增进我们对生物修复方法的了解,从而为更安全、更有效的镉缓解措施铺平道路。
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来源期刊
Journal of Environmental Health Science and Engineering
Journal of Environmental Health Science and Engineering ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
7.50
自引率
2.90%
发文量
81
期刊介绍: Journal of Environmental Health Science & Engineering is a peer-reviewed journal presenting timely research on all aspects of environmental health science, engineering and management. A broad outline of the journal''s scope includes: -Water pollution and treatment -Wastewater treatment and reuse -Air control -Soil remediation -Noise and radiation control -Environmental biotechnology and nanotechnology -Food safety and hygiene
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