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Cadmium stress in paddy fields: Effects of soil conditions and remediation strategies

机译:稻田中的镉胁迫:土壤条件和修复策略的影响

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摘要

Cadmium (Cd) toxicity in paddy soil and accumulation in rice plants and grains have got global concern due to its health effects. This review highlights the effects of soil factors including soil organic matter, soil pH, redox potential, and soil microbes which influencing Cd uptake by rice plant. Therefore, a comprehensive review of innovative and environmentally friendly management practices for managing Cd stress in rice is lacking. Thus, this review discusses the effect of Cd toxicity in rice and describes management strategies to offset its effects. Moreover, future research thrusts to reduce its uptake by rice has also been highlighted. Through phytoremediation, Cd may be extracted and stabilized in the soil while through microbes Cd can be sequestrated inside the microbial bodies. Increased Cd uptake in hyperaccumulator plants to remediate and convert the toxic form of Cd into non-toxic forms. While in chemical remediation, Cd can be washed out, immobilized and stabilized in the soil through chemical amendments. The organic amendments may help through an increase in soil pH, adsorption in its functional groups, the formation of complexations, and the conversion of exchangeable to residual forms. Developing rice genotypes with restricted Cd uptake and reduced accumulation in grain through conventional and marker-assisted breeding are fundamental keys for safe rice production. In this regard, the use of molecular techniques including identification of QTLs, CRISPR/Cas9, and functional genomics may be quite helpful.
机译:镉(CD)稻田土壤中的毒性和水稻植物和谷物的积累由于其健康效应而导致全球关注。该综述凸显了土壤因素,包括土壤有机质,土壤pH,氧化还原潜力和土壤微生物的影响,其影响水稻植物的CD吸收。因此,缺乏对管理水稻CD压力的创新和环保管理实践的全面审查。因此,本综述讨论了CD毒性在水稻中的影响,并描述了抵消其影响的管理策略。此外,还突出了未来的研究,以减少米饭的吸收。通过植物修复,可以通过微生物Cd在土壤中萃取并稳定CD,可以在微生物体内被螯合。高累积厂的CD摄取增加,以修复并将毒性形式的CD转化为无毒形式。虽然在化学修复中,可以通过化学修正将Cd洗掉,固定并稳定在土壤中。有机型修复可以通过土壤pH的增加,其官能团的吸附,形成络合的形成,以及可易换的剩余形式的转化。通过常规和标记辅助育种产生具有限制CD摄取和谷物积累的水稻基因型,是安全稻米生产的基本键。在这方面,使用包括QTL,CRISPR / CAS9和功能基因组学的鉴定的分子技术可能非常有帮助。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第2期|142188.1-142188.18|共18页
  • 作者单位

    Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Farmland Irrigation Research Institute Xinxiang Chinese Academy of Agricultural Sciences Beijing 100081 China;

    State Key Laboratory of Agricultural Microbiology Provincial Key Laboratory of Plant Pathology of Hubei Province College of Plant Science and Technology Huazhong Agricultural University Wuhan 430070 Hubei China;

    Institute of Agricultural Resources and Regional Planning Chinese Academy of Agricultural Sciences Beijing 100081 China;

    Department of Plant Sciences College of Agricultural Marine Sciences Sultan (taboos University Al-Khoud 123 Oman;

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

    Cadmium contamination; Paddy soil; Amendments; Breeding; Phytoremediation; Phytotoxicity;

    机译:镉污染;稻田;修正案;配种;植物修复;phytotoxicity.;

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