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首页> 外文期刊>Ecotoxicology and Environmental Safety >Combined biochar and metal-immobilizing bacteria reduces edible tissue metal uptake in vegetables by increasing amorphous Fe oxides and abundance of Fe- and Mn-oxidising Leptothrix species
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Combined biochar and metal-immobilizing bacteria reduces edible tissue metal uptake in vegetables by increasing amorphous Fe oxides and abundance of Fe- and Mn-oxidising Leptothrix species

机译:结合生物炭和金属固定细菌通过增加无定形的Fe氧化物和丰富的Fe和Mn-olidis leptothrix物种来减少蔬菜中的可食用组织金属摄取

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摘要

In this study, a highly effective combined biochar and metal-immobilizing bacteria (Bacillus megaterium H3 and Serratia liquefaciens CL-1) (BHC) was characterized for its effects on solution Pb and Cd immobilization and edible tissue biomass and Pb and Cd accumulation in Chinese cabbages and radishes and the mechanisms involved in metal-polluted soils. In the metal-containing solution treated with BHC, the Pb and Cd concentrations decreased, while the pH and cell numbers of strains H3 and CL-1 increased over time. BHC significantly increased the edible tissue dry weight by 17-34% and reduced the edible tissue Pb (0.32-0.46 mg kg(-1)) and Cd (0.16 mg kg(-1)) contents of the vegetables by 24-45%. In the vegetable rhizosphere soils, BHC significantly decreased the acid-soluble Pb (1.81-2.21 mg kg(-1)) and Cd (0.40-0.48 mg kg(-1)) contents by 26-47% and increased the reducible Pb (18.2-18.8 mg kg(-1)) and Cd (0.38-0.39 mg kg(-1)) contents by 10-111%; while BHC also significantly increased the pH, urease activity by 115-169%, amorphous Fe oxides content by 12-19%, and relative abundance of gene copy numbers of Fe- and Mn-oxidising Leptothrix species by 28-73% compared with the controls. These results suggested that BHC decreased edible tissue metal uptake of the vegetables by increasing pH, urease activity, amorphous Fe oxides, and Leptothrix species abundance in polluted soil. These results may provide an effective and eco-friendly way for metal remediation and reducing metal uptake in vegetables by using combined biochar and metal-immobilizing bacteria in polluted soils.
机译:在本研究中,具有高效的生物炭和金属固定细菌(Bacillus Megirlus H3和Serratia Liquefaciens Cl-1)(BHC)的作用是其对溶液Pb和Cd固定化和可食用组织生物量和Pb和Cd积累的影响卷心菜和萝卜以及金属污染土壤的机制。在用BHC处理的含金属的溶液中,Pb和Cd浓度降低,而菌株H3和Cl-1的pH和细胞数随时间而增加。 BHC显着提高了可食用组织干重17-34%,并还原可食用组织Pb(0.32-0.46mg kg(-1))和蔬菜的镉(0.16mg kg(-1))含量为24-45% 。在植物根际土壤中,BHC显着降低了酸溶性Pb(1.81-2.21mg kg(-1))和cd(0.40-0.48mg kg(-1))含量,含量为26-47%并增加了可降低的Pb( 18.2-18.8 mg kg(-1))和cd(0.38-0.39mg kg(-1))含量为10-111%;虽然BHC也将pH,脲酶活性115-169%的pH值,脲酶活性显着增加12-19%,以及与含量28-73%的Fe和Mn-oldising leptothrix物种的相对丰富的基因拷贝数。控制。这些结果表明,通过增加pH,脲酶活性,无定形的Fe氧化物和污染土壤中的甲壳螺纹物种丰度,BHC降低了蔬菜的可食用组织金属吸收。这些结果可以通过使用污染的土壤中的组合生物炭和金属固定细菌来提供有效和生态的金属修复和降低蔬菜的金属摄取方法。

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