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首页> 外文期刊>Science of the total environment >Salt accumulation and effects within foliage of Tilia x vulgaris trees from the street greenery of Riga, Latvia
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Salt accumulation and effects within foliage of Tilia x vulgaris trees from the street greenery of Riga, Latvia

机译:从拉脱维亚里加的街道绿叶蒂利亚x寻常树叶中的盐累积和效果

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摘要

Green infrastructures within sprawling cities provide essential ecosystem services, increasingly undermined by environmental stress. The main objective in this study was to relate the allocation patterns of NaCl contaminants to injury within foliage of lime trees mechanistically and distinguish between the effects of salt and other environmental stressors. Using field material representative of salt contamination levels in the street greenery of Riga, Latvia, the contribution of salt contaminants to structural and ultrastructural injury was analyzed, combining different microscopy techniques. On severely salt-polluted and dystrophic soils, the foliage of street lime trees showed foliar concentrations of Na/Cl up to 13,600/16,750 mg kg~(-1) but a still balanced nutrient content. The salt contaminants were allocated to all leaf blade tissues and accumulated in priority within mesophyll vacuoles, changing the vacuolar ionic composition at the expense of especially K and Ca. The size of mesophyll cells and vacuoles was increased as a function of NaCl concentration, suggesting impeded transpiration stream. In parallel, the cytoplasm showed degenerative changes, suggesting indirect stress effects. Hence, the lime trees in Riga showed tolerance to the dystrophic environmental conditions enhanced by salt pollution but their leaf physiology appeared directly impacted by the accumulation of contaminants within foliage.
机译:蔓延城市内的绿色基础设施提供必要的生态系统服务,越来越受环境压力破坏。本研究的主要目的是将NaCl污染物的分配模式与石灰树的叶子造成机械上的损伤,并区分盐和其他环境压力源的影响。利用盐污染水平的野外物料在拉脱维亚的街道绿叶中,分析了盐污染物对结构和超微结构损伤的贡献,结合了不同的显微镜技术。在严重盐污染和营养不良的土壤中,街道石灰树的叶子显示叶面浓度为Na / Cl,高达13,600 / 16,750 mg kg〜(-1),但仍然是平衡的营养含量。将盐污染物分配给所有叶片组织,并优先于叶片泡沫中累积,以牺牲尤其是K和Ca的牺牲改变真空离子组合物。作为NaCl浓度的函数增加了叶蛋白细胞和液泡的尺寸,表明受阻抗蒸发物流。平行,细胞质表现出退行性变化,表明间接应力效应。因此,里加的石灰树对盐污染增强的营养不良环境条件耐受性,但它们的叶生理学因叶片内的污染物的积累而直接影响。

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