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首页> 外文期刊>Ecotoxicology and Environmental Safety >Inoculation of soil with an Isoproturon degrading microbial community reduced the pool of 'real non-extractable' Isoproturon residues
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Inoculation of soil with an Isoproturon degrading microbial community reduced the pool of 'real non-extractable' Isoproturon residues

机译:用异丙隆降解微生物群落接种土壤可减少“真正的不可提取的”异丙隆残留物库

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摘要

During pesticides degradation, biogenic non-extractable residues ("apparent NER") may not share the same environmental fate and risks with the "real NER" that are bound to soil matrix. It is not clear how microbial community (MC) inoculation for pesticides degradation would influence the NER composition. To investigate degradation efficiency of pesticides Isoproturon (IPU) and NER composition following MC inoculation, clay particles harboring MC that contains the IPU degrading strain, Sphingomonas sp., were inoculated into soil receiving C-14-labeled IPU addition. Mineralization of IPU was greatly enhanced with MC inoculation that averagely 55.9% of the applied C-14-IPU was consumed up into (CO2)-C-14 during 46 days soil incubation. Isoproturon degradation was more thorough with MC than that in the control: much less amount of metabolic products (4.6% of applied IPU) and NER (35.4%) formed in MC treatment, while the percentages were respectively 30.3% for metabolites and 49.8% for NER in the control. Composition of NER shifted with MC inoculation, that relatively larger amount of IPU was incorporated into the biogenic "apparent NER" in comparison with "real NER". Besides its well-recognized role on enhancing mineralization, MC inoculation with clay particles benefits soil pesticides remediation in term of reducing "real NER" formation, which has been previously underestimated.
机译:在农药降解过程中,不可提取的生物残留物(“表观NER”)可能与绑定到土壤基质的“真实NER”具有不同的环境命运和风险。尚不清楚接种农药降解的微生物群落(MC)接种将如何影响NER的组成。为了研究农药接种异丙基异隆隆(IPU)和NER组合物在MC接种后的降解效率,将含有MC的含有IPU降解菌Sphingomonas sp。的粘土颗粒接种到接受C-14标记IPU添加的土壤中。 MC接种大大增强了IPU的矿化作用,在46天的土壤培养过程中,平均55.9%的C-14-IPU被消耗成(CO2)-C-14。异丙肾上腺素对MC的降解要比对照组更彻底:在MC治疗中形成的代谢产物(占应用IPU的4.6%)和NER的数量要少得多,而代谢产物的百分比分别为30.3%和49.8%。 NER在控件中。 NER的组成随MC接种而改变,与“真正的NER”相比,相对较大量的IPU被掺入了生物“表观NER”中。除了公认的增强矿化作用外,用粘土颗粒进行MC接种还可以减少“实际NER”的形成,这对土壤杀虫剂的修复有益,而这在以前被低估了。

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