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Influence of platinum ions on the germination and seedling root growth of different plant species

机译:铂离子对不同植物种子萌发和幼苗根系生长的影响

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摘要

For several decades an increase of platinum in the environment was recorded. This is connected with the release of platinum from automobile catalytic converters and pharmaceutical industries. In the conducted experiments the effect of various forms and concentrations of platinum on the germination and roots growth of different plants (oat, garden cress and tomato) was investigated. Two separate experiments were performed with lower (experiment 1~(st): 1, 5 and 10 mg/L) and higher (experiment 2~(nd): 10, 20 and 40 mg/L) [Pt(NH_3)_4](NO_3)_2 or PtCl_4 dosages. There was no significant effect of dose and form of platinum on the germination of seeds (experiment 1~(st) and 2~(nd)). The effect of platinum containing substances dose on root growth of young seedlings was observed during experiment, dependent on the species of tested plants. The root length of oat plants was similar in all treatments in experiment 1~(st). The shortest tomato roots were observed in the case of a 10 mg/L of PtCl_4, it was statistically shorter than the control plants (treated with water) as well. The roots of the tomato treated with [Pt(NH_3)_4](NO_3)_2 were the same length as observed for the control sample. The garden cress root growth was not affected by [Pt(NH_3)_4](NO_3)_2, but a solution containing Pt~(4+) stimulated the root growth. The roots of tomato and oat treated with [Pt(NH_3)_4](NO_3)_2 had similar length as the control plants in contrast to the far shorter roots treated with PtCl_4 (experiment 2~(nd)). Moreover, the treatment with [Pt(NH_3)_4](NO_3)_2 stimulated the growth of garden cress roots compared to the control, while only the lowest dose of PtCl_4 stimulated the root growth.
机译:几十年来,记录到环境中铂的增加。这与汽车催化转化器和制药行业释放铂有关。在进行的实验中,研究了各种形式和浓度的铂对不同植物(燕麦,水芹和番茄)发芽和根系生长的影响。分别进行了两个较低的实验(实验1〜(st):1、5和10 mg / L)和较高的实验(实验2〜(nd):10、20和40 mg / L)[Pt(NH_3)_4] (NO_3)_2或PtCl_4剂量。铂的剂量和形态对种子发芽没有显着影响(实验1〜(st)和实验2〜(nd))。在实验过程中观察到含铂物质的剂量对幼苗幼苗根系生长的影响,具体取决于被测植物的种类。在实验1〜(st)的所有处理中,燕麦植株的根长相似。在PtCl_4为10 mg / L的情况下,观察到的番茄根最短,统计上也比对照植物(用水处理)短。用[Pt(NH_3)_4](NO_3)_2处理的番茄根的长度与对照样品的长度相同。 [Pt(NH_3)_4](NO_3)_2不会影响水芹根的生长,但是含有Pt〜(4+)的溶液刺激了根的生长。与PtCl_4处理的根短得多(实验2〜(nd))相比,[Pt(NH_3)_4](NO_3)_2处理的番茄和燕麦的根长与对照植物相似。而且,与对照相比,用[Pt(NH_3)_4](NO_3)_2处理刺激了花园水芹根的生长,而仅最低剂量的PtCl_4刺激了根的生长。

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