Inoculation Of Soil With Cadmium-Resistant Actinomycetes Flora Reduces Cadmium Accumulation In Rice (Oryza Sativa L.)

Shengping Xue, Xiaohuan Wang
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引用次数: 1

Abstract

- The microorganism and other amendments were immobilized in pellet carrier as microbial reverse screening model and were applied to the simulated Cd contaminated soil. Microbial flora (Streptomycete XW8, Actinomycetes XW3, ActinomycetesXW5) reduces Cd accumulation in rice when combined with biochar, humic acid and Carbon silicon functional liquid fertilizer. Microbial flora (Bacteria XW6, Actinomycetes XW3, Actinomycetes XW5) has highest TF and raises the bioavailability of Cd in soil. But Bacteria XW6 activate Cd in soil, which is a premium candidate for application in phytoremediation Cd farmland contamination. The compatibility of microbial flora had a significant effect in Cd reduction.
土壤接种抗镉放线菌群降低水稻镉积累
-将微生物及其他改进剂固定在颗粒载体中作为微生物反筛选模型,应用于模拟Cd污染土壤。与生物炭、腐植酸和碳硅功能液肥配施的微生物菌群(链霉菌XW8、放线菌XW3、放线菌xw5)降低了水稻Cd的积累。微生物菌群(细菌XW6,放线菌XW3,放线菌XW5)具有最高的TF,提高了土壤Cd的生物利用度。而XW6细菌可激活土壤中的Cd,是植物修复农田镉污染的理想候选菌。微生物菌群的相容性对Cd的还原有显著影响。
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