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Hazardous heavy metals contamination of vegetables and food chain: Role of sustainable remediation approaches - A review

机译:危险的重金属蔬菜和食物链的污染:可持续修复方法的作用 - 审查

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摘要

This review emphasizes the role of toxic metal remediation approaches due to their broad sustainability and applicability. The rapid developmental processes can incorporate a large quantity of hazardous and unseen heavy metals in all the segments of the environment, including soil, water, air and plants. The released hazardous heavy metals (HHMs) entered into the food chain and biomagnified into living beings via food and vegetable consumption and originate potentially health-threatening effects. The physical and chemical remediation approaches are restricted and localized and, mainly applied to wastewater and soils and not the plant. The nanotechnological, biotechnological and genetical approaches required to more rectification and sustainability. A cellular, molecular and nano-level understanding of the pathways and reactions are responsible for potentially toxic metals (TMs) accumulation. These approaches can enable the development of crop varieties with highly reduced concentrations of TMs in their consumable foods and vegetables. As a critical analysis by authors observed that nanoparticles could provide very high adaptability for both in-situ and ex-situ remediation of hazardous heavy metals (HHMs) in the environment. These methods could be used for the improvement of the inbuilt genetic potential and phytoremediation ability of plants by developing transgenic. These biological processes involve the transfer of gene of interest, which plays a role in hazardous metal uptake, transport, stabilization, inactivation and accumulation to increased host tolerance. This review identified that use of na-noremediation and combined biotechnological and, transgenic could help to enhance phytoremediation efficiency in a sustainable way.
机译:本综述强调了由于其广泛的可持续性和适用性,有毒金属修复方法的作用。在环境的所有部分中,快速发育过程可以纳入大量的危险和看不见的重金属,包括土壤,水,空气和植物。通过食品和蔬菜消费进入食物链和生物染成生物,释放危险的危险金属(HHMS),并源于潜在的健康威胁性威胁。物理和化学修复方法受到限制和局限性,主要应用于废水和土壤而不是植物。需要更整改和可持续性所需的纳米技术,生物技术和遗传方法。对途径和反应的细胞,分子和纳米水平的理解是潜在的毒性金属(TMS)积累。这些方法可以在其消耗食品和蔬菜中具有高度减少的TMS浓度的作物品种的发展。作为作者的关键分析,观察到,纳米颗粒可以在环境中对原位和原位修复环境中的危险重金属(HHMS)提供非常高的适应性。这些方法可用于通过显影转基因来改善植物的内置遗传潜力和植物化能力。这些生物学过程涉及感兴趣的基因转移,其在危险金属摄取,运输,稳定,灭活和积累中起作用,以增加宿主耐受性。本综述确定使用Na-Noemediation和组合生物技术,转基因可以帮助以可持续的方式提高植物化效率。

著录项

  • 来源
    《Environmental research》 |2019年第12期|108792.1-108792.26|共26页
  • 作者单位

    Centre for Environment Science and Climate Resilient Agriculture Indian Agricultural Research Institute New Delhi 110012 India;

    Centre for Environment Science and Climate Resilient Agriculture Indian Agricultural Research Institute New Delhi 110012 India;

    Institute of Environment and Development Studies Bundelkh and University Kanpur Road Jhansi 284128 India;

    Centre for Environment Science and Climate Resilient Agriculture Indian Agricultural Research Institute New Delhi 110012 India;

    Institute of Environment and Development Studies Bundelkh and University Kanpur Road Jhansi 284128 India;

    Division of Plant Physiology Indian Agricultural Research Institute New Delhi 110012 India;

    Institute of Research and Development Duy Tan University Danang 550000 Viet Nam;

    UTM Razak School of Engineering and Advanced Technology Universiti Teknologi Malaysia Malaysia;

    Centre for Environment Science and Climate Resilient Agriculture Indian Agricultural Research Institute New Delhi 110012 India;

    Centre for Environment Science and Climate Resilient Agriculture Indian Agricultural Research Institute New Delhi 110012 India;

    National Bureau of Soil Survey and Land Use Planning Nagpur India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioaccumulation; Biotechnology; Nanotechnology; Toxicity; Transgenic approach;

    机译:生物累积;生物技术;纳米技术;毒性;转基因方法;

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