The effect of pesticide napropamide (N,N-diethyl-2-(1-naphthalenyloxy) propanamide) on soil microorganisms for long-term (56 d) was assessed by monitoring changes in soil microbial biological responses. Soils we...The effect of pesticide napropamide (N,N-diethyl-2-(1-naphthalenyloxy) propanamide) on soil microorganisms for long-term (56 d) was assessed by monitoring changes in soil microbial biological responses. Soils were treated with napropamide at 0, 2, 10, 20, 40, and 80 mg/kg soil and sampled at intervals of 1, 3, 7, 14, 28, 42, and 56 d. The average microbial biomass C declined in napropamide-treated soils as compared to control. The same trend was observed on microbial biomass N after napropamide application. We also determined the basal soil respiration (BSR) and observed a high level in soils treated with napropamide during the first 7 d of experiment. But with the passage of incubation time, BSR with napropamide decreased relatively to control. Application of napropamide at 2-80 mg/kg soil had inhibitory effects on the activity of urease and invertase. Activity of catalase was enhanced during the initial 7 d of napropamide application, but soon recovered to the basal level. The depressed enzyme activities might be due to the toxicity of napropamide to the soil microbial populations. To further understand the effect of napropamide on microbial communities, a PCR- DGGE-based experiment and cluster analysis of 16S rDNA community profiles were performed. Our analysis revealed an apparent difference in bacterial-community composition between the napropamide treatments and control. Addition of napropamide apparently increased the number of bands during the 7-14 d of incubation. These results imply that napropamide-induced toxicity was responsible for the disturbance of the microbial populations in soil.展开更多
为探讨酰胺类除草剂敌草胺的微生物降解机理和土壤中敌草胺降解的生物强化性能,从长期使用敌草胺的烟田土壤中分离到一株敌草胺降解细菌菌株,命名为LGY06.经形态特征、生理生化特性及16S r DNA序列分析将其鉴定为蜡状芽孢杆菌.在纯培养...为探讨酰胺类除草剂敌草胺的微生物降解机理和土壤中敌草胺降解的生物强化性能,从长期使用敌草胺的烟田土壤中分离到一株敌草胺降解细菌菌株,命名为LGY06.经形态特征、生理生化特性及16S r DNA序列分析将其鉴定为蜡状芽孢杆菌.在纯培养条件下,菌株LGY06对敌草胺的降解符合一级动力学特征,7 d内对50 mg·L^(-1)敌草胺降解率达到75.7%;LGY06降解敌草胺的最适温度和最适p H值分别为35℃和8.0.通过气相色谱-质谱鉴定了菌株LGY06降解敌草胺的降解产物并分析了其降解途径,α-萘酚和丙酰胺是主要的降解产物,LGY06对敌草胺的作用方式主要有脱烷基、氧化(或水解),为矿化过程.室内模拟条件下,LGY06能有效促进土壤中敌草胺残留的降解,与未接种灭菌土、非根际土和根际土相比,敌草胺在接种LGY06土壤中的降解半衰期分别缩短了79.5%、36.6%和41.1%.展开更多
基金supported by the National Natural Science Foundation of China (No. 20777037)
文摘The effect of pesticide napropamide (N,N-diethyl-2-(1-naphthalenyloxy) propanamide) on soil microorganisms for long-term (56 d) was assessed by monitoring changes in soil microbial biological responses. Soils were treated with napropamide at 0, 2, 10, 20, 40, and 80 mg/kg soil and sampled at intervals of 1, 3, 7, 14, 28, 42, and 56 d. The average microbial biomass C declined in napropamide-treated soils as compared to control. The same trend was observed on microbial biomass N after napropamide application. We also determined the basal soil respiration (BSR) and observed a high level in soils treated with napropamide during the first 7 d of experiment. But with the passage of incubation time, BSR with napropamide decreased relatively to control. Application of napropamide at 2-80 mg/kg soil had inhibitory effects on the activity of urease and invertase. Activity of catalase was enhanced during the initial 7 d of napropamide application, but soon recovered to the basal level. The depressed enzyme activities might be due to the toxicity of napropamide to the soil microbial populations. To further understand the effect of napropamide on microbial communities, a PCR- DGGE-based experiment and cluster analysis of 16S rDNA community profiles were performed. Our analysis revealed an apparent difference in bacterial-community composition between the napropamide treatments and control. Addition of napropamide apparently increased the number of bands during the 7-14 d of incubation. These results imply that napropamide-induced toxicity was responsible for the disturbance of the microbial populations in soil.