首页> 外文期刊>Environmental Monitoring and Assessment >Use of native plants and their associated bacteria rhizobiomes to remediate-restore Draa Sfar and Kettara mining sites, Morocco
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Use of native plants and their associated bacteria rhizobiomes to remediate-restore Draa Sfar and Kettara mining sites, Morocco

机译:使用本土植物及其相关的细菌Rhizobiomes来修复恢复DRAA SFAR和Kettara采矿地点,摩洛哥

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摘要

Soil and mine tailings are unreceptive to plant growth representing an imminent threat to the environment and resource sustainability. Using indigenous plants and their associated rhizobacteria to restore mining sites would be an eco-friendly solution to mitigate soil-metal toxicity. Soil prospection from Draa Sfar and Kettara mining sites in Morocco was carried out during different seasons for native plant sampling and rhizobacteria screening. The sites have been colonized by fifteen tolerant plant species having different capacities to accumulate Cu, Zn, and P in their shoots/root systems. In Draa Sfar mine, Suaeda vera J.F. Gmel., Sarcocornia fruticosa (L.) A.J. Scott., and Frankenia corymbosa Desf. accumulated mainly Cu (more than 90 mg kg(-1)), Atriplex halimus L. accumulated Zn (mg kg(-1)), and Frankenia corymbosa Desf. accumulated Pb (14 mg kg(-1)). As for Kettara mine, Aizoon canariense L. mainly accumulated Zn (270 mg kg(-1)), whereas Forsskalea tenacissima L. was the best shoot Cu accumulator with up to 50 mg kg(-1), whereas Cu accumulation in roots was 21 mg kg(-1). The bacterial screening revealed the strains' abilities to tolerate heavy metals up to 50 mg kg(-1) Cu, 250 mg kg(-1) Pb, and 150 mg kg(-1) Zn. Isolated strains belonged mainly to Bacillaceae (73.33%) and Pseudomonadaceae (10%) and expressed different plant growth-promoting traits, alongside their antifungal activity. Results from this study will provide an insight into the ability of native plants and their associated rhizobacteria to serve as a basis for remediation-restoration strategies.
机译:土壤和矿井尾矿对植物增长来说是不可避免的,对环境和资源可持续性表示迫在眉睫的威胁。使用本土植物及其相关的relizobacteria来恢复采矿部位将是一种生态友好的解决方案,以减轻土壤 - 金属毒性。摩洛哥德拉SFAR和Kettara采矿遗址的土壤展望是在不同季节进行原生植物采样和根瘤菌筛查。该部位已经被具有不同容量的十五种耐受植物物种的殖民化,以在其枝条/根系系统中积聚Cu,Zn和P。在德拉SFAR矿山,苏亚达维尔·J.F.MBEL。,Sarcocornia Fruticosa(L.)A.J.斯科特。和Frankenia Corymbosa desf。主要累积Cu(超过90mg kg(-1)),Atriplex Halimus L.累积Zn(mg kg(-1))和Frankenia corymbosa desf。累积的Pb(14mg kg(-1))。至于Kettara Mine,Aizoon Canariense L.主要积累的Zn(270 mg kg(-1)),而Forsskalea tenacissima l。是最高可达50 mg kg(-1)的最佳拍摄Cu累积器,而根中的Cu积累是21 mg kg(-1)。细菌筛选揭示了耐受高达50mg kg(-1)Cu,250mg kg(-1)pb和150mg kg(-1)Zn的重金属的菌株的能力。分离的菌株主要属于枯草嘧啶(73.33%)和假单胞菌(10%),并表达不同的植物生长促进性状,以及其抗真菌活性。本研究的结果将深入了解本地植物及其相关的根瘤菌作为修复恢复策略的基础的能力。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2021年第4期|232.1-232.14|共14页
  • 作者单位

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco|Aix Marseille Univ Lab Microbial Ecol Rhizosphere LEMiRE ECCOREV FR 3098 CEA CNRS UMR7265 F-13108 St Paul Les Durance France;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Water Biodivers & Global Change POB 2390 Marrakech Morocco;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco;

    Aix Marseille Univ Lab Microbial Ecol Rhizosphere LEMiRE ECCOREV FR 3098 CEA CNRS UMR7265 F-13108 St Paul Les Durance France;

    Univ Seville Dept Microbiol & Parasitol POB 1095 Seville 41080 Spain;

    Cadi Ayyad Univ Fac Sci Semlalia Lab Microbial Biotechnol Agrosci & Environm BioMA POB 2390 Marrakech Morocco;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Phytomanagement; Accumulation; Metal translocation; Plant growth-promoting rhizobacteria; Copper; Lead; Zinc;

    机译:Phytomanagement;积累;金属易位;植物生长促进的根瘤菌;铜;铅;锌;

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