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壳聚糖包覆的纺织废料生物炭施用于镉污染土壤对降低土壤中镉的迁移性及其在辣木(Moringa oleifera L.)中的分布的效果。

Efficacy of chitosan-coated textile waste biochar applied to Cd-polluted soil for reducing Cd mobility in soil and its distribution in moringa (Moringa oleifera L.).

机构信息

Department of Bioinformatics and Biotechnology, Government College University, Faisalabad, 38000, Pakistan.

Cholistan Institute of Desert Studies, The Islamia University of Bahawalpur, 63100, Pakistan.

出版信息

J Environ Manage. 2021 Apr 15;284:112047. doi: 10.1016/j.jenvman.2021.112047. Epub 2021 Feb 9.

Abstract

Soil pollution with Cd has promoted serious concerns for medicinal plant quality. Amending Cd-polluted soils with textile waste biochar (TWB) coated with natural polymers can lower Cd bioavailability in them and reduce associated environmental and human health risks. In this study, we explored the impacts of solely applied TWB, chitosan (CH), their mix (TWB + CH) and TWB coated with CH (TBC) in Cd-polluted soil on Cd distribution in moringa (Moringa oleifera L.) shoots and roots as well as plant-available Cd in soil. Moreover, amendments effects on plant growth, dietary quality, and antioxidative defense responses were also assessed. Results revealed that the addition of TWB, CH, and TWB + CH in Cd-polluted soil reduced Cd distribution in shoots (56%, 66%, and 63%), roots (41%, 48%, and 45%), and plant-available Cd in soil (38%, 52%, and 49%), compared to control. Interestingly, the TBC showed significantly the topmost response for reducing Cd concentrations in shoots, roots, and soil by 73%, 54%, and 58%, respectively, relative to control. Moreover, amending Cd-polluted soil with TWB, CH, and TWB + CH depicted significantly better effects on plant growth, dietary quality, and activities of soil enzymes but the topmost response was observed with TBC treatment. Compared with control, TBC improved plant growth parameters: shoot length (81%), root length (90%), shoot fresh weight (60%), root fresh weight (76%), shoot dry weight (75%), root dry weight (68%) contents of chlorophyll-a (42%) and chlorophyll-b (74%), and soil enzyme activities: urease (130%), catalase (138%), protease (71%), cellobiohydrolase (45%), acid phosphatase (34%), peroxidase (60%), β-glucosidase (152%), chitinase (62%), and phosphomonoesterase (139%). Furthermore, TBC treatment arrested Cd-induced oxidative stress via escalating the activities of antioxidant enzymes as well as improved moringa dietary parameters (protein, tannins, lipids, alkaloids, saponins, terpenoids, flavonoids, and tocopherols contents). Such findings suggest that the TBC has an immense perspective to remediate Cd-polluted soils and prevent human health risks associated with Cd exposure through the diet.

摘要

土壤中的镉污染对药用植物的质量产生了严重影响。用天然聚合物涂覆的纺织废料生物炭(TWB)来改良 Cd 污染土壤,可以降低土壤中 Cd 的生物利用度,降低相关的环境和人类健康风险。在这项研究中,我们探索了单独施用 TWB、壳聚糖(CH)、它们的混合物(TWB+CH)以及用 CH 涂覆的 TWB(TBC)对 Cd 污染土壤中 Cd 在辣木叶(Moringa oleifera L.)地上部和根部的分布以及土壤中植物可利用 Cd 的影响。此外,还评估了改良剂对植物生长、膳食质量和抗氧化防御反应的影响。结果表明,与对照相比,在 Cd 污染土壤中添加 TWB、CH 和 TWB+CH 分别降低了 56%、66%和 63%的地上部 Cd 分布、41%、48%和 45%的根部 Cd 分布以及 38%、52%和 49%的土壤中植物可利用 Cd。有趣的是,TBC 对降低地上部、根部和土壤中的 Cd 浓度的效果最为显著,分别降低了 73%、54%和 58%。此外,与对照相比,用 TWB、CH 和 TWB+CH 改良 Cd 污染土壤对植物生长、膳食质量和土壤酶活性有明显的改善效果,但 TBC 处理的效果最为显著。与对照相比,TBC 提高了植物生长参数:地上部长度(81%)、根长(90%)、地上部鲜重(60%)、根鲜重(76%)、地上部干重(75%)、根干重(68%)叶绿素-a(42%)和叶绿素-b(74%)含量,以及土壤酶活性:脲酶(130%)、过氧化氢酶(138%)、蛋白酶(71%)、纤维二糖水解酶(45%)、酸性磷酸酶(34%)、过氧化物酶(60%)、β-葡萄糖苷酶(152%)、几丁质酶(62%)和磷酸单酯酶(139%)。此外,TBC 通过提高抗氧化酶的活性,阻止了 Cd 诱导的氧化应激,改善了辣木的膳食参数(蛋白质、单宁、脂质、生物碱、皂角苷、萜类、类黄酮和生育酚含量)。这些发现表明,TBC 具有巨大的潜力,可以通过饮食来修复 Cd 污染土壤,防止与 Cd 暴露相关的人类健康风险。

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