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Integrating Biochemical, Morpho-physiological, Nutritional, and Productive Responses to Cd Accumulation in Massai Grass Employed in Phytoremediation

机译:整合植物修复中使用的Massai草对Cd积累的生化,形态生理,营养和生产响应

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Cadmium (Cd) phytoextraction efficiency basically depends on Cd accumulation in their tissues. Thus, our aim in this study was to select biochemical, morpho-physiological, nutritional, and productive responses associated to Cd accumulation in the roots, stems and sheaths, and leaf blades of Panicum maximum cv. Massai (Massai grass), using the random forests analysis. Massai grass was exposed to combinations of three sulfur (S) concentrations (0.1, 1.9, and 3.7mmolL(-1)) and two Cd concentrations (0.0 and 0.1mmolL(-1)) in nutrient solutions. The dry biomass production of Massai grass exposed to Cd decreased by around 50% in relation to control. However, there were no visual symptoms of Cd toxicity in the shoot of this plant, even with Cd concentrations in their shoot exceeding 100mgkg(-1) DW. The lowest dry biomass production of the plants exposed to Cd combined with the absence of visual symptoms of Cd toxicity indicates us that Massai grass is a bioindicator plant that can greatly cope with the Cd-induced stress, but in a little bit different way from other plants. Antioxidant enzymes apparently are not essential for Massai grass cope with Cd-induced stress, differently of other mechanisms (e.g., higher synthesis of thiol compounds and amino acids involved on reactive oxygen species (ROS) scavenging and Cd chelation). Probably, the plant responses that most explained Cd accumulation in Massai grass can be used to identify grasses with high capacity to accumulate Cd in phytoremediation programs with this group of plants.
机译:镉(Cd)的植物提取效率基本上取决于其组织中Cd的积累。因此,我们在这项研究中的目的是选择与Panicum max cv的根,茎,鞘和叶片中的Cd积累相关的生化,形态生理,营养和生产响应。 Massai(马赛草),使用随机森林分析。在营养液中,马赛草暴露于三种硫(S)浓度(0.1、1.9和3.7mmolL(-1))和两种镉浓度(0.0和0.1mmolL(-1))的组合。与对照相比,暴露于Cd的马赛草的干生物量产量下降了约50%。但是,即使其芽中的镉浓度超过100mgkg(-1)DW,该植物的芽中也没有视觉上的Cd毒性症状。暴露于Cd的植物中最低的干生物量生产以及缺乏Cd毒性的视觉症状表明,马赛草是一种生物指标植物,可以极大地应对Cd诱导的胁迫,但与其他方法略有不同植物。显然,抗氧化剂不是马赛草应付Cd诱导的胁迫所必需的,这与其他机制不同(例如,涉及活性氧(ROS)清除和Cd螯合的硫醇化合物和氨基酸的更高合成)。可能,最能解释马赛草中Cd积累的植物反应可以用于鉴定在这类植物的植物修复计划中具有高积累Cd能力的草。

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