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首页> 外文期刊>Journal of Plant Physiology >The response of a model C-3/CAM intermediate semi-halophyte Mesembryanthemum crystallinum L. to elevated cadmium concentrations
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The response of a model C-3/CAM intermediate semi-halophyte Mesembryanthemum crystallinum L. to elevated cadmium concentrations

机译:型C-3 / Cam中间半卤素胚乳晶体L.升高镉浓度的响应

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Many areas exhibiting increased concentrations of soluble salts are simultaneously polluted with heavy metals (HM), and halophytes with extended tolerance to heavy metal toxicity seem to represent a promising tool for their phytoremediation. In this study, the response of the soil-grown C-3-CAM (Crassulacean acid metabolism) intermediate halophyte Mesembryanthemum crystallinum (common ice plant) to increased concentrations of Cd (0.01-1 mM) was investigated. None of the tested Cd treatments affected growth parameters or tissue water content of either C-3 or CAM-performing plants. Chlorophyll a fluorescence confirmed high tolerance of the photosynthetic apparatus of both metabolic states towards Cd. Plants performing both photosynthesis types accumulated significant Cd amounts only under the highest (1 mM) treatment, and the metal was primarily deposited in the roots, which are features typical of an excluding strategy. Upon the application of 1 mM Cd solution CAM-performing plants, due to the NaCl pre-treatment applied for CAM induction, were exposed to significantly higher amounts of bioavailable Cd in comparison with those of C-3-performing plants. As a result, roots of CAM plants accumulated over 4-fold higher Cd amounts when compared with C-3 plants. In our opinion, enhanced Cd-accumulating potential observed in CAM-performing plants was the effect of osmotic stress episode and resulting modifications e.g. in the detoxifying capacity of the antioxidative system. Increased antioxidative potential of NaCl pre-treated plants was pronounced with significantly higher activity of CuZnSOD (copper-zinc superoxide dismutase), not achievable in C-3 plants subjected to high Cd concentrations. Moreover, the applied Cd doses induced SOD activity in a compartment-dependent manner only in C-3 plants. We confirmed that none of the applied Cd concentrations initiated the metabolic shift from C-3 to CAM.
机译:许多表现出增加浓度的可溶性盐的区域同时用重金属(HM)污染,并且对重金属毒性的耐受性延长耐受性似乎代表了其植物化的有希望的工具。在该研究中,研究了土壤生长的C-3-CAM(Crassulacean酸代谢)中间体卤素胚乳霉素晶体(普通冰植物)以增加Cd浓度(0.01-1mm)的响应。没有测试的CD治疗影响C-3或CAM性植物的生长参数或组织含水量。叶绿素A荧光证实了两种代谢态对CD的光合仪的高耐受性。表演光合作用类型的植物仅在最高(1毫米)处理下累积了显着的CD量,并且金属主要沉积在根部,这是一种不包括策略的特征。在施加1mM CD溶液CAM正在进行的植物后,由于施加的NaCl预处理,与C-3性能的植物相比,暴露于显着较高的生物利用率Cd。结果,与C-3植物相比,凸轮植物的根累积超过4倍的CD量。在我们看来,在CAM性能植物中观察到的CD累积电位是渗透压力发作的效果和导致的修饰。在抗氧化系统的解毒能力。 NaCl预处理植物的抗氧化潜力的增加具有显着高的Cuznsod(超氧化物超氧化物歧化酶)的显着较高,不能在经受高CD浓度的C-3植物中获得。此外,所施加的CD剂量仅在C-3植物中以依赖性方式诱导SOD活性。我们证实,没有一种施加的CD浓度从C-3到凸轮开始代谢移位。

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