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Study of the contamination rate and change in growth features of lettuce (Lactuca sativa Linn.) in response to cadmium and a survey of its phytochelatin synthase gene

机译:生菜对镉的污染率和生长特征变化的研究及其植物螯合酶合成酶基因的研究

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Crops can become contaminated when grown in soils containing heavy metals. Cadmium is a heavy metal that poses a significant health risk to humans. The purpose of this study was to evaluate the effect of cadmium on lettuce (Lactuca saliva Linn) and the contamination risk of lettuce grown in cadmium environments. The results showed that photosynthesis and growth parameters were significantly affected by cadmium. Lettuce has the ability to absorb large amounts of cadmium from the contaminated environment and so is a cadmium hyper-accumulator plant. The study showed that approximately 35% of the total absorbed cadmium is transmitted to aerial and edible parts of lettuce. This study was undertaken as lettuce has the ability to absorb and accumulate high levels of cadmium. There are however are no reports on the PCS gene and the potential for high cadmium accumulation in lettuce. The bioinformatics study revealed that lettuce has two phytochelatin synthase genes that produce 6 PCSs through splicing leading to the ability of lettuce to store high levels of cadmium. These six sequences although different in length have high similarity. Sequence structure, cellular location, three-dimensional structure, phylogeny and a comparison of their catalytic power were evaluated. The high accumulation of cadmium in lettuce and the presence of several PCSs contribute to the accumulation of cadmium in aerial tissues. The cultivation of lettuce in contaminated environments led us to evaluate suspected farms for the presence of cadmium in produce. Lettuce grown in industrial environments contaminated with cadmium can pose a serious threat to human health.
机译:在含有重金属的土壤中生长时,农作物会被污染。镉是重金属,对人体构成重大健康风险。这项研究的目的是评估镉对生菜(Lactuca saliva Linn)的影响以及在镉环境中生长的生菜的污染风险。结果表明,镉显着影响光合作用和生长参数。生菜具有从受污染的环境中吸收大量镉的能力,因此镉超积累工厂也是如此。研究表明,吸收的镉总量中约有35%会传播到生菜的可食用部分。进行本研究是因为生菜具有吸收和积累高水平镉的能力。但是,没有关于PCS基因和生菜中高镉积累潜力的报道。生物信息学研究表明,生菜具有两个植物螯合酶合酶基因,它们通过剪接产生6个PCS,从而使生菜能够存储高水平的镉。这六个序列尽管长度不同但具有高度相似性。评价了序列结构,细胞位置,三维结构,系统发育及其催化能力的比较。生菜中镉的高积累和几种PCS的存在有助于空气组织中镉的积累。在受污染的环境中种植生菜使我们评估了可疑农场中农产品中是否存在镉。在工业环境中生长的被镉污染的生菜可能对人类健康构成严重威胁。

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