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Assessment of edibility and effect of arbuscular mycorrhizal fungi on Solarium melongena L. grown under heavy metal(loid) contaminated soil

机译:丛枝菌根真菌对重金属(金属)污染土壤下生长的日光浴的食用性和作用的评价

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Arbuscular mycorrhizal fungi (AMF) aids in plant establishment at heavy metal(loid) (HM) contaminated soils, strengthening plant defense system along with promoting growth. A pot experiment was carried out to evaluate the effect of AMF on eggplants grown under HM stress. Further, the potential health risks of HM exposure to the humans via dietary intake of eggplant were also estimated. Results showed that AMF application improved growth, biomass and antioxidative defense response of plants against HM stress. Significant difference (p = 0.001) in parameters under study was found on increasing metal dose and on application of AMF. Among metal (loid)s maximum uptake was recorded for Pb (29.64 mg kg(-1) in roots; 23.08 mg kg(-1) in shoot) followed by As (3.84 mg kg(-1) in roots; 8.20 mg kg(-1) in shoot) and, Cd (0.96 mg kg(-1) in roots; 2.12 mg kg(-1) in shoot). Based on the accumulation of HM in edible part, Hazard Quotient (HQ) was calculated. HQ was found to be 1 for Pb, which highlights the risks associated with consumption of Eggplants grown on Pb contaminated soil. However this potential, which was further enhanced by application of AMF, can be harnessed for on-site remediation of Pb contaminated soils. The content of Cd and As in the edible part was found to be within safe limits (HQ 1) when compared to chronic reference dose stated by USEPA.
机译:丛枝菌根真菌(AMF)有助于在受重金属(HM)污染的土壤上建立植物,增强植物防御系统并促进生长。进行盆栽实验以评估AMF对在HM胁迫下生长的茄子的影响。此外,还估计了通过饮食中茄子摄入HM对人类的潜在健康风险。结果表明,AMF施用改善了植物对HM胁迫的生长,生物量和抗氧化防御反应。在增加的金属剂量和使用AMF时,发现所研究参数的显着差异(p <= 0.001)。在金属(金属)的最大吸收量中,铅的最大吸收量为(根部为29.64 mg kg(-1);枝条中为23.08 mg kg(-1)),其次为As(根部为3.84 mg kg(-1); 8.20 mg kg (-1)在芽中)和Cd(根中0.96 mg kg(-1);在芽中2.12 mg kg(-1))。基于可食部分中HM的积累,计算出危险商(HQ)。铅的HQ值> 1,这突出表明了与食用被铅污染的土壤上种植的茄子有关的风险。但是,可以通过应用AMF进一步增强这种潜力,以便现场修复被Pb污染的土壤。与美国环保局规定的长期参考剂量相比,可食部分中的镉和砷含量在安全限度内(HQ <1)。

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