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1.
从长期受六六六污染的土壤中分离得到一株能以HCH为唯一碳源的高效降解菌株 BHC_A。通过对其主要生理生化特征分析,以及16S rDNA序列的测定和同源性比较分析,将BHC_A鉴定为鞘氨醇单胞菌属(Sphingomonas sp.)。BHC_A菌株在12h以内能够完全矿化浓度分别为5mg/L的α_、β_、γ_、δ_HCH 4种异构体,特别是对β_HCH的降解在国际上也属少例。而前人所报道的γ_HCH降解菌Sphingomonas paucimobilis UT26菌株对β_HCH和δ_HCH不产生降解作用,即使经过24h的培养,对5mg/L的α_HCH的降解率也只有12.6%。在黄瓜的盆钵试验中发现,15d后BHC_A在土壤中对α、β_、γ_、δ_HCH 4种异构体的降解率为84.3%,能够有效地消除土壤中六六六的污染,缓解植株受药害症状。 相似文献
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3-苯氧基苯甲酸降解菌的分离及降解特性研究 总被引:3,自引:0,他引:3
从农药厂污泥中分离到一株3-苯氧基苯甲酸(3-Phenoxybenzoic acid,3-PBA)降解菌PBM11。经生理生化试验和16S rDNA测定初步鉴定为假单胞菌属(Pseudomonas sp.)。PBM11能以3-PBA为唯一碳源生长,降解试验表明:在基础盐培养基中,初始pH7.0,3&C,160r/rain,装瓶量为100mL/250mL的条件下,PBM11经过24h可完全降解200mg/L的3-PBA;添加低浓度的外源营养物质能够在一定程度上促进降解;Cu^2+和Co^2+等对其降解性能有抑制作用,而Fe^3+有明显的促进作用;通过分析底物利用情况,初步推断3-PBA降解的中间产物能为原儿茶酸和苯酚。经过7d的处理,PBM11对土壤中100mg/L3-PBA的降解率为66.25%。从PBM11中检测到一个质粒。 相似文献
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3-苯氧基苯甲酸降解菌Sphingomonas sp. SC-1降解苯酚环境条件及其降解中间产物的研究 总被引:1,自引:0,他引:1
【目的】探究高效降解3-苯氧基苯甲酸(3-Phenoxybenzoic acid,3-PBA)的鞘氨醇单胞菌(Sphingomonas sp.) SC-1对苯酚的降解特性。【方法】采用HPLC测定微生物降解体系中苯酚残留量,考察环境条件对菌株SC-1降解苯酚的影响;分析不同培养时间苯酚降解体系混合样品的HPLC谱图,确定其降解中间产物。【结果】菌株SC-1能在基础盐培养基中以苯酚为唯一碳源和能源生长,在初始pH 7.0、30 °C条件下,24 h可完全降解100 mg/L苯酚;Cu2+、Ba2+、Mn2+等对其降解苯酚有不同程度的抑制作用;HPLC谱图分析,初步确定邻苯二酚是菌株SC-1降解苯酚的中间产物,且该菌株可在48 h内完全降解100 mg/L邻苯二酚。【结论】菌株SC-1对苯酚及邻苯二酚均有较强的降解能力,为完善3-PBA的降解途径及污染3-PBA或含酚废水或含酚农药残留的降解提供了数据参考。 相似文献
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【背景】炔草酯可以高效防除麦田恶性杂草,但炔草酯的生产和使用也对环境造成了破坏,对动物和人类健康造成了威胁。【目的】分离筛选炔草酯高效降解菌株,研究其降解特性,为炔草酯污染生物修复提供优良菌种资源。【方法】采集农药厂活性污泥样品,通过富集培养和含有炔草酯的LB培养基进行炔草酯降解菌株的分离,通过形态和生理生化特性以及16S rRNA基因序列分析确定其分类学地位,通过单因素试验从温度、pH、接种量和底物浓度等方面考察菌株对炔草酯的降解特性,并利用UPLC-MS分析降解产物。【结果】筛选出一株炔草酯高效降解菌株WP68,经鉴定为鞘氨醇盒菌(Sphingopyxis sp.),该菌株在37°C和pH值为8.0时,10 h内可将200 mg/L的炔草酯降解98.26%。利用UPLC-MS鉴定菌株WP68降解炔草酯的产物为炔草酸。确定了该菌株降解炔草酯的最适温度、pH值、接种量、底物浓度分别是37°C、8.0、5%、200mg/L。菌株WP68还能降解氰氟草酯和精喹禾灵。【结论】Sphingopyxis sp. WP68对炔草酯有较强的降解能力和较高耐受性,在炔草酯污染土壤修复中具有潜在的应用前景。 相似文献
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从生产烯唑醇的农药厂废水处理池的活性污泥中驯化、分离得到6株能以烯唑醇为唯一碳源士长的细菌,分别命名为1#、2#、3#、4#、5#、6#。实验结果表明,这六种菌都足好氧菌种,对烯唑醇降解率大于30%的有1#、3#、4#、6#,其中1#为优势菌种。该优势菌降解烯唑醇的最适温度为30~35℃,最适pH值为7.0,投加0.404mg/L的菌株母液量为10%,烯唑醇的最佳初始浓度为30mg/L。该菌在上述最适条件下,150r/min摇床培养6d,埘怖唑醇的降解率可达78.14%;优势菌1#单菌对烯唑醇的降解要比复合菌对其降解的效果好。 相似文献
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应用微生物降解四环素具有经济有效和环境友好特点,已成为当前研究的热点。采用选择性培养基,从鸡粪中分离出1株能以四环素作为唯一碳源生长的菌株TC-1,培养7 d降解率为56.2%,初步鉴定为蜡状芽胞杆菌(Bacillus cereus)。从碳氮源组合、培养基初始pH、Na Cl浓度和装液量四方面研究了TC-1降解四环素的特性。结果表明,TC-1在以葡萄糖和酵母粉为碳、氮源生长时效果最优,培养7 d时OD600达2.17;但最优降解率出现在蔗糖和大豆蛋白胨的碳氮源组合中,为46.8%。当培养基初始pH为7时,菌株TC-1生长最好,OD600为0.44,四环素降解率为92.3%。当培养基中Na Cl浓度达15 g/L时,TC-1生长受到抑制,降解率仅为28.6%;培养基装液量为40%时降解率最高,为56.2%。 相似文献
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一株乙草胺降解菌的分离及其降解特性研究 总被引:2,自引:0,他引:2
【目的】分离获得一株能有效降解乙草胺的菌株,并研究其降解乙草胺的影响因素,为乙草胺生物修复提供微生物资源。【方法】通过富集培养和分离培养,从样品中筛选能以乙草胺为唯一碳氮源的菌株。通过划线培养获得单菌落,并采用革兰氏染色法和16S r RNA基因测序进行菌株的初步鉴定和系统分类。通过单因素试验研究初始乙草胺浓度、外加碳氮源对其降解乙草胺的影响,并基于正交设计进行优化。【结果】分离获得的一株菌为革兰氏阴性菌,初步确定为Pseudomonas sp.,能有效利用乙草胺进行生长。单因素试验证明在乙草胺初始浓度为10 mg/L时降解率最高;外加碳氮源能提高乙草胺降解率,其中葡萄糖和蛋白胨分别最为有效。正交设计表明在最优条件下,其对乙草胺降解率可以达到80.2%。【结论】菌株A-1能有效利用乙草胺进行生长,其降解乙草胺受多种因素影响。本研究将为利用进行该菌株进行乙草胺污染修复提供菌种资源。 相似文献
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Meiying Yang Wenming Li Xiaoxu Guo Zhenhuan Qu Xiaojuan Zhu Xingzhi Wang 《World journal of microbiology & biotechnology》2009,25(9):1625-1631
The carbazole degrading bacterium JS1 was isolated from carbazole polluted soil and identified as Sphingomonas sp. bacterium based on its 16S rDNA gene. The car gene cluster located in the genome of JS1 was isolated by PCR and its presence verified by Southern hybridization. Sequence
analysis of the car gene cluster showed that the arrangement of elements in JS1 was different from that of Pseudomons sp. CA10 and Nocardioides aromaticivorans IC177, but car gene cluster and neighboring regions were nearly identical to that of Sphingomonas sp. KA1 and Sphingomonas sp.GTIN11. Each element of the car gene cluster was expressed in E. coli upon IPTG induction. The amount of CaBb protein expressed was higher than CarBa and the ratio of these two proteins was 1:1.5.
CarC expression level was detected using anti-CarC antibody. The result showed that carbazole degrading proteins were induced
by the substrate carbazole. The quantity of CarC at 0.5 mg/ml carbazole was five times more than that at 0.1 mg/ml.
Meiying Yang and Wenming Li have the equal contribution for this work. 相似文献
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Minoru Shimura Gouri Mukerjee-Dhar Kazuhide Kimbara Hiroko Nagato Hohzoh Kiyohara Takashi Hatta 《FEMS microbiology letters》1999,178(1):87-93
Bacillus sp. strain JF8, which was isolated from compost, utilizes naphthalene and biphenyl as carbon sources at 60 degrees C. Biphenyl grown cells of strain JF8 barely degraded naphthalene while naphthalene grown cells did not degrade p-chlorobiphenyl, suggesting the existince of two independent degradation pathways. Isolation of JF8N, a mutant strain which can not utilize biphenyl as a carbon source while retaining the ability to utilize naphthalene, supports this hypothesis. Biphenyl grown cells of strain JF8 can degrade several polychlorinated biphenyl congeners including tetra- and pentachlorobiphenyl. bph and nah probes from mesophilic organisms failed to hybridize to strain JF8 DNA. 相似文献
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【目的】以苯、甲苯和苯乙烯为唯一碳源,从工业石油废水中筛选苯系物降解菌,分析其降解特性,探讨底物间相互作用对降解情况的影响。【方法】经生理生化和16S r RNA基因分析进行菌种鉴定,采用顶空气相色谱法测定苯系物含量,通过细胞的疏水性、乳化能力、排油圈及透射电镜观察分析菌株降解特性。【结果】经鉴定该菌为Pseudomonas putida,命名为SW-3菌株。最适降解条件下,单位菌体对苯、甲苯和苯乙烯的最大降解速率分别为0.072、0.035和0.019 g/(L·h),苯系混合物的总降解率达79.99%。底物降解实验表明,苯可促进甲苯和苯乙烯的降解,而苯乙烯则能抑制甲苯的降解。菌株的吸附、摄取和降解特性的研究发现,菌株SW-3在自身分泌的表面活性剂的协助下以耗能的方式运输苯。【结论】菌株SW-3具有产生表面活性剂和降解苯系物的能力,且底物间的相互作用能够显著影响菌株对不同底物的降解。 相似文献
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Isolation and characterization of Sphingomonas sp. GTIN11 capable of carbazole metabolism in petroleum 总被引:5,自引:0,他引:5
Kilbane JJ Daram A Abbasian J Kayser KJ 《Biochemical and biophysical research communications》2002,297(2):242-248
A bacterial culture was isolated from a manufactured gas plant (MGP) soil based on its ability to metabolize the nitrogen-containing heterocycle carbazole. The culture was identified as a Sphingomonas sp. and was given the designation GTIN11. A cloned 4.2kb DNA fragment was confirmed to contain genes responsible for carbazole degradation. DNA sequence analysis revealed that the fragment contained five open reading frames (ORFs) with the deduced amino acid sequence showing homology to; carbazole terminal dioxygenase (ORF1), 2,3-dihydroxybiphenyl dioxygenase subunits (ORF2 and ORF3), meta-cleavage compound hydrolases (ORF4), and ferrodoxin component of bacterial multicomponent dioxygenases (ORF5). The percent similarity was 61% of these proteins or less to known proteins. The specific activity of Sphingomonas sp. GTIN11 for the degradation of carbazole at 37 degrees C was determined to be 8.0 micromol carbazole degraded/min/g dry cell. This strain is unique in expressing the carbazole degradation trait constitutively. Resting cells of Sphingomonas sp. GTIN11 removed 95% of carbazole and 50% of C1-carbazoles from petroleum in a 16-h treatment time. 相似文献
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来自拟青霉属真菌的壳聚糖酶的分离纯化、理化性质及降解产物的分析(英文) 总被引:1,自引:0,他引:1
从来自拟青霉属真菌Paecilomyces sp.CS-Z的发酵液中获得一种壳聚糖酶,该酶被纯化了9.4倍,产率为48.2%。经SDS-PAGE分析确定为单一条带,分子量为29kDa,其最适pH为6.0–6.5,最适温度为55℃,在80℃处理60min后,能保持较好的热稳定性,Hg2+完全抑制了酶活,对脱乙酰度85%–95%的壳聚糖具有较高的水解活性,而对几丁质和羧甲基纤维素无活性。薄层层析和质谱分析表明该酶是一种内切酶,其水解产物为聚合度大于6的壳寡糖,其理化性质与至今报道的壳聚糖酶有所不同,为壳聚糖酶的开发提供了重要的实验依据。 相似文献
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N-Methylpyrrolidone (NMP), a kind of nitrogen-containing heterocyclic pollutant, is widely used in chemical industry. Microbial degradation is an important environmental fate process in soil and water, however, the microbial metabolic mechanism is still unknown. Strain NMD-4, capable of utilizing NMP as the sole source of carbon and nitrogen, was isolated from the activated sludge of a pesticide plant in Jiangsu, China, and identified as Paracoccus sp. based on its physiological–biochemical properties, as well as 16S rRNA gene sequence analysis. The degradation characteristic of NMP by strain NMD-4 was studied in a liquid culture, and the metabolic pathway of NMP by the strain was investigated. Two metabolites, 1-methyl-2,5-pyrrolidinedione and succinic acid, were detected and identified by liquid chromatography-mass spectrometry analysis, and a plausible microbial degradation pathway of NMP was proposed by the first time. 相似文献
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4株苯系物降解菌菌株的筛选鉴定、降解特性及其降解基因研究 总被引:6,自引:0,他引:6
分别以苯、甲苯为碳源,从厦门污水处理厂活性污泥中富集筛选获得了2株苯降解菌B1、B2和2株甲苯降解菌J2、J6。16S rRNA基因鉴定结果表明B1、J2属于假单胞菌属(Pseudomonassp.),B2、J6属于不动杆菌属(Acinetobactersp.)。研究表明,这些菌在pH7~10的碱性范围内能很好生长。在以0.1%(V/V)苯或甲苯为唯一碳源的无机盐培养基中,B1、B2菌在72小时内对苯的降解率分别为67.7%、94.2%,J2、J6菌对甲苯的降解率分别为92.4%、84.8%。简并PCR扩增、序列分析表明,这些菌含有相同的苯双加氧酶基因,表明苯降解基因在这些降解菌中可能存在水平转移。此外,J2,J6两株菌还含有甲苯双加氧酶基因,而且J2能在甲苯浓度为70%(V/V)的LB培养基中生长。这些降解菌在苯、甲苯污染的生物治理中有应用前景。 相似文献
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一株高效烷烃降解菌Acinetobacter sp. LAM1007的分离鉴定及降解特性 总被引:1,自引:0,他引:1
【目的】挖掘高效烷烃降解菌,为后续石油烃污染修复工程提供优良菌种资源。【方法】以正十六烷为唯一碳源,将大庆石油污染土样中分离筛选到的高效烷烃降解菌经形态观察、生理生化试验、细胞化学组分及16SrRNA基因序列分析等方法进行初步鉴定与系统分类;同时通过单因素试验研究环境因素(温度、pH、接种量和转速)以及不同初始浓度的正十六烷(0.1%、0.3%、0.5%、1.0%、1.5%、2.0%,体积比)对菌株降解效率的影响。【结果】筛选到一株高效烷烃降解菌LAM1007,经初步鉴定该菌株为不动杆菌属(Acinetobacter)。该菌株在添加正十六烷的无机盐培养基中的最适降解条件为:30°C,pH 7.0,接种量1%(体积比),转速180 r/min,在该条件下浓度为0.3%(体积比)的正十六烷60 h内降解率高达90%。【结论】菌株LAM1007是一株在石油烃污染修复方面极具应用潜力的高效烷烃降解菌。 相似文献
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A bacterial strain able to degrade dichloromethane (DCM) as the sole carbon source was isolated from a wastewater treatment
plant receiving domestic and pharmaceutical effluent. 16S rDNA studies revealed the strain to be a Xanthobacter sp. (strain TM1). The new isolated strain when grown aerobically on DCM showed Luong type growth kinetics, with μmax of 0.094 h−1 and S
m of 1,435 mg l−1. Strain TM1 was able to degrade other aromatic and aliphatic halogenated compounds, such as halobenzoates, 2-chloroethanol
and dichloroethane. The gene for DCM dehalogenase, which is the key enzyme in DCM degradation, was amplified through PCR reactions.
Strain TM1 contains type A DCM dehalogenase (dcmAa), while no product could be obtained for type B dehalogense (dcmAb). The sequence was compared against 12 dcmAa from other DCM degrading strains and 98% or 99% similarity was observed with all other previously isolated DCM dehalogenase
genes. This is the first time a Xanthobacter sp. is reported to degrade DCM. 相似文献
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Abstract From different samples of soil seventeen strains were isolated which grew aerobically in mineral salts medium with quinaldic acid as sole carbon source. Mutants were induced with N -methyl- N '-nitro- N -nitrosoguanidine. One mutant could be isolated which accumulated a yellow compound. The properties of this purified compound were those expected for 2-oxo-3-(4'-hydroxy-2'-oxo-3',4'-en-butyrate)-pyridine-6-carboxylic acid. 相似文献