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Effects of copper sulfate on seedlings of Prosopis pubescens (Screwbean mesquite)

机译:硫酸铜对毛豆象(Prosopis pubescens)幼苗的影响

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摘要

Phytoextraction is an established method of removal of heavy metals from contaminated soils worldwide. Phytoextraction is most efficient if local plants are used in the contaminated site. We propose that Prosopis pubescens (Screw bean mesquite) would be a successful phytoextractor of copper in our local soils. In order to determine the feasibility of using Screw bean mesquite, we utilized inductively coupled plasma-optical emission spectroscopy (ICP-OES) and elemental analysis to observe the uptake of copper and the effects on macro and micro nutrients within laboratory-grown seedlings. We have previously shown that pubescens is a hyperaccumulator of copper in soil-grown seedlings.Light and transmission electron microscopy demonstrated death of root cells and ultrastructural changes due to the presence of copper from 50 mg L-1 – 600 mg L-1. Ultrastructural changes included plasmolysis, starch accumulation, increased vacuolation and swollen chloroplasts with disarranged thylakoid membranes in cotyledons.Inductively coupled plasma-optical emission spectroscopy analyses of macro-and micro-nutrients revealed that the presence of copper sulfate in the growth mediium of Petri-dish grown Prosopis pubescens seedlings resulted in dramatic decreases of magnesium, potassium and phosphorus. At 500-600 mg L-1 of copper sulfate a substantial increase of sulfur was present in roots.
机译:植物提取是一种从全世界受污染的土壤中去除重金属的成熟方法。如果在受污染的地方使用本地植物,植物提取是最有效的方法。我们建议,毛豆豆(Prosopis pubescens)(豆豆杂种)将是我们当地土壤中铜的成功植物提取物。为了确定使用豆科植物豆科灌木的可行性,我们利用电感耦合等离子体发射光谱法(ICP-OES)和元素分析来观察铜的吸收以及对实验室种植的幼苗中铜和微量养分的影响。先前我们已经证明,耻骨是土壤生长的幼苗中铜的超富集者。光电子显微镜和透射电子显微镜显示,由于存在50 mg L-1至600 mg L-1的铜,根细胞死亡和超微结构变化。超微结构的变化包括溶质,淀粉积累,空泡增加和子叶类囊体膜排列不全的叶绿体肿胀。电感耦合等离子-发射光谱法对大量和微量营养素的分析表明,培养皿中生长培养基中存在硫酸铜。种植的Prosopis pubescens幼苗导致镁,钾和磷急剧减少。在500-600 mg L-1的硫酸铜中,根中存在大量的硫。

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