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1.
木质素降解菌株的分离及其降解玉米秸秆过程中产酶特点   总被引:1,自引:0,他引:1  
【目的】筛选高效降解木质素的菌株,并研究其以玉米秸秆为底物时木素降解酶活性。【方法】本研究以愈创木酚培养基和苯胺蓝培养基从吉林省不同经纬度的自然朽木及腐朽玉米秸秆土壤样品中分离、筛选得到高效降解木质素的菌株,并对其形态学鉴定,通过ITS序列分析构建系统发育树,分析菌株的分类地位。通过秸秆固体发酵过程产生的胞外木质素酶的活性分析,选出高效秸秆降解菌。【结果】筛选出1株高效降解秸秆的真菌,对其进行形态学特征和ITS序列分析,命名为白囊耙齿菌W2(Irpex lacteus W2)。该菌株在4–8 d内产生的锰过氧化物酶(Manganese peroxidase)呈上升趋势,并且在8 d达到峰值86.31 U/mL,与黄孢原毛平革菌(Phanerochaete chrysosporium)的最高酶活力45.86 U/mL相比,高出了88.20%(P0.01);该菌株的漆酶(Laccase)活力8 d时达到20.60 U/mL,比对照高40.76%(P0.05)。【结论】本研究分离到一株具有较强降解秸秆能力的真菌,初步鉴定为Irpex lacteus W2,具有较强的降解秸秆能力,其降解秸秆过程中产生较高的锰过氧化物酶与漆酶活力。  相似文献   

2.
【背景】啶虫脒等新烟碱类杀虫剂的残留易对非靶标生物造成伤害,投加高效降解细菌进行生物强化,可促进其快速降解。【目的】从蚯触圈中分离筛选啶虫脒降解菌并优化其降解条件,提高降解效率。【方法】制备蚯触圈基质富集筛选降解菌;通过生理生化特征和16S rRNA基因序列分析对其进行鉴定;利用单因素筛选、Plackett-Burman试验、最陡爬坡试验及Box-Behnken design试验优化菌株降解条件。【结果】分离得到1株啶虫脒降解菌D35,可在72 h内降解55.46%初始浓度为50 mg/L的啶虫脒,将其鉴定为一株假单胞菌(Pseudomonas sp.)。优化得到菌株降解啶虫脒的最佳环境条件为:胰蛋白胨10.19 g/L、温度为30℃、接种量为5.24%,pH 7.0、初始农药浓度50 mg/L,在此条件下72 h内菌株降解率为80.21%,较未优化前提高了24.75%。【结论】本研究对分离筛选新烟碱类杀虫剂降解菌的方法进行了探索,获得的菌株D35可高效降解啶虫脒,为快速消除环境中啶虫脒污染提供了新的微生物资源。  相似文献   

3.
筛选两株稻杆降解放线菌   总被引:2,自引:0,他引:2  
【目的】筛选能够同时降解纤维素、半纤维素、木质素的微生物菌株,并研究其对稻杆的降解效果。【方法】采用羧甲基纤维素钠、半纤维素平板水解圈法、苯胺蓝平板脱色法进行初筛;利用DNS法测定胞外酶活性;在含有2%稻秆的液体发酵培养基中摇瓶培养10天后,洗去菌体测定稻杆失重率、木质纤维素类物质降解率,同时测定稻杆断裂拉力进行复筛。【结果】筛选出两株能够同时高效降解木质纤维素的放线菌A3和A6,其纤维素和半纤维素酶活较高,最高纤维素全酶活、β-葡萄糖苷酶活、外切酶活和内切酶活分别为:12.84和12.85、6.23和6.53、24.56和17.80、14.00和18.80 U/mL;最高半纤维素酶活分别为:83.05和52.98 U/mL;木质素酶活较低,菌株A3和A6的木素过氧化物酶最大值为:12.72和14.67 U/mL,锰过氧化物酶最大值分别为:22.48和24.67 U/mL,漆酶最大值分别为:28.40和33.04 U/mL。经形态学、培养特征和分子生物学分析,两株菌株鉴定为链霉菌,对稻杆均有较好的降解效果,在第10 d后稻杆断裂拉力测定值分别比初始时降低62.67%和66.67%;稻杆失重率在31.50%和35.83%;菌株A3对纤维素、半纤维素、木质素降解率为38.73%、33.16%和20.68%,菌株A6为47.69%、28.64和22.59%。【结论】放线菌A3和A6对纤维素、半纤维素、木质素均具有降解作用,且酶活较高,具有较好的应用前景。  相似文献   

4.
胡琼  唐洁  雷丹  吴敏  孙擎  张庆 《微生物学通报》2020,47(3):699-709
【背景】拟除虫菊酯类农药的降解已成为食品安全和环境卫生领域的研究热点,而生物降解被认为是一种绿色高效的解决方法。【目的】从长期受拟除虫菊酯类农药污染的草莓根系土壤分离一株溴氰菊酯(deltamethrin,DM)降解菌,并优化其培养基及降解条件,从而提高DM降解菌的降解效率。【方法】采用富集驯化、分离纯化法筛选DM降解菌,通过形态学和生理生化特征,以及16S rRNA基因序列分析进行鉴定。通过Plackett-Burman因素筛选试验、最陡爬坡试验和Box-Behnken试验优化菌株降解条件。【结果】筛选获得一株DM降解菌LH-1-1,96h对DM(100mg/L)的降解率为53.43%,经鉴定为琼氏不动杆菌(Acinetobacter junii);通过优化后,在DM浓度75mg/L、胰蛋白胨3 g/L、pH值6.8、硫酸铵1.5 g/L、氯化铁0.01 g/L、接种量为5%(体积比)、菌龄12 h、培养温度30℃条件下,菌株LH-1-1对DM降解率达82.36%,较未优化前提高了28.93%。【结论】A. junii LH-1-1具有较高的DM降解能力,该菌可为生物修复受DM或拟除虫菊酯类农药污染的环境提供优良的微生物资源。  相似文献   

5.
一株低温木质素降解菌的筛选、产酶优化及酶学性质   总被引:2,自引:2,他引:0  
【背景】我国北方地区秋冬两季平均气温较低,低温环境使得秸秆更难自然降解。【目的】筛选高效低温木质素降解菌,探索其酶学特性并提高其产酶性能和秸秆降解效率。【方法】通过苯胺蓝法和酶活测定对菌株进行筛选,以Lip、Lac、Mnp酶活力为评价指标,采用单因素和响应面法进行产酶条件优化及酶学性质研究,通过固态发酵试验研究其对秸秆的降解效率。【结果】筛选到一株高效菌LS-1,经形态学和分子生物学鉴定其为嗜麦芽窄食单胞菌。菌株LS-1在木质素为碳源、蛋白胨为氮源、pH 8.0、培养温度15°C、培养时间3 d时产酶效果最佳,其中Lip酶活力为23.34 U/mL、Lac酶活力为9.37 U/mL、Mnp酶活力为50.89 U/mL。Lip和Lac最适作用温度为30°C且热稳定性良好,Mnp最适作用温度为50°C但热稳定性较差。Lac最适作用pH 4.0且耐酸性较好,Lip和Mnp最适作用pH 5.0;0.75 mmol/L Mg~(2+)和0.5%吐温-20对Lip有促进作用,1 mmol/L Cu~(2+)和丁香酸对Lac有促进作用,0.1%-0.5%吐温-20均对Mnp有促进作用。15°C固态发酵后,秸秆失重率达18.85%,木质素降解率达36.14%,比对照组提高约6倍以上。【结论】本研究为低温木质素高效降解提供了优质菌种资源,在秸秆降解方面具有良好的应用前景。  相似文献   

6.
Sphingobacterium bambusaue及其紫外诱变菌株的石油降解功能   总被引:1,自引:0,他引:1  
【目的】研究Sphingobacterium bambusaue及其紫外诱变菌株的石油降解功能。【方法】紫外诱变后筛选石油降解高效菌株; 以不同石油浓度、pH值及盐浓度优化培养条件, 用重量法检测高效菌株石油降解率。【结果】发现菌株S. bambusaue在石油降解培养基中培养5 d的石油降解率为25.86%, UV诱变高效菌株IBFC2009-S3培养5 d的石油降解为42.85%, 比始发菌株提高65.7%; UV诱变菌株IBFC2009-S3的优化培养条件为石油浓度0.5 g/L、pH值7.0以及NaCl质量浓度为10 g/L, 其石油降解率可达50.51%。【结论】首次报道S. bambusaue具有石油降解功能; 紫外诱变获得的菌株S3的石油降解能力较强。  相似文献   

7.
降解烤烟秸秆和烟碱菌株的筛选及其产酶特性   总被引:1,自引:0,他引:1  
摘要:【目的】为获得能够降解烤烟秸秆和烟碱的菌株,并探索其降解烤烟秸秆的利用途径。【方法】以烤烟秸秆为唯一碳氮源,从烟田土壤中进行了菌株的筛选。采用形态学观察、生理生化特性鉴定、16S rRNA基因序列鉴定等方法对该菌株进行了鉴定,并对其以烤烟秸秆为底物进行液态发酵的产酶活性和木质纤维素降解效果进行了测定。【结果】结果表明:该菌株为巨大芽孢杆菌(Bacillus megaterium)。在以烤烟秸秆为主要营养物质液态发酵条件下该菌株具有较强的木质素降解能力,最大漆酶活力达到418.52 U/L,而木质素过氧化物酶和锰过氧化物酶的最大酶活分别为19.71 U/L 和64.71 U/L。此外,发酵20 d后该菌能够完全降解发酵液中的烟碱。【结论】本研究筛选到了1株能够较好降解烤烟秸秆和完全降解烟碱的巨大芽孢杆菌(Bacillus megaterium),且该菌株具有利用烤烟秸秆生产漆酶的应用价值。  相似文献   

8.
【背景】乙醛作为醛类污染物广泛存在于生产生活中,相较于传统的物化方法,生物降解具有诸多优势,已成为研究热点。【目的】筛选获得降解乙醛的菌株并优化其发酵条件,为微生物降解乙醛提供试验资源。【方法】经过富集培养和乙醛降解试验获得一株乙醛降解能力高的菌株;通过单因子优化(碳源、氮源、金属离子、温度、转速、接种量和初始pH)和多因子的交互试验(Plackett-Burman试验、最陡爬坡试验和Box-Behnken design试验)考察培养基组分和发酵条件对菌株降解乙醛的影响,并考察菌株在最佳条件下的生长状态和乙醛降解能力。【结果】筛选获得一株具有乙醛降解能力的菌株Bacillus velezensis LT-2,该菌株降解乙醛的最佳培养条件为:蔗糖30 g/L,营养肉汤0.6 g/L,氯化钾0.12 mol/L,温度28℃,初始pH 7.5,接种量6%,摇床转速200r/min。在此条件下,B.velezensisLT-2可在1g/L乙醛的培养液中生长,22h的降解率为89.77%±2.33%,是优化前降解率的3.58倍。【结论】试验菌株B. velezensis LT-2对乙醛具有良好的...  相似文献   

9.
【目的】探讨菌株Comamonas serinivorans C35降解木质素的能力。【方法】测定Comamonas serinivorans C35在木质素培养基中的生长趋势、化学需氧量的去除、木质素降解率、脱色率和相关酶的分泌。分别采用扫描电子显微镜和傅里叶变换红外光谱分析仪检测木质素降解前后的外观结构和化学键的变化。【结果】Comamonas serinivorans C35能够在木质素培养基上生长,在培养7 d后,化学需氧量去除率为44.4%,木质素降解率和脱色率分别为43.57%和42.26%。Comamonas serinivorans C35能够分泌木质素过氧化物酶、锰过氧化物酶和漆酶,粗酶液酶活分别能达到648.4、177.8和70.1 U/L。Comamonas serinivorans C35可以使木质素解聚且对其苯环结构、醚键以及C=O键等具有明显的破坏作用。【结论】Comamonas serinivorans C35可以降解木质素,在木质素的生物转化中具有潜在的应用价值。  相似文献   

10.
【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   

11.
【目的】以米曲霉(Aspergillus oryzae)M-4对己烯雌酚(Diethylstilbestrol,DES)的降解率为响应值,对其降解条件进行优化。【方法】采用Plackett-Burman法对培养基组分和降解条件筛选显著性影响因素,并通过Box-Bohnken设计试验优化降解条件。【结果】最优培养基配方为:蛋白胨1.3%,CaCl_2 0.045%,葡萄糖0.5%,K_2HPO_4 0.15%,KH_2PO_4 0.05%,NaCl 0.05%,Tween 80 0.2%,DES质量浓度44 mg/L;最优培养条件为:初始p H 7.5,种龄72 h,转速140 r/min,培养温度28°C,培养时间72 h。【结论】在最优条件下菌株M-4对DES降解率为83.89%,比优化前(60.98%)提高1.38倍,差异极显著(P0.01)。  相似文献   

12.
The objective of the present study was to investigate the correlation of soluble apoplastic peroxidase activity with lignification in needles of field-grown Norway spruce (Picea abies L.) trees. Apoplastic peroxidases (EC 1.11.1.7) were obtained by vacuum infiltration of needles. The lignin content of isolated cell walls was determined by the acetyl bromide method. Accumulation of lignin and seasonal variations of apoplastic peroxidase activities were studied in the first year of needle development. The major phase of lignification started after bud break and was terminated about 4 weeks later. This phase correlated with a transient increase in apoplastic guaiacol and coniferyl alcohol peroxidase activity. NADH oxidase activity, which is thought to sustain peroxidase activity by production of H2O2, peaked sharply after bud break and decreased during the lignification period. Histochemical localization of peroxidase with guaiacol indicated that high activities were present in lignifying cell walls. In mature needles, lignin was localized in walls of most needle tissues including mesophyll cells, and corresponded to 80 to 130 [mu]mol lignin monomers/g needle dry weight. Isoelectric focusing of apoplastic washing fluids and activity staining with guaiacol showed the presence of strongly alkaline peroxidases (isoelectric point [greater than or equal to] 9) in all developmental stages investigated. New isozymes with isoelectric points of 7.1 and 8.1 appeared during the major phase of lignification. These isozymes disappeared after lignification was terminated. A strong increase in peroxidase activity in autumn was associated with the appearance of acidic peroxidases (isoelectric point [less than or equal to] 3). These results suggest that soluble alkaline apoplastic peroxidases participate in lignin formation. Soluble acidic apoplastic peroxidases were apparently unrelated to developmentally regulated lignification in spruce needles.  相似文献   

13.
一株高效苯酚降解真菌的分离鉴定及其菌剂的制备   总被引:1,自引:0,他引:1  
【背景】含酚废水是普遍存在的有毒、难降解的有机污染物之一,生物法处理含酚废水因成本低、无二次污染而具有广阔的应用前景。可降解苯酚的微生物中,真菌比细菌对恶劣环境的适应性更好。针对液态菌液保存时间较短和运输困难的瓶颈,制备固体菌剂可以提高菌体存活率和储藏稳定性。【目的】筛选一株能够高效降解苯酚的真菌,优化其降酚性能并选择合适的载体制备菌剂。【方法】通过逐级驯化和纯化分离降酚菌,筛选得到降酚性能较强的真菌并通过ITS r DNA基因测序进行种属鉴定,通过参数优化进一步提高菌株降解苯酚的性能;以不同材料为载体制备菌剂,通过稀释平板计数法和苯酚降解实验探究菌剂在不同温度下的保存效果。【结果】分离筛选得到一株高效降解苯酚真菌QWD1,通过鉴定证明其属于Magnusiomyces capitatus,其最适降解条件:(NH_4)_2SO_4为氮源,接种量为15%,pH为7.0,温度为35°C,氮源浓度为14 mmol/L。在此条件下,28 d内对1 600 mg/L苯酚去除率可以达到97.15%;制备菌剂最合适载体为谷糠,适宜保存温度为4°C,保存时间可达到90 d甚至更长,活菌数高达2.5×10~8 CFU/g左右,降解苯酚效果良好。【结论】筛选得到了一株高效降解苯酚真菌,优化其降解性能并将其制备成菌剂,为处理含酚废水提供了新菌种和理论支持。  相似文献   

14.
The ability of the white rot fungus Phanerochaete chrysosporium to mineralize 2,4,6-trinitrotoluene (TNT) was studied in the concentration range of 0.36 to 20.36 mg/liter. The initial rate of 14CO2 formation was 30% in 4 days at 0.36 mg of [14C]TNT per liter and decreased to 5% in 4 days at 20.36 mg of [14C]TNT per liter. Such a pronounced inhibition was not observed when a mixture of [14C]2-amino-4,6-dinitrotoluene and [14C]4-amino-2,6-dinitrotoluene was used as a substrate. 2-Hydroxylamino-4,6-dinitrotoluene and its isomer 4-hydroxylamino-2,6-dinitrotoluene were identified as the first detectable degradation products of TNT. Their transient accumulation correlated with the inhibition of TNT degradation and of the veratryl alcohol oxidase activity of lignin peroxidase. With purified lignin peroxidase H8, it could be shown that the two isomers of hydroxylamino-dinitrotoluene were oxidized by lignin peroxidase. The corresponding nitroso-dinitrotoluenes apparently were formed, as indicated by the formation of azoxy-tetranitrotoluenes.  相似文献   

15.
以黄孢原毛平革菌 (Phanerochaetechrysosporium)RNA为模板 ,克隆LipH8基因片段 ,研究LipH8基因在甲醇毕赤酵母中的表达。构建了甲醇酵母表达质粒pMETA_LipH8载体 ,并将其线性化后用电穿孔法导入PichiamethabolicaPMAD16 ,部分阳性克隆的PCR结果表明LipH8基因已经整合到甲醇毕赤酵母染色体上 ,经摇瓶培养筛选出表达水平较高的酵母工程菌株。胞外木质素过氧化物酶活力达 932U L。  相似文献   

16.
Summary Phanerochaete chrysosporium was immobilized in agar, agarose and -carrageenan gel beads, nylon web, and polyurethane foam, and used for the production of lignin peroxidase in shake cultures on a carbon-limited medium. Nylon was found to be the best carrier, with the maximum lignin peroxidase activity (340 U/l) reached on the 7th day. The enzyme production rate was significantly lower with freely suspended mycelial pellets. Both nylon and polyurethane based biocatalysts were active for at least 38 days after the addition of veratryl alcohol. Best results were obtained when a spore inoculum was used instead of day-old pellets. -Carrageenan was found unsuitable as a carrier for lignin peroxidase production.  相似文献   

17.
Ligninolytic bacteria degrading lignin were isolates and identified, and their biodegradation mechanism of alkaline-lignin was investigated. Four strains with lignin degradation capability were screened and identified from the soil, straw, and silage based on their decolorizing capacity of aniline blue and colony size on alkaline-lignin medium. The degradation ratio of Bacillus aryabhattai BY5, Acinetobacter johnsonii LN2, Acinetobacter lwoffii LN4, and Micrococcus yunnanensis CL32 have been assayed using alkaline-lignin as the unique carbon source. Further, the Lip (lignin peroxidase) and Mnp (manganese peroxidase) activities of strains were investigated. Lip activity of A. lwoffii LN4 was highest after 72 h of incubation and reached 7151.7 U · l–1. Mnp activity of M. yunnanensis CL32 was highest after 48 h and reached 12533 U · l–1. The analysis of alkaline-lignin degradation products by GC-MS revealed that the strains screened could utilize aromatic esters compounds such as dibutyl phthalate (DBP), and decomposite monocyclic aromatic compounds through the DBP aerobic metabolic pathway. The results indicate that B. aryabhattai BY5, A. johnsonii LN2, A. lwoffii LN4, and M. yunnanensis CL32 have high potential to degrade alkaline-lignin, and might utilize aromatic compounds by DBP aerobic metabolic pathway in the process of lignin degradation.Key words: isolation, bacteria, alkali-lignin, biodegradation products  相似文献   

18.
Biodegradation and bioconversion of extracted alkali lignin was performed under varying concentrations of carbon and nitrogen sources, by two potential Ascomycetes ligninolytic fungus isolated from soil. Fungus, F10 was identified as Aspergillus flavus, while APF4 as Emericella nidulans based upon closed similarity with their morphology and high homology in 18S rRNA gene sequences. The alkali lignin degradation was checked in term of disappearance of lignin content and colority. Selected fungus, degraded 19–41.6% of alkali lignin (0.25%, w/v) within 21 days of incubation and reduced the colority up to 14.4–21%. The activity of ligninolytic enzymes was periodically checked. During alkali lignin degradation manganese peroxidase (13.31?U/ml), lignin peroxidase (13.73?U/ml) and laccase (0.05?U/ml) activities were observed (at highest level). The alkali lignin degradation products and functional group changes in degraded lignin were analysed through gas chromatography-mass spectroscopy (GC-MS) and solid state 13C-NMR spectroscopy, respectively. The functional group modifications in alkali lignin moiety, alter its biochemical property, thus fungal mediated modified alkali lignin was further tested for reactive free radical scavenging potential with respect to hydroxyl, nitric oxide and superoxide radicals. Results demonstrate that the alkali lignin undergo degradation in studied nutritional conditions (high-carbon low nitrogen) and consequently increase its free radical scavenging activity up to 1–18%.  相似文献   

19.
李思  程伟  张富美  尚晓静  侯瑞 《菌物学报》2021,40(6):1511-1524
利用组织分离从未成熟有机蓝莓的表皮中分离出菌株G14,根据其菌落形态、ITS序列对比及系统发育树的分析,鉴定菌株G14为一株烟管孔菌Bjerkandera adusta。菌株G14可以分泌漆酶(laccase,Lac)、木质素过氧化物酶(lignin peroxidase,LiP)和锰过氧化物酶(manganese peroxidase,MnP)3种木质素降解酶,利用单因素和正交试验对活性较高的MnP进行发酵条件优化,同时检测B.adustaG14所产MnP粗酶液对5种染料的脱色能力。结果表明,B.adustaG14在培养6d时MnP活性最大,最优条件为:蔗糖10g/L、pH 7、0.5mmol/L Mn2+、0.1mmol/L Zn2+,该条件下MnP活性达17.74U/L,比优化前提高了1.42倍,B.adustaG14 MnP粗酶液对5种染料均可以脱色,对刚果红和铬黑T染料的脱色效果最好,6d后脱色率达76%和68%。  相似文献   

20.
【背景】耐受乙酸的乳酸菌是传统谷物醋醋酸发酵过程中产生乳酸及其风味衍生物的重要功能微生物。【目的】从镇江香醋醋醅中分离鉴定具有耐乙酸特性的乳酸菌,并评价不同条件下该菌株的产乳酸能力。【方法】利用4%(体积比)乙酸含量的MRS培养基分离耐乙酸乳酸菌;对其进行16S rRNA基因鉴定、基因组测序、形态观察以及生理生化特性研究;考察不同乙酸浓度、葡萄糖浓度、发酵温度和时间对菌株产乳酸能力的影响。【结果】分离得到一株可耐受6%乙酸的乳杆菌Lactobacillus sp. JN500903;在厌氧静置、接种量5%、乙酸浓度5%、葡萄糖浓度40 g/L、发酵温度37°C、发酵时间10 d条件下,该菌株乳酸产量为16.1 g/L。【结论】乳杆菌JN500903能够耐受6%乙酸浓度,具有在酸性环境下合成乳酸的能力,有一定的应用潜力。  相似文献   

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