The Effect of Heavy Metal Speciation on Arbuscular Mycorrhizal Fungi Associated with Phoenix dactylifera L. Growing in Moroccan Urban and Peri-Urban Environments

Mohamed Radi, Karim Anzid, A. Meddich, Ali Boularbah, M. Hafidi, Ouahmane Lahcen
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Abstract

Impacts of metal pollution on arbuscular mycorrhizal fungi (AMF) in rhizopheric soils of date palms in urban and peri-urban areas were studied. The objective was to assess the impact of rhizospheric soil contamination. Various chemical species of heavy metals on the AMF spore density associated with date palms were evaluated . A collection of date palm rhizospheric soil samples from eight sites including three boulevards, three gardens and two distinct areas of the Marrakesh palm grove was under study. These samples were used for counting endomycorrhizal fungal spores, for estimating mycorrhization state of root system and for physico-chemical analyses. A five-stage sequential extraction scheme was used to evaluate the fractionation of some heavy metals like lead (Pb), cadmium (Cd), copper (Cu), zinc (Zn) and iron (Fe). Pearson’s correlation coefficients between AMF spore’s density and metal species were determined and a multiple linear regression was tested to predict AMF spore density from the chemical species content of soil. A mycorrhizal dependency of date palm was indicated, since a high frequency from 61 to 98% and a middle intensity from 10 to 47% of root colonization by AMF were recorded. The spore density from all sites was found in increasing order of boulevards, garden then palm groves. A significant cor - relation between AMF spore density and some metal species rhizospheric soil content was recorded; negative for sulfide-bound lead ( r = -0.81) and zinc ( r = -0.70) and for exchangeable fraction copper (Cu), ( r = -0.79) whereas it is positive for exchangeable fraction zinc ( r = 0.70). AMF spore density predictions from sulfide-bound Zinc and exchangeable fraction copper exhibited a good fit, with higher R 2 value (0.91, p = 0.002). Since Date palm has a mycotrophic nature, the sustainability of the microbial populations associated with their roots might be ensured by modifying some chemical forms of heavy metals like sulfide-bound zinc and exchangeable fraction copper.
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重金属物种对生长在摩洛哥城市和城市周边环境中的凤凰木丛枝菌根真菌的影响
研究了金属污染对城市和城市周边地区枣树根瘤土壤中的丛枝菌根真菌(AMF)的影响。目的是评估根瘤土壤污染的影响。评估了各种重金属化学物质对与枣树相关的 AMF 孢子密度的影响。研究收集了八个地点的椰枣根瘤土壤样本,包括三个林荫大道、三个花园和马拉喀什棕榈林的两个不同区域。这些样本用于计数内生菌根真菌孢子、估计根系的菌根状态和进行物理化学分析。采用五级顺序萃取法对一些重金属如铅(Pb)、镉(Cd)、铜(Cu)、锌(Zn)和铁(Fe)的分馏进行了评估。测定了 AMF 孢子密度与金属种类之间的皮尔逊相关系数,并测试了多元线性回归,以根据土壤中的化学种类含量预测 AMF 孢子密度。结果表明,枣椰树的菌根依赖性很强,AMF 在枣椰树根部的定殖频率从 61% 到 98% 不等,定殖强度从 10% 到 47% 不等。所有地点的孢子密度依次为林荫大道、花园和棕榈林。根据记录,AMF 孢子密度与根瘤土壤中某些金属物种的含量之间存在明显的相关性;硫化物结合铅(r = -0.81)和锌(r = -0.70)以及可交换部分铜(Cu)(r = -0.79)为负相关,而可交换部分锌(r = 0.70)为正相关。根据硫化物结合锌和可交换部分铜预测的 AMF 孢子密度拟合度较高,R 2 值较高 (0.91, p = 0.002)。由于枣椰树具有菌根性,因此可以通过改变重金属(如硫化物结合锌和可交换部分铜)的某些化学形态来确保与其根部相关的微生物种群的可持续性。
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