Botanical Institute, University of Cologne, Zülpicher Str. 47b, D-50674 Cologne, Germany.
Chemosphere. 2013 Nov;93(9):1844-55. doi: 10.1016/j.chemosphere.2013.06.039. Epub 2013 Jul 13.
Violets from metal-enriched soils have controversially been described as both heavy-metal accumulators and excluders in the literature. The present study solves the issue for violets of the section Melanium (zinc violets, Viola lutea ssp. calaminaria and V. lutea ssp. westfalica; hartsease or wild pansy, Viola tricolor; and mountain pansy, V. lutea). The aims were to determine the concentrations of heavy metals in the soil and in the roots and shoots of field-collected plants, to evaluate the potential impact of colonisation by arbuscular mycorrhizal fungi on heavy-metal concentrations in the plant tissues, and to quantitatively define the localisation of the elements in root cross-sections. When these violets grow in low-metal soils, higher concentrations of the heavy metals were found in the roots and shoots than in the soil, whereas the opposite was seen in samples from high-metal soils. Under all field conditions examined, the roots of all of these species were colonised by arbuscular mycorrhizal fungi. However, V. tricolor was marginally colonised when the concentrations of Zn and P were higher in the soil. Determination of the spatial distribution of the elements in root cross-sections of these violets indicates tissue-specific deposition of elements within the vascular tissue, the cortex, and the rhizodermis. These data indicate that violets of the section Melanium are heavy-metal excluders.
从富含金属的土壤中生长的紫罗兰在文献中被争议性地描述为重金属积累者和排斥者。本研究解决了锌堇菜亚属(堇菜,黄花堇菜亚种和黄花堇菜亚种。西法利亚,三色堇;和山地堇菜,黄花堇菜)部分的紫罗兰的问题。目的是确定土壤中和野外采集植物的根和茎中重金属的浓度,评估丛枝菌根真菌定殖对植物组织中重金属浓度的潜在影响,并定量定义元素在根横截面上的定位。当这些紫罗兰生长在低金属土壤中时,与土壤相比,根和茎中的重金属浓度更高,而在高金属土壤的样本中则相反。在所有检查的野外条件下,所有这些物种的根都被丛枝菌根真菌定殖。然而,当土壤中的 Zn 和 P 浓度较高时,三色堇则略有定殖。这些紫罗兰的根横截面上元素的空间分布的测定表明,元素在维管束组织、皮层和根表皮内的组织特异性沉积。这些数据表明,堇菜属的紫罗兰是重金属排斥者。