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锰:从土壤到人类健康——其生物学和环境意义的综合概述。

Manganese: From Soil to Human Health-A Comprehensive Overview of Its Biological and Environmental Significance.

机构信息

Department of Agro-Environmental Chemistry and Plant Nutrition, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences, 165 00 Prague, Czech Republic.

出版信息

Nutrients. 2024 Oct 11;16(20):3455. doi: 10.3390/nu16203455.

Abstract

Manganese is an essential micronutrient that plays a pivotal role in environmental systems, plant physiology, and human health. This review comprehensively examines the manganese cycle in the environment, its absorption and transport mechanisms in plants, and the implications of manganese exposure to human health. The objectives of this review are to (i) analyze the environmental cycling of manganese and its bioavailability, (ii) evaluate the role of manganese in plant metabolism and disease resistance, and (iii) assess the impact of manganese toxicity and deficiency on human health. This review highlights that while manganese is crucial for photosynthesis, enzyme activation, and resistance to plant diseases, both its deficiency and toxicity can have severe consequences. In plants, manganese deficiency can lead to impaired growth and reduced crop yields, while toxicity, particularly in acidic soils, can inhibit photosynthesis and stunt development. In humans, manganese is necessary for various physiological processes, but overexposure, especially in occupational settings, can result in neurodegenerative conditions such as manganism. The conclusion emphasizes the importance of managing manganese levels in agriculture and industry to optimize its benefits while minimizing health risks. A multidisciplinary approach is advocated to enhance agricultural productivity and ensure public health safety.

摘要

锰是一种必需的微量元素,在环境系统、植物生理学和人类健康中起着关键作用。本综述全面考察了环境中的锰循环、植物对锰的吸收和运输机制,以及锰暴露对人类健康的影响。本综述的目的是:(i)分析锰的环境循环及其生物利用度,(ii)评估锰在植物代谢和抗病性中的作用,以及(iii)评估锰毒性和缺乏对人类健康的影响。本综述强调,虽然锰对光合作用、酶激活和植物疾病抗性至关重要,但它的缺乏和毒性都可能产生严重后果。在植物中,锰缺乏会导致生长受损和作物产量降低,而在酸性土壤中,毒性会抑制光合作用并阻碍发育。在人类中,锰对各种生理过程都是必需的,但过度暴露,特别是在职业环境中,会导致神经退行性疾病,如锰中毒。结论强调了在农业和工业中管理锰水平的重要性,以优化其效益,同时最小化健康风险。提倡采取多学科方法来提高农业生产力和确保公共卫生安全。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d063/11510450/8553da27a048/nutrients-16-03455-g001.jpg

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