Aix Marseille Univ, IRD, LPED, Marseille, France.
Fédération de Recherche ECCOREV N° 3098, Aix Marseille Univ, CNRS, Aix-en-Provence, France.
Sci Rep. 2022 Jun 15;12(1):10033. doi: 10.1038/s41598-022-14139-4.
Soil contamination pattern due to industrial activities often leads to high concentrations of potentially toxic elements (PTE) decreasing with depth. This spatial heterogeneity of the soil contamination may have significant consequences on the soil properties and soil living communities. We evaluated the effects of both surface and solum soil contamination heterogeneity on Coronilla juncea L. (Fabaceae) functional traits in field conditions and the phytostabilization potential of this species. Plant and soil samples were collected on 3 sites along a PTE contamination gradient. The correlations between PTE concentration in plant and soil samples at 2 depths, physico-chemical properties of soil, plant biomass and soil microbial activity were tested. Field measurements highlight a decreasing PTE concentration with soil depth in addition to an important surface heterogeneity of As, Cu, Pb, Sb and Zn soil concentrations. Root PTE concentrations in C. juncea did not follow soil PTE concentrations. Concentrations of PTE in the root parts were higher than those of the aerial parts. Low PTE translocation and root symbioses with microorganisms suggest that this native plant species may play a role as engineer species with positive implications for the phytostabilization of Mediterranean PTE contaminated soils and their ecological restoration.
由于工业活动造成的土壤污染模式通常会导致潜在有毒元素(PTE)的浓度随着深度的增加而降低。这种土壤污染的空间异质性可能对土壤性质和土壤生物群落产生重大影响。我们评估了表层和表土土壤污染异质性对田间条件下冠状羽扇豆(豆科)功能特性的影响,以及该物种的植物稳定化潜力。在沿 PTE 污染梯度的 3 个地点采集了植物和土壤样本。测试了植物和土壤样本中 PTE 浓度与 2 个深度、土壤理化性质、植物生物量和土壤微生物活性之间的相关性。田间测量结果突出表明,除了 As、Cu、Pb、Sb 和 Zn 土壤浓度的重要表面异质性外,PTE 浓度随土壤深度的增加而降低。冠状羽扇豆的根 PTE 浓度与土壤中的 PTE 浓度不一致。PTE 在根部分的浓度高于地上部分的浓度。低 PTE 转运和与微生物的根共生关系表明,这种本地植物物种可能作为工程物种发挥作用,对地中海 PTE 污染土壤的植物稳定化及其生态恢复具有积极意义。