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Influence of nutrient addition on growth and accumulation of cadmium and copper in Lemna gibba

机译:营养物添加对吉姆银藻生长和镉和铜积累的影响

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摘要

Aquatic plants have been identified as potentially useful for accumulating and bioconcentrating heavy metals. This study was developed to test the hypothesis that nutrient enrichment enhances the metal tolerance of floating macrophytes. Relative growth rates (RGR), photosynthetic pigments (chlorophyll a, b and carotenoid), malondialdehyde (MDA) content, and electrical conductivity (EC) were measured in Lemna gibba exposed to different cadmium and copper concentrations in laboratory conditions. Relative growth rates were negatively correlated with metal exposure, but nutrient addition suppressed this effect. Photosynthetic pigment levels were negatively correlated with metal exposures, and nutrient addition attenuated chlorophyll decrease in response to metal exposures. MDA content and EC also showed sharp increases at higher concentrations, indicating oxidative stress. This study indicates that nutrient enrichment increases the tolerance of Lemna gibba to metals, and that Lemna gibba is a suitable candidate for the phytoremediation of low-level copper and cadmium pollution.
机译:水生植物已被鉴定为可能用于积累和生物浓缩重金属。开展这项研究是为了检验养分富集增强漂浮大型植物对金属的耐受性的假设。在实验室条件下,在暴露于不同镉和铜浓度的Lemna gibba中测量了相对生长速率(RGR),光合色素(叶绿素a,b和类胡萝卜素),丙二醛(MDA)含量和电导率(EC)。相对生长速率与金属暴露呈负相关,但添加养分抑制了这种效应。光合色素水平与金属暴露呈负相关,营养添加减缓了叶绿素对金属暴露的响应。在较高浓度下,MDA含量和EC也显示急剧增加,表明氧化应激。这项研究表明,营养物的富集增加了Lemna gibba对金属的耐受性,并且Lemna gibba是低水平铜和镉污染的植物修复的合适人选。

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