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1.
采用滇池水华蓝藻中提取提纯的微囊藻毒素(microcystins,MCs)作为微生物生长的碳源和氮源,从长期暴露于蓝藻水华的滇池底泥中,通过从含低浓度到高浓度MCs的逐步培养驯化,获得了高效降解MCs的微生物混合菌群,在初始MC-RR和LR浓度大约分别为50 mg/L和30 mg/L下,3 d内可将MCs全部降解.进一步活性研究显示,不同含碳和含氮化合物虽然能够促进混合微生物菌群的生长,但对降解MCs却无明显的促进作用,说明MCs既可以作为微生物生长的碳源,又可以作为微生物生长的氮源,在富含有机物的天然水体中并不一定能够促进微生物对MCs的生物降解.  相似文献   

2.
滇池底泥微生物菌群对微囊藻毒素的生物降解   总被引:9,自引:0,他引:9  
采用滇池水华蓝藻中提取提纯的微囊藻毒素(microcystins,MCs)作为微生物生长的碳源和氮源,从长期暴露于蓝藻水华的滇池底泥中,通过从含低浓度到高浓度MCs的逐步培养驯化,获得了高效降解MCs的微生物混合菌群,在初始MC-RR和LR浓度大约分别为50mg/L和30mg/L下,3d内可将MCs全部降解。进一步活性研究显示,不同含碳和含氮化合物虽然能够促进混合微生物菌群的生长,但对降解MCs却无明显的促进作用,说明MCs既可以作为微生物生长的碳源,又可以作为微生物生长的氮源,在富含有机物的天然水体中并不一定能够促进微生物对MCs的生物降解。  相似文献   

3.
微囊藻毒素-LR降解菌的筛选及降解特性研究   总被引:1,自引:0,他引:1  
从上海市淀山湖表层水体中筛选分离出了1株降解微囊藻毒素-LR(MC-LR)的细菌并研究了其降解特性。根据细胞形态结构、生理生化特征及其16S rDNA基因序列分析,鉴定分离菌株DHU-28(GenBank序列登录号为HM047512)属嗜麦芽寡养单胞菌(Stenotrophomonas maltophilia)。微囊藻毒素降解实验结果表明,该菌株能在以MC-LR为唯一碳源、氮源的无机盐培养基中生长,6 d内可将初始质量浓度为15 mg/L的MC-LR降解为8.12 mg/L,降解效率达到45.9%。菌株DHU-28的最适生长温度是30℃,最适生长pH为7.0。酵母粉、蛋白胨、葡萄糖等营养物质可以明显促进菌株对MC-LR的降解效率,尤其是加入50 mg/L酵母粉后,6 d降解率达到63.2%。  相似文献   

4.
从农药厂阿特拉津生产车间污泥中分离出菌种AT菌,进行了系列降解实验.不同温度的降解实验表明,在4~20℃的实验温度范围内,AT菌能够降解代谢污染质,并随温度的升高,降解能力增强.20℃时降解率为38.84%;AT菌在外加氮源、碳源及以阿特拉津为惟一碳源和氮源等条件时对农药污染质阿特拉津均具有降解能力,且在以阿特拉津为惟一氮源(外加碳源)条件下的降解效果最好,此时的降解率为30.39%.  相似文献   

5.
为研究真菌对微囊藻毒素的降解作用,以白腐菌S.commune为降解菌,微囊藻毒素-LR(MC-LR)为降解目标进行生物降解,考察了白腐菌预培养方式及降解过程中的培养方式、充氧方式、温度、初始pH以及MC-LR初始浓度对降解效果的影响.结果表明,白腐菌可有效降解MC-LR,经液体预培养白腐菌对MC-LR的降解效果好于固体预培养,白腐菌静置培养过程中每天充入纯氧1min有助于MC-LR的降解,白腐菌降解MC-LR的最佳初始pH为4.5,适宜温度为30~35℃.白腐菌对MC-LR的降解能力随MC-LR初始浓度的增加而降低.在最佳条件下,当MC-LR初始质量浓度为1 mg/L时,其完全降解需要2d;当MC-LR初始质量浓度为15 mg/L时,其完全降解需要7d.高浓度MC-LR(30 mg/L以上)会对白腐菌生长产生抑制作用.MC-LR降解中间产物的具体结构尚不清楚,有待未来深入分析研究.  相似文献   

6.
一株毒死蜱降解菌的分离鉴定及降解性能研究   总被引:4,自引:0,他引:4  
从农药厂废水处理池污泥中分离到一株对毒死蜱有较强降解能力的菌株CH3,通过生理生化试验初步将该菌鉴定为哈夫尼菌属(Hafnia sp.)。CH3能以毒死蜱为唯一碳源生长,在温度为30℃,pH为7.0,毒死蜱初始浓度为200 mg/L的条件下,历时6 d,毒死蜱的降解率可达78.5%。菌株最适生长温度为37℃,最适pH值为7.0,最适降解浓度为200 mg/L。对碳、氮源利用广泛,最佳碳源为蔗糖和葡萄糖,对氮源选择性不高,在无机氮源和有机氮源中均能较好地生长。  相似文献   

7.
高效木质纤维素分解复合菌系降解稻草特性的研究   总被引:2,自引:0,他引:2  
以1%稻草为惟一碳源,利用间歇实验,在50℃的静置培养条件下,对特异驯化获得的一组高效木质纤维素复合菌系的生长及降解特性进行了深入的探讨。实验结果表明,复合菌系的优势菌是杆菌,其生长曲线显示典型的3阶段,即0~108 h的对数生长期、108~144 h的稳定期、144~216 h的衰亡期。当发酵结束时,稻草的降解效率达到75%,90%以上的产物是乙酸,其次是少量的乙醇、丁酸和丙酸,这种发酵类型为下游两相厌氧消化的产甲烷相的稳定、高效运行提供重要物质基础。  相似文献   

8.
以原油为唯一碳源,从长期被石油污染土壤中筛选出6株原油降解菌SY1~SY6,通过单因素实验研究初始pH、温度、充氧量(摇床转数)、盐浓度、氮源和磷源等环境因素和营养条件对各菌株生物降解原油的影响。实验结果表明:6株原油降解菌在初始pH7~9,温度30℃,摇床转速180 r/min时生长良好,且能有效地降解石油类污染物,其平均降解率为50%以上。6菌株在盐浓度在1%时生长良好,SY3菌和SY4菌能在盐浓度10%以上生长,具有一定的耐盐能力。同时,6菌株以氯化铵(NH4Cl)为氮源,磷酸氢二钾(K2HPO4)和磷酸二氢钾(KH2PO4)的混合物(2∶1)为磷源时生长良好,因此可作为各菌生长的最适氮源和磷源。研究结果可以为含油废水的处理提供微生物基础。  相似文献   

9.
采用摇瓶实验考察固定化培养黄孢原毛平革菌(Phanerochaete chrysosporium)对磺胺甲噁唑(SMX)的降解效果并对抗生素降解条件进行优化。结果表明,黄孢原毛平革菌在固定化培养后对SMX的降解能力有所提高,10 d后培养液中抗生素去除率达到了100%,而游离培养液中去除率为74%。固定化黄孢原毛平革菌降解磺胺甲噁唑的较优碳源和氮源分别是葡萄糖和酒石酸铵,初始p H范围在3.0~5.0之间、培养温度为30~40℃时较适宜。黄孢原毛平革菌对磺胺甲噁唑的降解受碳源种类影响较大,而在限氮条件下氮源的差异对其影响较小。  相似文献   

10.
石油污染土壤中芘高效降解菌群的筛选及降解特性研究   总被引:3,自引:0,他引:3  
从长期受石油污染土壤中驯化筛选到能以芘为惟一碳源生长的混合菌群GP3,其主要由假单胞菌株GP3A(Pseudomonas sp.)和菌株GP3B(Pandoraea pnomenusa)组成.采用摇瓶振荡培养方法,研究了不同环境条件对混合菌GP3降解芘效能的影响.结果表明,在30℃,150 r/min振荡培养下,混合菌GP3对15 mg/L芘的7 d降解率为90.6%.混合菌GP3降解芘的最适宜温度为35℃,最佳pH值为6.2.加入低浓度葡萄糖(100 mg/L)或菲(10 mg/L)作为共代谢底物,均可提高GP3对芘的降解率.混合菌对芘的降解速率(PDR)与芘的初始浓度呈正相关.研究重金属离子胁迫下GP3对芘的降解时发现,10 ms/L Zn2 的存在对芘降解效能影响较小,Cu2 对芘的降解有抑制作用,Cd2 对混合菌GP3有很强的毒性.  相似文献   

11.
Yan H  Wang J  Chen J  Wei W  Wang H  Wang H 《Chemosphere》2012,87(1):12-18
Enzymes encoded by genes biodegrading microcystins (MCs) can help reveal the function of genes and biodegradation pathway of MCs. Here the first and important gene (USTB-05-A, 1,008 bp) involved in biodegradation of microcystin-RR (MC-RR) was cloned from Sphingopyxis sp. USTB-05 and firstly expressed in Escherichia coli BL21 (DE3) with an expression vector of pGEX4T-1 successfully. The nucleotide sequences of cloned USTB-05-A possessed 92.5% homology to that of mlA reported in Sphingomonas sp. strain ACM-3962. The deduced amino acid sequences containing the cleavage sites of 26th (alanine) and 27th (leucine) showed 83% identical to that of MlrA. The cell-free extract (CE) of recombinant E. coli BL21 (DE3) containing USTB-05-A had high activity for biodegrading MC-RR. Initial MC-RR of 40 mg L−1 was completely biodegraded under total protein of 350 mg L−1 within 0.25 h. A product derived from MC-RR appeared distinctly with the decrease of MC-RR peak on the profile of HPLC. The product (m/z 1056.5) had molecular weight of 18 higher than that of MC-RR (m/z 1038.7). The findings provided the positive evidences that biodegradation of MC-RR began with the breakage of cyclic MC-RR and then it was converted to linear MC-RR as the first product catalyzed by first enzyme of Sphingopyxis sp. USTB-05.  相似文献   

12.
原核小球藻USTB-01去除化肥厂废水中总氮的研究   总被引:1,自引:0,他引:1  
采用1株异养原核小球藻USTB-01对化肥厂废水中总氮的去除进行了研究。结果表明,添加一定量的磷酸盐和碳酸钠特别是葡萄糖分别作为磷、无机碳和有机碳源,不仅可以明显促进原核小球藻USTB-01的生长,而且可以大幅度提高废水的总氮去除效率。在4 d时间内原核小球藻USTB-01的生长从OD680 nm0.5增加到3.6,提高到7倍,而废水中总氮的浓度从125 mg/L降低到10.3 mg/L,去除率达到了93.1%,处理后的废水可以达标排放。不仅在高含氮废水的处理,而且在利用废水中的氮培养原核小球藻USTB-01的废水资源化利用方面均具有重要的意义。  相似文献   

13.
研究了培养基成分种类及其用量对菌产微生物絮凝剂的影响。结果表明,较高的C/N比对菌产絮凝剂有利,碳源中的蔗糖是菌株Aeromonassp.N11产絮凝剂的良好碳源,氮源以采用复合氮源为佳。培养基中加入酵母膏有利于絮凝剂的产生。NaCl能够促进所产絮凝剂的絮凝活性,碳源蔗糖和氮源脲对菌产絮凝剂的影响最大。利用正交实验得出产絮凝剂培养基的最佳配比为蔗糖20g/L,酵母膏08g/L,脲05g/L,硫酸胺05g/L,NaCl7g/L。  相似文献   

14.
分别采用醋酸钠、甘油、乙醇和葡萄糖作为外加碳源,研究不同碳源对含盐废水短程硝化反硝化的影响.结果表明:(1)利用醋酸钠作为碳源,逐步增加NaCl盐度可以实现短程硝化反硝化,TN平均去除率高于95%.当NaCl盐度为14.2 g/L时,采用醋酸钠、甘油、乙醇和葡萄糖作为碳源时,NO2- -N的累积率分别为98.7%、86...  相似文献   

15.
Atrazine is a persistent organic pollutant in the environment which affects not only terrestrial and aquatic biota but also human health. Since its removal from the environment is needed, atrazine biodegradation is achieved in the present study using the bacterium Rhodococcus sp. BCH2 isolated from soil, long-term treated with atrazine. The bacterium was capable of degrading about 75 % atrazine in liquid medium having pH 7 under aerobic and dark condition within 7 days. The degradation ability of the bacterium at various temperatures (20–60 °C), pH (range 3–11), carbon (glucose, fructose, sucrose, starch, lactose, and maltose), and nitrogen (ammonium molybdate, sodium nitrate, potassium nitrate, and urea) sources were studied for triumph optimum atrazine degradation. The results indicate that atrazine degradation at higher concentrations (100 ppm) was pH and temperature dependent. However, glucose and potassium nitrate were optimum carbon and nitrogen source, respectively. Atrazine biodegradation analysis was carried out by using high-performance thin-layer chromatography (HPTLC), Fourier transform infrared spectroscopy (FTIR), and liquid chromatography quadrupole time-of-flight (LC/Q-TOF-MS) techniques. LC/Q-TOF-MS analysis revealed formation of various intermediate metabolites including hydroxyatrazine, N-isopropylammelide, deisopropylhydroxyatrazine, deethylatrazine, deisopropylatrazine, and deisopropyldeethylatrazine which was helpful to propose biochemical degradation pathway of atrazine. Furthermore, the toxicological studies of atrazine and its biodegraded metabolites were executed on earthworm Eisenia foetida as a model organism with respect to enzymatic (SOD and Catalase) antioxidant defense mechanism and lipid peroxidation studies. These results suggest innocuous degradation of atrazine by Rhodococcus sp. BCH2 in nontoxic form. Therefore the Rhodococcus sp.BCH2 could prove a valuable source for the eco-friendly biodegradation of atrazine pesticide.  相似文献   

16.
4,5,6-Trichloroguaiacol (4,5,6-TCG) is a recalcitrant organochlorine compound produced during pulp bleaching and a potential environmental hazard in paper mill effluents. We report here the identification by biochemical tests and molecular biological analysis, using 16S ribotyping, of a 4,5,6-TCG-degrading bacterium, identified as a strain of Bacillus subtilis that is most closely related according to the phylogenetic analysis to B. subtilis strain Lactipan (alignment score 99%). Biodegradation of 4,5,6-TCG by this organism in a mineral salts medium was shown to occur only when the inoculum was composed of cells in the stationary phase of growth and to be accelerated by an additional carbon source, such as glucose, sucrose, glycerol or molasses. An additional nitrogen source (as ammonium sulfate) did not affect the rate of 4,5,6-TGC removal. No plasmids were detected in the bacterial cells. This is the first strain of B. subtilis which degrades chlorophenols and shows that 4,5,6-TCG is not degraded by cometabolism and that the gene encoding this characteristic is probably located on the chromosome. The lack of requirement for additional nitrogen source, the ability to enhance biodegradation by adding cheap carbon sources such as molasses, and the fact the trait is likely to be stable since it is encoded on the cell chromosome, are all characteristics that make the organism an attractive possibility for treatment of wastes and environments polluted with organochlorine compounds.  相似文献   

17.
研究了分别以葡萄糖和乙酸钠为碳源时多点交替进水阶式A2/O(CMICAO)工艺氮磷的去除效果,以及在不同进水C/N比时各进水量分配对脱氮除磷效果的影响.结果表明,在相同的进水COD浓度下,乙酸钠比葡萄糖更适合作为碳源,更能提高脱氮除磷效率.以葡萄糖为碳源时,COD为200 mg/L、C/N比为5、缺氧池与厌氧池进水配比为1∶2时,出水COD、TN、氨氮和TP浓度分别为28.5、10.8、2.1和0.5 mg/L,均达到国家一级A排放标准.若采用葡萄糖作为碳源,投加量以使进水C/N比为5~7.5为宜,外加碳源时缺氧池与厌氧池进水分配比可统一采用1∶1.  相似文献   

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