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首页> 外文期刊>Romanian Biotechnology Letters >Comparative Study of Cd, Pb, and Ni removal potential by Salvinia natans (L.) All. and Lemna minor L.: Interactions with Growth Parameters
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Comparative Study of Cd, Pb, and Ni removal potential by Salvinia natans (L.) All. and Lemna minor L.: Interactions with Growth Parameters

机译:Salvinia natans(L.)All对Cd,Pb和Ni去除潜力的比较研究。和小Lemna L .:与生长参数的相互作用

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The aim of this study was to identify the biological responses and phytoremediation capability oftwo aquatic macropyhtes: Salvinia natans and Lemna minor. Lemna and Salvinia species were exposed todifferent concentrations of Pb, Cd, and Ni for 7 days. The bioconcentration factors (BCF) of heavy metalsfrom water to these two aquatic macropyhtes were estimated and the removal potential of heavy metalswas assessed. After 7 days, some biological parameters were measured, including metal accumulations inleaves, photosynthetic pigmentations, Lipid peroxidation activity, and growth rates. For S. natans, thehighest Pb accumulation was found in 50 mg l-1 concentration. The amount of chlorophyll a (chl a) in L.minor was reduced to a minimum value of 0.120 mg g-1 with the 8 mg l-1 Cd concentration. The RelativeGrowth Rate (RGR) values of both plants were negatively associated with metal treatment. The levels ofMalondialdehyde (MDA) in S. natans increased to a maximum value of 7.174 nmol/g with 50 mg l-1 at Pbconcentration-dependent and time-depended action. S. natans was a more effective Pb and Niaccumulator than L. minor, but L. minor was a more effective Cd accumulator than S. natans. Ourfindings might be useful for the phytoremediation of water polluted with heavy metals.
机译:本研究的目的是确定两种水生大吡啶类的生物学响应和植物修复能力:Salvinia natans和Lemna minor。 Lemna和Salvinia物种暴露于不同浓度的Pb,Cd和Ni 7天。估算了水中从重金属到这两种水生大型吡啶的生物浓缩因子(BCF),并评估了重金属的去除潜力。 7天后,测量了一些生物学参数,包括金属积累叶,光合色素沉着,脂质过氧化活性和生长速率。对于纳丹链球菌,发现最高的Pb积累浓度为50 mg l-1。小浓度的L.minor中的叶绿素a(chl a)的含量降至8 mg -1 Cd的最小值0.120 mg g-1。两种植物的相对生长率(RGR)值与金属处理呈负相关。在Pb浓度依赖性和时间依赖性的作用下,纳坦链球菌中丙二醛(MDA)的含量以50 mg l-1增至最大值7.174 nmol / g。纳丹链球菌比未成年人链球菌更有效的Pb和Niaccumulator,但未成年人链球菌比纳粹链球菌更有效的Cd累积剂。我们的发现可能对被重金属污染的水的植物修复有帮助。

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