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Analysis of arsenic species accumulation by plants and the influence on their nitrogen uptake

机译:植物体内砷的积累及其对氮素吸收的影响分析

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Terrestrial plants are able to accumulate arsenic to a substantial extent but survive the stress to differing degrees of vitality. The influence of arsenic on important energy and metabolic cycles does not yet have sufficient explanation. Parallel to the uptake, and processing of arsenic species such as As(III) and As(v) by Silene vulgaris, the nitrogen uptake using a ~(15)N tracer method was investigated. The results showed that the nitrogen uptake decreases with increasing arsenate concentrations applied to the plants. The reaction of the plants treated with arsenite changed from a depression at low arsenite concentrations to a strong increase with the largest quantity applied, exceeding the ~(15)N-incorporation of the control plants. This behaviour underlines the divergent behaviour of the N-metabolism caused by both arsenic species. As(III) can be detoxified by complexation with peptides rich in SH-groups. As(v) acts as a phosphate analogue and interrupts diverse phosphorylation reactions.
机译:陆生植物能够在很大程度上积累砷,但可以承受不同程度的活力。砷对重要能量和代谢循环的影响尚无足够的解释。与普通硅粉对砷(As(III)和As(v))的吸收和加工过程平行,我们使用〜(15)N示踪法研究了氮的吸收。结果表明,氮的吸收随着砷浓度的增加而降低。用亚砷酸盐处理过的植物的反应从低砷浓度下的凹陷变为最大用量下的强烈增加,超过了对照植物〜(15)N的掺入量。这种行为强调了由两种砷引起的N-代谢的不同行为。 As(III)可通过与富含SH-基团的肽复合而解毒。 As(v)充当磷酸盐类似物并中断各种磷酸化反应。

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