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Methods for Purifying Enzymes for Mycoremediation

机译:纯化用于Mycoremediation的酶的方法

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This process applies to remediation and restoration of soils contaminated by fuel, polychlorinated biphenyl wastes, etc. While there can be a general beneficial effect of microbial communities, individual plant-fungus combinations can vary in their efficacy in removal of pollutants from the environment. Selection of the most effective combination of plants and fungi is very important for achieving the desired benefits. Not all fungi are created equal, as some die off in contaminated soils. Having a set of enzymes from fungi specifically adapted to conditions in contaminated soils and use of native plant/fungal combinations is a huge advantage. Ectomycorrhizal (EM) mediated remediation of phenolic-based contamination through use of specifically adapted soil and enzymes utilizes plant/fungal combinations that are specifically adapted to conditions created by phenolic application to soils, and the abilities of EM fungi to oxidize these compounds. This platform can be adapted to other ecosystems through field assessments of the EM community in each new site.
机译:此过程适用于对被燃料,多氯联苯废物等污染的土壤的修复和恢复。虽然微生物群落可能产生普遍的有益影响,但各种植物-真菌组合从环境中去除污染物的功效可能会有所不同。选择植物和真菌的最有效组合对于获得所需的益处非常重要。并非所有真菌都能产生均等的,因为有些真菌会在受污染的土壤中死亡。从真菌中获得一组专门适应污染土壤条件的酶,并使用天然植物/真菌组合是一个巨大的优势。通过使用经过特别改造的土壤和酶,由菌根(EM)介导的酚类污染的修复利用了植物/真菌组合,该组合特别适应了通过酚类施用于土壤而产生的条件,以及EM真菌氧化这些化合物的能力。通过在每个新站点中对EM社区进行现场评估,可以将该平台适应其他生态系统。

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    《NASA Tech Briefs》 |2017年第5期|50-50|共1页
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