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1.
徐慧  刘曹彤  彭学 《微生物学通报》2023,50(5):1772-1786
【背景】对羟基苯甲酸及其酯类常作为合成多种芳香族化合物的前体物质广泛应用于多个领域,但其难以自然降解给环境造成了污染问题,同时这些污染物随着洋流迁移到海洋中破坏海洋生态环境。【目的】从海洋环境中筛选对羟基苯甲酸酯高效降解菌,通过全基因组测序及注释分析,预测对羟基苯甲酸酯代谢通路,确定其代谢过程中的关键酶并进行功能研究。【方法】通过富集培养从海洋环境中分离对羟基苯甲酸酯降解菌,利用基因克隆技术将降解对羟基苯甲酸酯关键酶基因在大肠杆菌中高效表达,探究重组蛋白活性及酶学特征。【结果】从海底泥沙中筛选到一个菌株,经16S rRNA基因测序鉴定为硝化柠檬球菌(Citricoccus nitrophenolicus);该菌株能够利用多种对羟基苯甲酸酯类物质进行生长,在甲酯为碳源条件下生长状态最好;将羧酸酯酶基因和单加氧酶基因在大肠杆菌中进行高效表达,重组表达的羧酸酯酶最适反应条件为:pH 8.0,30℃反应30 min;重组表达的单加氧酶活性表达依赖于辅酶,Mg2+、Mn2+、Zn2+和Fe3+可增强该酶活性;经荧光定量PCR进一步...  相似文献   

2.
苹果根际自毒物质降解菌的筛选鉴定及降解特性研究   总被引:3,自引:0,他引:3  
【目的】从苹果根际土壤筛选苹果根系自毒物质降解细菌,并探究分离菌株对根皮苷、邻苯二甲酸、对羟基苯甲酸以及焦性没食子酸的降解能力。【方法】分别采用邻苯二甲酸、焦性没食子酸为唯一碳源富集并筛选其降解菌株。通过对分离菌株的生理生化特征测定及16S r RNA基因序列分析,采用MEGA 5构建系统发育树,进行菌株鉴定。采用紫外分光光度法和高效液相色谱法测定分离菌株对4种自毒物质的降解能力。【结果】共分离5株有降解能力的细菌,编号为BL1、BL2、BL3、BJ1和BJ2,经鉴定BL1为钩虫贪铜菌Cupriavidus necator,BL2为生脂固氮螺菌Azospirillum lipoferum,BL3为氧化烃微杆菌Microbacterium hydrocarbonoxydans,BJ1为Paenibacillus phyllosphaerae,BJ2为Ochrobactrum cytisi。BL1、BL2、BL3菌株对邻苯二甲酸、对羟基苯甲酸、根皮苷、焦性没食子酸的降解率均高于50%。其中BL2菌株的降解效果最好,分别达到66%、72%、84%和84%。【结论】首次发现钩虫贪铜菌、生脂固氮螺菌和氧化烃微杆菌对4种自毒物质均具有很好的降解能力,对缓解自毒物质引起的连作障碍具有潜在的应用价值。  相似文献   

3.
微小杆菌(Exiguobacterium sp.)对肉桂酸降解行为   总被引:1,自引:0,他引:1  
【目的】为有效缓解自毒物质肉桂酸对西瓜等作物生长的危害,从宁夏中卫硒砂瓜连作土壤中分离筛选得到一株高效降解肉桂酸的菌株,研究其基本降解特性。【方法】分离筛选得到一株能有效利用肉桂酸生长的菌株,采用16S r RNA基因序列分析进行菌株鉴定,运用高效液相色谱法和西瓜幼苗生长毒性实验检测降解特性。【结果】从多年西瓜连作土壤中筛选得到一株高效降解肉桂酸的细菌R30,鉴定为Exiguobacterium sp.,其96 h内对肉桂酸的降解率可达99%以上,最适降解温度和p H分别为30°C、p H 7.0。除肉桂酸外,该菌也能够高效降解香豆酸、阿魏酸、苯甲酸等其他酚酸类物质,表现出一定的底物广谱性;检测96 h降解液对西瓜种子萌发直至幼苗生长阶段的影响表明,该菌株可有效缓解肉桂酸对西瓜幼苗的生长抑制作用。【结论】菌株R30在肉桂酸、香豆酸、阿魏酸、苯甲酸等酚酸类物质导致的农作物连作障碍治理领域具有潜在的开发应用价值。  相似文献   

4.
凌浩  许楹  周宁一 《微生物学通报》2021,48(10):3485-3496
【背景】深渊沉积物中存在丰富的微生物细胞和活跃的微生物碳周转,因此,分离培养微生物资源对于认识深渊中的物质循环、能量代谢具有重要意义。芳香化合物在环境中广泛存在,基于组学分析揭示了深渊中具有潜在的芳香化合物代谢菌株,然而深渊来源的芳香化合物降解微生物纯培养和相关的代谢机理研究仍然缺乏。【目的】从马里亚纳海沟沉积物样本中分离培养具有降解芳香化合物能力的微生物,对其代谢途径、中间产物和降解酶活力进行初步鉴定。【方法】以4-羟基苯甲酸为唯一碳源对马里亚纳海沟沉积物样本中的降解菌株进行分离培养,结合形态观察、16S rRNA基因扩增与序列分析对菌株进行鉴定,通过底物生长实验验证其降解能力,通过高效液相色谱和超高效液相色谱-飞行时间质谱联用仪初步鉴定全细胞生物转化中间产物,利用紫外分光光度计测定其粗酶液催化4-羟基苯甲酸的活力,进而推测菌株降解4-羟基苯甲酸的代谢途径。【结果】从深渊沉积物中分离培养获得一株好氧细菌,16SrRNA基因序列分析显示该菌株隶属于柠檬球菌属(Citricoccus),命名为Citricoccus sp. strain NyZ702。该菌株在LB固体培养基上经30°C培养4 d后呈柠檬黄色、不透明、表面光滑、边缘整齐、凸出于培养基表面、直径约为1-2 mm的圆形菌落。扫描电镜表明菌体呈球形,直径为0.4-0.6μm,无鞭毛结构。该菌株为耐盐菌,最适生长盐浓度范围为2%-8%(质量体积分数)。该菌株可利用4-羟基苯甲酸为唯一碳源进行生长,可转化4-羟基苯甲酸至中间产物原儿茶酸,推测该菌株通过原儿茶酸途径降解4-羟基苯甲酸。菌株NyZ702的粗酶液具有4-羟基苯甲酸单加氧酶活力,对4-羟基苯甲酸的催化反应需要还原型烟酰胺腺嘌呤二核苷酸磷酸(NADPH)作为辅因子。【结论】从深渊沉积物样本分离得到一株4-羟基苯甲酸降解菌Citricoccus sp. strain NyZ702,该菌株以原儿茶酸为中间代谢产物降解4-羟基苯甲酸,丰富了深渊来源的微生物菌种资源,为深渊中的芳香化合物降解研究提供了一定的理论基础。  相似文献   

5.
【背景】高尿酸症由血液中尿酸含量明显升高而导致,利用乳酸菌对人体的益生作用缓解高尿酸血症越来越受到关注。【目的】获得具有降解尿酸能力的乳酸菌复合菌系与纯培养菌株。【方法】以泡菜为样品来源,以尿酸为底物,采用MRS培养基筛选降解尿酸的乳酸菌复合菌系,通过高效液相色谱法测定复合菌系对尿酸的降解能力。【结果】得到一组乳酸菌复合菌系,当培养温度为37 °C、pH值为6.20、静置培养72 h后复合菌系对尿酸的降解率为12.08%;通过优化培养条件,当该菌系在以牛肉膏为单一氮源、初始pH值为5.00、温度为35 °C的条件下培养72 h,尿酸降解率上升至17.19%,降解率比优化前提高了42.3%;从该菌系中分离出两株具有尿酸降解能力的菌株UA-1与UA-2,它们的尿酸降解率分别为10.85%和8.65%;通过形态学观察和16S rRNA基因序列分析,经鉴定两株菌均为布氏乳杆菌(Lactobacillus buchneri)。将两株单菌组合降解尿酸试验发现,UA-1与UA-2比例为2:1的尿酸降解率为20.2%,比原复合菌系的降解能力提高了67.22%。【结论】研究证明了乳酸菌复合菌系对尿酸的降解能力优于单个菌株,为后续利用乳酸菌复合菌系应用提供了数据支持。  相似文献   

6.
缓解花生连作障碍的根际促生菌分离及功能鉴定   总被引:1,自引:0,他引:1  
【目的】长期连作障碍严重降低花生生产的产量及品质,根际促生菌可有效降解土壤中自毒化感物质、抑制植物病原菌生长及促进植物生长,从而有效缓解连作障碍问题。筛选优化具有缓解花生连作障碍能力的多功能根际益生微生物,验证其益生作用能力,为根际促生菌株在连作障碍中的应用提供理论依据及技术支持。【方法】采集连作12年地块花生根际土壤,利用以酚酸为唯一碳源的筛选培养基获得具有酚酸自毒化感物质降解及利用能力的根际促生菌,通过16S rRNA基因测序进行系统发育分析,确定根际促生菌菌株的分类地位,并验证其对植物病原菌生长抑制能力及解磷、解钾、产植物激素吲哚乙酸能力。【结果】从连作12年的花生发病土壤中获得7株可高效降解酚酸类自毒物质且降解底物多样的根际微生物菌株,经16S rRNA测序比对分别为克雷伯氏菌B02 (Klebsiella sp. B02)、克雷伯氏菌B07(Klebsiella sp. B07)、克雷伯氏菌B15 (Klebsiella sp. B15)、芽孢杆菌B28 (Bacillus sp. B28)、不动杆菌P09(Acinetobacter sp. P09)、布鲁氏杆菌VA05 (...  相似文献   

7.
【背景】烟草在生产和加工中会产生高浓度的尼古丁废弃物,对环境造成较大的污染。【目的】筛选降解尼古丁的微生物菌种并解析其降解尼古丁的代谢途径,理解微生物如何降解尼古丁。【方法】用常规分离筛选方法、结合形态学观察和分子鉴定手段分离和鉴定菌株类别,进而利用单因素试验方法,通过设置不同的尼古丁浓度、温度和pH确定菌株降解尼古丁的最适发酵条件和降解率,利用气相色谱-质谱联用技术检测菌株在尼古丁降解过程中的主要代谢产物。【结果】获得一株以尼古丁为唯一碳源和氮源的节杆菌属(Arthrobacter)菌株,编号为D4;该菌株降解尼古丁的最适温度和pH分别为30.0℃和7.0;在1 g/L的尼古丁浓度下具备较快的尼古丁降解速率,培养18 h时尼古丁降解率可达到90%以上;尼古丁浓度≥4 g/L时菌株生长受到明显抑制;与目前报道的节杆菌属降解途径不同,该菌株降解尼古丁过程中产生了新的终产物N-甲基吡咯烷酮、可替宁及中间产物麦斯明。【结论】本研究分离鉴定到一株具有较快尼古丁降解速率的节杆菌,该菌株很可能存在新的尼古丁降解途径。  相似文献   

8.
【背景】近年来,苯胺类化合物加重了生态环境的污染,而生物法处理苯胺类废水具有较大发展潜力与广阔的应用前景。【目的】从长期受苯胺类化合物污染的活性污泥中分离获得一株能高效降解苯胺的菌株,优化其培养基及降解条件,为苯胺生物修复提供菌株与基因资源。【方法】采用平板法从富集驯化的菌株中筛选出以苯胺为唯一碳氮源和能源的高效降解菌,通过16S rRNA基因测序鉴定菌种,利用单因素筛选实验对降解条件进行优化,通过正交试验优化培养条件。【结果】筛选到一株苯胺降解菌BA-6,经鉴定为微杆菌属(Microbacterium)。菌株BA-6对初始浓度为600mg/L苯胺的日降解率可达98%以上。其高效降解的温度范围是30–37℃,pH范围是6.5–7.5。底物利用实验表明,菌株BA-6具有降解多种苯胺类化合物的能力。发酵培养基优化实验获得一种发酵培养基,活菌量高达3.06×1010CFU/mL。【结论】苯胺降解菌BA-6对苯胺有较强的降解能力和环境调节能力,在修复苯胺类化合物的生态污染方面有一定的应用前景。  相似文献   

9.
【目的】评价裂褶菌cfcc7252菌株降解孔雀石绿(Malachite Green,MG)的能力及其潜在的应用价值。【方法】采用单因子液体培养实验,研究了通气、p H、温度、碳源和氮源种类及浓度、金属离子、盐度、染料浓度对该菌降解效果的影响;采用平皿培养实验,利用植物种子萌发和微生物抑菌实验对降解产物进行毒性测试。【结果】研究结果表明,裂褶菌cfcc7252菌株在好氧和厌氧条件下均能高效降解MG。该菌在10.0 g/L葡萄糖,5.0 g/L酵母浸粉,0.01 mmol/L Zn2+,p H为4.0的液体培养基中培养36 h,对350 mg/L的MG降解率达67.8%;连续降解7次后,其降解率还能保持在95.4%以上。此外,该菌在盐度低于10.20%时,其对MG的降解率均达到98%以上。对植物、微生物的毒性测试结果表明,MG降解产物对红豆、豌豆等植物、金黄色葡萄球菌、枯草芽孢杆菌和铜绿假单胞杆菌等微生物基本没有毒性。【结论】裂褶菌cfcc7252菌株在处理以MG为主的染料废水时具有很强的应用潜力。  相似文献   

10.
【背景】玉豆轮作过程中,玉米田中长残留除草剂阿特拉津易对下茬大豆作物产生不良影响。【目的】从黑龙江省安达市的农田土筛选一株能适应该土壤环境生长的阿特拉津降解菌并研究其降解特性。【方法】利用富集培养法,分离、筛选一株阿特拉津高效降解菌并结合外观形态、生理生化及16SrRNA基因序列测定对其进行鉴定,通过单一变量法设置不同的碳源、pH、温度和阿特拉津浓度,研究降解菌株最佳发酵及降解条件。【结果】得到一株在BSM-G中能够以阿特拉津为唯一氮源生长的高效阿特拉津降解菌AD111,鉴定为马德普拉塔无色小杆菌(Achromobacter marplatensis)。菌株AD111降解阿特拉津的最适温度为35℃,最适pH为8.0,最佳碳源为蔗糖,24 h内对浓度为50 mg/L的阿特拉津降解率达到99.7%,对300 mg/L的阿特拉津降解率达到81.9%。【结论】降解菌AD111具有较好的环境适应及阿特拉津降解能力,为解决黑龙江偏碱土壤中阿特拉津残留提供了良好的候选菌株。  相似文献   

11.
Carrot (Daucus carota L.) cells respond to treatment with fungal elicitors by synthesizing wallbound p-hydroxybenzoic acid (p-HBA). The biosynthetic pathway to p-HBA is still hypothetical. Tracer experiments with l-phenylalanine indicate the involvement of the general phenylpropanoid pathway. 3,4 (Methylenedioxy) innamic acid, an inhibitor of hydrocycinnamate CoA ligase, inhibits the accumulation of anthocyanins in carrot, while it does not interfere with p-HBA synthesis. Thus p-HBA biosynthesis does not appear to involve CoA thioesters. In the present report the sequence of enzymic reactions leading to p-HBA was investigated in vitro using protein preparations from cells treated with a fungal elicitor from Pythium aphanidermatum (Edson) Fitzp. The side-chain degradation from p-coumaric acid to p-HBA is not analogous to the -oxidation of fatty acids and involves p-hydroxybenzaldehyde as an intermediate. The final step from p-hydroxybenzaldehyde to p-HBA is catalyzed by an NAD-dependent p-hydroxybenzaldehyde dehydrogenase (EC 1.2.1.-). This reaction was characterized with regard to cofactor requirements, pH and temperature optima. The in-vitro formation of p-HBA from p-coumaric acid and the activity of the hydroxybenzaldehyde dehydrogenase are moderately elicitor-induced but to a much lesser extent than phenylalanine ammonialyase, which is the starting enzyme of the general phenylpropanoid pathway.Abbreviations HPLC high-performance liquid chromatography - MDCA 3,4-(methylenedioxy)-cinnamic acid - p-HBA p-hydroxybenzoic acid This work was supported by a grant from the Deutsche Forschungsgemeinschaft and a sholarship of the Land Baden-Württemberg (J.-P. S.).  相似文献   

12.
We report here the accumulation of p-hydroxybenzoic acid in Agrobacterium rhizogenes-induced hairy root cultures of Daucus carota. This phenolic acid finds application in food, pharmaceutical and polymer industries. Metabolic profiling of phenolics by HPLC/ESI-MS from these hairy roots showed a considerable amount of p-hydroxybenzoic acid accumulation both in cytosol and in the cell wall. Analyses of HCl and NaOH treated soluble phenolic fractions resulted in the elution of peaks with same retention time and similar UV-absorption spectra as observed with p-hydroxybenzoic acid standard. This suggests that p-hydroxybenzoic acid is present in the cytosol as free-form (unconjugated). A correlation has been drawn between the accumulation of soluble and wall-bound phenolic acids on a time-course basis. An apparent absence of any p-hydroxybenzoic acid-glucoside supports this observation, which in turn encourages the idea of its incorporation in the cell wall in an alkaline-labile form.  相似文献   

13.
14.
Corynebacterium cyclohexanicum grows well on cyclohexane carboxylic acid as the sole carbon source, and accumulates a large amount of 4-ketocyclohexanecarboxylic acid in the culture medium at an early growth phase. When this keto acid was aerobically incubated with a crude extract of the organism, an acidic product was produced. Under anaerobic conditions, the same product was obtained using K3Fe(CN)6 as electron acceptor. The product was identified as p-hydroxybenzoic acid by means of gas-liquid chromatography, infrared spectroscopy, and mass spectroscopy. Two pathways are proposed for the aromatization of 4-ketocyclohexanecarboxylic acid.  相似文献   

15.
A technique of experimental adaptation was used to obtain mutants of Candida tropicalis which were able to utilize p-hydroxybenzoic acid as the sole source of carbon and energy. The preparatory metabolism of p-hydroxybenzoic acid involves the following stages: PHBA leads to quinol leads to hydroxyquinol leads to maleylacetic acid leads to beta-ketoadipic acid. The enzyme system which catalyzes oxidative decarboxylation of PHBA mediates also oxidative decarboxylation of protocatechuic, beta-resorcylic and gallic acids, i.e. compounds having a hydroxyl group in para position with respect to the carboxyl of hydroxyl derivatives of benzoic acid. Benzoic, salicyclic and gentisic acids are not substrates of this enzyme system. A technique is proposed for rapid indentification of beta-ketoadipic acid by thin-layer chromatography. The authors believe that methods used to study preparatory metabolism, on the basis of the Stanier theory of "simultaneous adaptation", are not quite reliable and may lead to erroneous conclusions.  相似文献   

16.
A series of recombinant Escherichia coli strains have been constructed and evaluated for their ability to synthesize p-hydroxybenzoic acid from glucose under fed-batch fermentor conditions. The maximum concentration of p-hydroxybenzoic acid synthesized was 12 g/L and corresponded to a yield of 13% (mol/mol). Synthesis of p-hydroxybenzoic acid began with direction of increased carbon flow into the common pathway of aromatic amino acid biosynthesis. This was accomplished in all constructs with overexpression of a feedback-insensitive isozyme of 3-deoxy-D-arabino-heptulosonic acid 7-phosphate synthase. Expression levels of enzymes in the common pathway of aromatic amino acid biosynthesis were also increased in all constructs to deliver increased carbon flow from the beginning to the end of the common pathway. A previously unreported inhibition of 3-dehydroquinate synthase by L-tyrosine was discovered to be a significant impediment to the flow of carbon through the common pathway. Chorismic acid, the last metabolite of the common pathway, was converted into p-hydroxybenzoic acid by ubiC-encoded chorismate lyase. Constructs differed in the strategy used for overexpression of chorismate lyase and also differed as to whether mutations were present in the host E. coli to inactivate other chorismate-utilizing enzymes. Use of overexpressed chorismate lyase to increase the rate of chorismic acid aromatization was mitigated by attendant decreases in the specific activity of DAHP synthase and feedback inhibition caused by p-hydroxybenzoic acid. The toxicity of p-hydroxybenzoic acid towards E. coli metabolism and growth was also evaluated.  相似文献   

17.
An automated procedure has been described based on the manual method of Hagen and Hagen [(1962) Canad. J. Biochem.40, 1129] which will rapidly and reproducibly measure glycerol concentrations. The method was developed primarily for the determination of glycerol in adipose tissue and various incubation media. The glycerol in solution is estimated by its partial conversion to dihydroxyacetone by glycerol dehydrogenase from Aerobacter aerogenes. The range of glycerol concentrations able to be measured is more extensive than with other automated methods.  相似文献   

18.
19.
In a culture medium of Streptomyces caeruleus MTCC 6638 grown with p-coumaric acid (5 mM) as the sole source of carbon, co-production of caffeic acid and p-hydroxybenzoic acid was observed. Both caffeic acid and p-hydroxybenzoic acid are important phenolic compounds with pharmaceutical importance. These biotransformed products were identified by high-performance liquid chromatography and electrospray ionization mass spectrometry. Obtained data suggest that p-coumaric acid was possibly utilized by two different routes, resulting in the formation of a hydroxycinnamate and a hydroxybenzoate compound. However, higher concentration of p-coumaric acid (10 mM) favoured caffeic acid formation. Addition of 5 mM p-coumaric acid into S. caeruleus cultures pre-grown on minimal medium with 1.0 g/l glucose resulted in the production of 65 mg/l caffeic acid. Furthermore, S. caeruleus cells were able to produce the maximum amount of caffeic acid when pre-grown on nutrient broth for 16 h. Under this condition, the addition of 5 mM p-coumaric acid was sufficient for the S. caeruleus culture to produce 150 mg/l caffeic acid, with a molar yield of 16.6% after 96 h of incubation.  相似文献   

20.
Sugarcane (Saccharum hybrids) was evaluated as a production platform for p-hydroxybenzoic acid using two different bacterial proteins (a chloroplast-targeted version of Escherichia coli chorismate pyruvate-lyase and 4-hydroxycinnamoyl-CoA hydratase/lyase from Pseudomonas fluorescens) that both provide a one-enzyme pathway from a naturally occurring plant intermediate. The substrates for these enzymes are chorismate (a shikimate pathway intermediate that is synthesized in plastids) and 4-hydroxycinnamoyl-CoA (a cytosolic phenylpropanoid intermediate). Although both proteins have previously been shown to elevate p-hydroxybenzoic acid levels in plants, they have never been evaluated concurrently in the same laboratory. Nor are there any reports on their efficacy in stem tissue. After surveying two large populations of transgenic plants, it was concluded that the hydratase/lyase is the superior catalyst for leaf and stem tissue, and further studies focused on this pathway. p-Hydroxybenzoic acid was quantitatively converted to glucose conjugates by endogenous uridine diphosphate (UDP)-glucosyltransferases and presumably stored in the vacuole. The largest amounts detected in leaf and stem tissue were 7.3% and 1.5% dry weight (DW), respectively, yet there were no discernible phenotypic abnormalities. However, as a result of diverting carbon away from the phenylpropanoid pathway, there was a severe reduction in leaf chlorogenic acid, subtle changes in lignin composition, as revealed by phloroglucinol staining, and an apparent compensatory up-regulation of phenylalanine ammonia-lyase. Although product accumulation in the leaves at the highest level of gene expression obtained in the present study was clearly substrate-limited, additional experiments are necessary before this conclusion can be extended to the stalk.  相似文献   

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