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Fractionation of Stable Cadmium Isotopes in the Cadmium Tolerant Ricinus communis and Hyperaccumulator Solanum nigrum

机译:耐钙耐柠檬细胞和高读物茄菌Nigrum的稳定镉同位素的分馏

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Cadmium (Cd) isotopes provide new insights into Cd uptake, transport and storage mechanisms in plants. Therefore, the present study adopted the Cd-tolerant Ricinus communis and Cd-hyperaccumulator Solanum nigrum, which were cultured under controlled conditions in a nutrient solution with variable Cd supply, to test the isotopic fractionation of Cd during plant uptake. The Cd isotope compositions of nutrient solutions and organs of the plants were measured by multiple collector inductively coupled plasma mass spectrometry (MC-ICPMS). The mass balance of Cd isotope yields isotope fractionations between plant and Cd source (δ(114/110)Cdorgans-solution) of -0.70‰ to -0.22‰ in Ricinus communis and -0.51‰ to -0.33‰ in Solanum nigrum. Moreover, Cd isotope fractionation during Cd transport from stem to leaf differs between the Cd-tolerant and -hyperaccumulator species. Based on these results, the processes (diffusion, adsorption, uptake or complexation), which may induce Cd isotope fractionation in plants, have been discussed. Overall, the present study indicates potential applications of Cd isotopes for investigating plant physiology.
机译:镉(CD)同位素为植物中的CD吸收,运输和储存机制提供了新的见解。因此,本研究采用CD耐受性蓖麻细胞和CD-HyperAcumulator Solanum nigrum,其在具有可变CD供应的营养溶液中的受控条件下培养,以测试植物摄取期间CD的同位素分级。通过多个集电极电感耦合等离子体质谱法(MC-ICPMS)测量植物营养溶液和器官的CD同位素组成。 Cd同位素的质量平衡在植物和CD源(δ(114/110)Cdorgans-溶液)之间的同位素分馏 - 在菌株中的-0.70‰至-0.22‰的-0.70‰至-0.22‰。此外,CD同位素分馏在茎到叶片的CD输送过程中的CD耐受性和高阴压物种之间的不同。基于这些结果,已经讨论了可能诱导植物中CD同位素分馏的方法(扩散,吸附,摄取或络合)。总体而言,本研究表明CD同位素用于调查植物生理学的潜在应用。

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