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首页> 外文期刊>Acta Physiologiae Plantarum >Arsenate and arsenite: the toxic effects on photosynthesis and growth of lettuce plants
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Arsenate and arsenite: the toxic effects on photosynthesis and growth of lettuce plants

机译:砷酸盐和亚砷酸盐:对莴苣植物光合作用和生长的毒性作用

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摘要

Arsenate (AsV) and arsenite (AsIII) contamination can promote several disturbances in plant metabolism, besides affecting directly human and animal health due to the insertion of this metalloid in the food chain. Therefore, the arsenic (As) uptake andaccumulation, the changes in gas exchange and in chlorophyll a fluorescence parameters as well as the chloroplastic pigments content were measured. The As accumulation in leaves and roots increased with the increase of AsV and AsIII concentration, except at the highest AsIII concentration, probably because of AsIII extrusion mechanism. Although the highest As concentration has been found in roots, significant amount was transported to the leaves, especially when plants were exposed to AsIII. The As accumulation decreased the relative growth rate (RGR) of leaves and roots. However, at 6.6 μmol L~(1) AsV, an increase in leaves RGR was observed, possibly related to the changes in phosphate (PV) nutrition caused by As. AsV and AsIII interfered negativelyin the photosynthetic process, except at 6.6 μmol L~(1) AsV. The observed reduction seemed to be associated to the interference in the photochemical and biochemical steps of photosynthesis; however, chlorophyll a fluorescence results indicate that thephotosynthetic apparatus and chloroplastic pigments were not damaged. So, lettuce plants demonstrated to be able to accumulate As and also to protect the photosynthetic apparatus against the harmful effects of this metalloid, probably through the activation of tolerance mechanisms.
机译:砷酸盐(AsV)和亚砷酸盐(AsIII)的污染除了会由于这种准金属在食物链中的插入而直接影响人类和动物的健康外,还会促进植物代谢中的多种干扰。因此,测量了砷的吸收和积累,气体交换和叶绿素a荧光参数的变化以及叶绿体色素的含量。除了在最高的AsIII浓度下,叶和根中As的积累随AsV和AsIII浓度的增加而增加,这可能是由于AsIII的挤出机理。尽管在根中发现了最高的As浓度,但是大量的As转运到了叶子上,尤其是当植物暴露于AsIII时。砷的积累降低了叶和根的相对生长速率(RGR)。然而,在6.6μmolL〜(1)AsV下,叶片RGR升高,可能与As引起的磷酸盐(PV)营养变化有关。除6.6μmolL〜(1)AsV外,AsV和AsIII在光合作用过程中均产生不利影响。观察到的减少似乎与光合作用的光化学和生物化学步骤中的干扰有关。然而,叶绿素a的荧光结果表明光合装置和叶绿体色素没有被破坏。因此,莴苣植物被证明能够积累砷,并且还可能通过激活耐受机制来保护光合装置免受这种准金属的有害影响。

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