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Biomonitoring potential of the native aquatic plant Typha domingensis by predicting trace metals accumulation in the Egyptian Lake Burullus

机译:通过预测埃及布勒鲁斯湖中痕量金属的积累,本地水生植物香蒲的生物监测潜力

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摘要

The ability of the native emergent macrophytes Typha domingensis for monitoring pollution with trace metals in Egyptian Lake Burullus was investigated through developing regression models for predicting their concentrations in the plant tissues. Plant samples (above-ground shoot and below-ground root and rhizome) as well as sediment samples were collected monthly during one growing season and analyzed. The association of trace metals concentration with several sediment characteristics (pH, organic matter, clay and silt) was also studied using the simple linear correlation coefficient (r). The concentration of some trace metals was significantly proportional to its values in the sediment such as Cd in the shoot, rhizome and root, Fe in the rhizome, and Ag in the root. There was positive relationship between the bioaccumulation factor (BAF) of Ag, Cd, Fe, Pb and Zn and sediment pH, organic matter and clay content. The developed regression models were significantly valid with high model efficiency and coefficient of determination, and low mean normalized average error. Trace metals were accumulated in the below-ground root and rhizome rather than in the shoot. Only Ag, Co and Ni provided bioaccumulation factor (BAF) < 1, while Ag was the only trace metal that could be transferred to some extend from the root to the rhizome and from there to the shoot [translocation factor (TF) 2.55 and 1.15, respectively]. Typha domingensis in Lake Burullus could be regarded as a bioindicator of trace metals pollution, and a good candidate as phytoremediator for Ag. The information on the phytoremediation capacity of T. domingensis certainly helps to solve contamination problems at Egyptian Lake Burullus region using this native plant.
机译:通过建立回归模型预测其在植物组织中的浓度,研究了天然出生的大型植物香蒲(Dypha domingensis)监测埃及布鲁鲁斯湖中痕量金属污染的能力。在一个生长季节每月收集一次植物样品(地上芽,地下根和根茎)以及沉积物样品并进行分析。还使用简单的线性相关系数(r)研究了痕量金属浓度与几种沉积物特征(pH,有机物,粘土和淤泥)的关系。某些微量金属的浓度与其在沉积物中的含量成正比,例如枝条中的Cd,根茎和根,根茎中的Fe和根中的Ag。 Ag,Cd,Fe,Pb和Zn的生物富集因子(BAF)与沉积物的pH值,有机质和粘土含量之间呈正相关。所建立的回归模型具有较高的模型效率和确定系数,并且均值归一化平均误差较低,因此非常有效。痕量金属积累在地下根和根茎中,而不是芽中。只有Ag,Co和Ni提供的生物富集因子(BAF)<1,而Ag是唯一可以从根部转移到根茎并从根部转移到枝条的微量金属[转运因子(TF)为2.55和1.15。 , 分别]。 Burullus湖中的香蒲可以被视为痕量金属污染的生物指标,并且可以作为Ag的植物修复剂。有关T. domingensis的植物修复能力的信息无疑有助于解决使用这种本地植物的埃及布卢勒斯湖地区的污染问题。

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  • 来源
    《The Science of the Total Environment》 |2020年第20期|136603.1-136603.13|共13页
  • 作者单位

    Biology Department College of Science King Khalid University Nana 61321 P.O. Box 9004 Saudi Arabia Graduate School of Science and Engineering Saitama University 255 Shimo-Okubo Sakura-ku Saitama 338-8570 Japan Botany Department Faculty of Science Kafr El-Sheikh University Kafr El-Sheikh 33516 Egypt;

    Biology Department Faculty of Science Taif University Taif Saudi Arabia Botany and Microbiology Department Faculty of Science Helwan University Cairo Egypt;

    Botany Department Faculty of Science Tanta University Tanta31527 Egypt;

    Botany & Microbiology Department College of Science King Saud University P.O. Box. 2455 Riyadh 11451 Saudi Arabia Department of Botany Faculty of Science Damanhour University Damanhour Egypt;

    Graduate School of Science and Engineering Saitama University 255 Shimo-Okubo Sakura-ku Saitama 338-8570 Japan Hydro Technology Institute Shiroyama Trust Tower 31F 4-3-1 Toranomon MInato-ku Tokyo Japan Research and Development Center Nippon Koei 2304 Inarihara Tsukuba Ibaraki Japan;

    Botany & Microbiology Department College of Science King Saud University P.O. Box. 2455 Riyadh 11451 Saudi Arabia;

    Biology Department College of Science King Khalid University Nana 61321 P.O. Box 9004 Saudi Arabia;

    Environmental and Food Safety Research Croup of the University of Valencia (SAMA-UV) Desertification Research Centre CIDE (CSIC-UV-GV) Moncada-Naquera Road km 4.5 46113 Moncada Valencia Spain;

    Botany & Microbiology Department College of Science King Saud University P.O. Box. 2455 Riyadh 11451 Saudi Arabia Water and Soil Research Group Department of Environmental Chemistry IDAEA-CSIC JORDI GIRONA 18-26 08034 Barcelona Spain;

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

    Bioindicator; Trace metals; Phytoremediation; Pollution; Regression models; Water cattail;

    机译:生物指示剂痕量金属;植物修复;污染;回归模型;水香蒲;

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