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Subcellular Localization and Speciation of Nickel in Hyperaccumulator and Non-Accumulator Thlaspi Species

机译:超积累和非积累Thlaspi物种中镍的亚细胞定位和形态

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摘要

The ability of Thlaspi goesingense Hálácsy to hyperaccumulate Ni appears to be governed by its extraordinary degree of Ni tolerance. However, the physiological basis of this tolerance mechanism is unknown. We have investigated the role of vacuolar compartmentalization and chelation in this Ni tolerance. A direct comparison of Ni contents of vacuoles from leaves of T. goesingense and from the non-tolerant non-accumulator Thlaspi arvense L. showed that the hyperaccumulator accumulates approximately 2-fold more Ni in the vacuole than the non-accumulator under Ni exposure conditions that were non-toxic to both species. Using x-ray absorption spectroscopy we have been able to determine the likely identity of the compounds involved in chelating Ni within the leaf tissues of the hyperaccumulator and non-accumulator. This revealed that the majority of leaf Ni in the hyperaccumulator was associated with the cell wall, with the remaining Ni being associated with citrate and His, which we interpret as being localized primarily in the vacuolar and cytoplasm, respectively. This distribution of Ni was remarkably similar to that obtained by cell fractionation, supporting the hypothesis that in the hyperaccumulator, intracellular Ni is predominantly localized in the vacuole as a Ni-organic acid complex.
机译:Thlaspi goingenseHálácsy超富Ni的能力似乎受其非凡的Ni耐受性支配。但是,这种耐受机制的生理基础尚不清楚。我们已经研究了液泡分隔和螯合在这种镍耐受性中的作用。直接比较来自金丝雀和非耐性非积累性拟南芥叶的液泡中的镍含量,结果表明,在暴露于镍的条件下,超积累性液泡中的镍比非积累性液泡中的镍高大约2倍。对两种物种无毒。使用X射线吸收光谱法,我们已经能够确定与高蓄积性和非蓄积性叶片组织中的镍螯合有关的化合物的可能身份。这表明,超富集植物中的大部分叶片镍与细胞壁有关,其余镍与柠檬酸盐和His有关,我们将其解释为分别位于液泡和细胞质中。 Ni的这种分布与通过细胞分级分离获得的分布非常相似,从而支持了以下假设:在高蓄积物中,细胞内Ni主要以Ni-有机酸复合物的形式存在于液泡中。

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