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Subcellular localization of copper in tolerant and non-tolerant plant

机译:铜在耐性和非耐性植物中的亚细胞定位

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The ability of Elsholtzia splendens Naki( E. splendens) to accumulate copper appears to be governed by its high degree of copper tolerance. However, the tolerance mechanism on the physiological basis is unknown. Using transmission electron microscope (TEM) and energy dispersive analysis of X-rays(EDX), the likely location of copper within the cells of the tolerant and non-tolerant was determined. Here the role of vacuolar and cell wall compartmentaiization in this copper tolerant plant were investigated. A direct comparison of copper locations of E. splendens and the non-tolerant Astragalus sinicus L. (A. sinicus) showed that the majority of copper in the tolerant was localized primarily in the vacuolar, cell wall, on the plasmamembrane, beside lipid grains induced by copper pollution, in the chloroplasts and amyloids; but in the non-tolerant, copper precipitates only be observed on the plasmamembrane, in the chioroplasts and cytoplasm under copper exposure conditions that were toxic to both species. This revealed that the tolerant accumulates more copper in the vacuole and cell wall than the non-tolerant, where was regarded as the storage compartment of tolerant plant or hyperaccumulator for heavy metals.
机译:Elsholtzia splendens Naki(E。splendens)积累铜的能力似乎受其高度的铜耐受性支配。然而,基于生理学的耐受机制尚不清楚。使用透射电子显微镜(TEM)和X射线能谱分析(EDX),确定了铜在耐受和非耐受细胞内的可能位置。在这里,研究了液泡和细胞壁分隔在该耐铜植物中的作用。直接比较sp草和非耐受性黄芪(A. sinicus)的铜位置显示,耐受性中的大部分铜主要位于液泡,细胞壁,质膜上,脂质颗粒旁边叶绿体和淀粉样蛋白中的铜污染引起的;但在非耐受性条件下,仅在对两种物种都有毒的铜暴露条件下,在质膜,叶绿体和细胞质中观察到铜沉淀。这表明,耐性植物比非耐性植物在液泡和细胞壁中积累更多的铜,后者被认为是耐性植物或重金属超蓄积物的储藏室。

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