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Vertical Profiles of Pentachlorophenol and the Microbial Community in a Paddy Soil: Influence of Electron Donors and Acceptors

机译:稻田土壤中五氯苯酚和微生物群落的垂直剖面:电子给体和受体的影响

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摘要

Vertical variations of pentachlorophenol (PCP) dissipation and microbial community were investigated in a paddy soil with the addition of electron acceptors (NO3~-, SO4~(2-)) and donors (crop residues). Crop residues enhanced PCP dissipation by supplying dissolved organic carbon (DOC) as an electron donor, whereas NO3~- and SO4~(2-) inhibited it. The dissipation of PCP in electron donor treatments resulted in the accumulation of 3,4,5-trichIorophenol (3,4,5-TCP) except for wheat residues. The abundance and diversity of phospholipid fatty acids (PLFAs) decreased with increasing soil depth. The succession of predominant PLFAs shifted from aerobic bacteria to anaerobic bacteria when electron acceptors were changed to electron donors. The saturated/monounsaturated fatty acids (S/M) ratio increased with soil depth, which probably implied that nutrient turnover rate declined after the accumulation of 3,4,5-TCP. The results showed that the addition of electron donors and acceptors modified the microbial communities, which then further influenced the degradation pathway of PCP.
机译:研究了稻田土壤中五氯苯酚(PCP)消散和微生物群落的垂直变化,其中还添加了电子受体(NO3〜-,SO4〜(2-))和施主(作物残留)。作物残渣通过提供溶解的有机碳(DOC)作为电子供体来增强PCP的耗散,而NO3〜-和SO4〜(2-)则抑制了PCP的释放。 PCP在电子给体处理中的耗散导致3,4,5-trichIorophenol(3,4,5-TCP)的积累,除了小麦残留物。磷脂脂肪酸(PLFAs)的丰度和多样性随着土壤深度的增加而降低。当电子受体变为电子供体时,主要的PLFA的顺序从有氧细菌转变为厌氧细菌。饱和/单不饱和脂肪酸(S / M)比随土壤深度的增加而增加,这可能暗示了3,4,5-TCP积累后养分周转率下降。结果表明,电子供体和受体的加入改变了微生物群落,进而进一步影响了PCP的降解途径。

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