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首页> 外文期刊>Chemosphere >Reclamation competence of Crotalaria juncea with the amalgamation and influence of indigenous bacteria on a waste dump of bauxite mine
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Reclamation competence of Crotalaria juncea with the amalgamation and influence of indigenous bacteria on a waste dump of bauxite mine

机译:Crotalaria Juncea与土着细菌对铝土矿废物垃圾堆的融合和影响的回收能力

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The accumulated bauxite mine soil had an acidic pH of 5.52 +/- 0.12 and more heavy metals such as Cr, Cd, Zn, and Pb, which can cause severe soil and water pollution to the nearby farmlands and water reservoirs. Hence, the work was designed to find the possibility of reclamation of bauxite mine soil through Crotalaria juncea with the amalgamation of native metal degrading bacterial isolates. Out of 15 bacterial cultures, only 2 isolates (B3 and B14) showed excellent metal tolerance (for up to 750 mg L-1), solubilizing (15.27-38.7 mg kg(-1)) (including phosphate: 47.4 +/- 1.79%), and degrading potential (22.8 +/- 0.89 to 31.5 +/- 1.6%) than the others. These B3 and B14 isolates were recognized as B. borstelensis UTM105 (1432 bp) and B. borstelensis AK2 (1494 bp) through molecular characterization. These isolates have produced a metal stress response protein (205-43 KDa molecular weight protein) during metal stress conditions. The phytoremediation competence of C. juncea under the influence of these bacterial isolates was assessed with various treatment (I-IV) schemes. The treatment IV (C. juncea with two bacterial isolates) showed substantial physiological and biochemical results compared with the control and the other treatments. The phytoremediation competence of C. juncea was also effective in treatment IV than the others. It reduced and extracted a reasonable quantity of metals from the bauxite mine soil. The intact results accomplished that these native metals tolerant, solubilizing, and degrading bacterial isolates, could be used as optimistic bacterial candidates in combination with C. juncea for the effective reclamation of metal enriched bauxite mine soil. (C) 2021 Elsevier Ltd. All rights reserved.
机译:积聚的铝土矿矿山土壤具有5.52 +/- 0.12和更重金属的酸性pH,如Cr,Cd,Zn和Pb,这可能导致附近的农田和水库的严重土壤和水污染。因此,该作品旨在通过CrotalaRia Juncea与天然金属降解细菌分离株的融合来找到铝土矿矿井土壤回收的可能性。在15种细菌培养物中,仅2分离物(B3和B14)显示出优异的金属耐受性(适用于高达750mg L-1),溶解(15.27-38.7mg kg(-1))(包括磷酸盐:47.4 +/- 1.79 %),降低潜力(22.8 +/- 0.89至31.5 +/- 1.6%)。这些B3和B14分离物通过分子表征被认为是B.Borstelensis UTM105(1432bp)和B.Borstelensis Ak2(1494bp)。这些分离物在金属胁迫条件下产生了金属应激响应蛋白(205-43kDa分子量蛋白)。通过各种治疗(I-IV)方案评估在这些细菌分离株的影响下C. juncea的植物修复能力。与对照和其他治疗相比,治疗IV(具有两种细菌分离物的juncea)显示出实质性的生理生化结果。 C. juncea的植物修复能力也与其他人有效。它减少并从铝土矿矿山土壤中提取了合理量的金属。完整的结果实现了,这些本地金属耐受,溶解和降解细菌分离物可以用作乐观的细菌候选,与C. juncea联合用于金属富含金属富含铝土矿土壤的有效填写。 (c)2021 elestvier有限公司保留所有权利。

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