首页> 外文期刊>Plant Biosystems >Localisation of nickel and mineral nutrients Ca, K, Fe, Mg by Scanning Electron Microscopy microanalysis in tissues of the nickel-hyperaccumulator Alyssum bertolonii Desv. and the non-accumulator Alyssum montanum L.
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Localisation of nickel and mineral nutrients Ca, K, Fe, Mg by Scanning Electron Microscopy microanalysis in tissues of the nickel-hyperaccumulator Alyssum bertolonii Desv. and the non-accumulator Alyssum montanum L.

机译:镍和矿物质营养成分Ca,K,Fe,Mg的扫描电子显微镜显微分析在镍超富集者香雪球(Alyssum bertolonii Desv)组织中的定位。和非蓄积香雪球

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Plants of the nickel-hyperaccumulator Alyssum bertolonii Desv. and of the non-accumulator A. montanum L. growing on a serpentine site in Tuscany, Italy, and plants of A. montanum from a nearby non-serpentine site were analysed for metal concentration and localisation. The leaves of A. bertolonii contained 160 times more nickel than those of A. montanum from the same site, thus demonstrating its hyperaccumulation capacity towards this metal. On the other hand, both species showed an inversion of the Ca/Mg ratio in their organs relative to the soil. Nickel localisation in plant tissues was examined by Scanning Electron Microanalysis (SEM/EDX). In A. bertolonii, a specific pattern of nickel distribution was detected, with the highest concentrations present in parenchyma and sclerenchyma cells for the roots; in the shoots, the highest amounts of nickel were found in the stem epidermis, the leaf epidermal surface, and the leaf trichome base. This particular nickel tissue distribution pattern was not found in the non-accumulator A. montanum growing on serpentine soil. Other mineral nutrients, namely Mg, Ca, K, Fe, instead, had a similar distribution in the two species. The A. montanum plants from the non-serpentine site had very low nickel levels in their tissues, and these were of the same magnitude as those found in A. bertolonii plants grown in a greenhouse on commercial horticultural soil with low nickel concentration. In A. bertolonii plants, the tissue-specific allocation patterns appeared to depend on the degree of nickel hyperaccumulation, which is, in turn, directly linked to the soil characteristics.
机译:镍超蓄积天竺葵的植物。分析了在意大利托斯卡纳的一个蛇形场所生长的非蓄积芒草和来自附近非蛇形场所的芒草植物的金属浓度和位置。 bertolonii叶片的镍含量是同一位置的褐煤菌的160倍,因此证明了其对该金属的超富集能力。另一方面,这两个物种的器官中的Ca / Mg比率相对于土壤都呈反转状态。通过扫描电子显微分析(SEM / EDX)检查植物组织中的镍定位。在A. bertolonii中,检测到一种特定的镍分布模式,其中根部的薄壁组织和硬化组织中存在最高浓度的镍。在芽中,在茎表皮,叶片表皮表面和叶片毛状体基部中发现的镍含量最高。在蜿蜒土壤上生长的非蓄积红曲霉中未发现这种特殊的镍组织分布模式。相反,其他矿物养分,例如Mg,Ca,K,Fe,在这两个物种中具有相似的分布。来自非蛇纹石部位的褐紫苏植物的组织中镍含量非常低,与在温室中商业种植的镍含量低的土壤中的bertolonii植物中发现的镍含量相同。在bertolonii植物中,组织特异性的分配模式似乎取决于镍的过度积累程度,而镍过度积累的程度又直接与土壤特征相关。

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