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1.
采用单基质及混合基质体系,探讨了白腐菌Pleurotus ostreatusBP对氮杂环化合物的降解规律.结果表明,在弱酸性环境下,白腐菌能有效降解喹啉和吲哚.单基质体系中,喹啉的降解率15d内能达到89.48%,98.17%的吲哚6d内被降解;混合基质体系中,基质(喹啉、吡啶、苯酚及氨氮)的加入能促进白腐菌对吲哚的降解,但(吲哚、吡啶、苯酚及氨氮)却抑制了白腐菌对喹啉的降解.不同基质体系中,白腐菌对喹啉和吲哚的降解分别遵循零级和一级反应动力学.相对单基质而言,混合基质的存在对白腐菌生物学特性产生明显影响,可缩短生长周期,提高生长速率和漆酶活性.漆酶存吲哚的降解中起着重要的作用,但不能完全决定喹啉的降解.图5表2参14  相似文献   

2.
微杆菌3-28对萘、菲、蒽、芘的降解   总被引:3,自引:0,他引:3  
研究了以多环芳烃为唯一碳源富集培养的微杆菌3-28对不同多环芳烃化合物(Polycyclic aromatichydrocarbons,PAHs)及混合PAHs的降解能力,以及在无机基础培养基中生长时PAHs浓度与一些主要环境因子如pH值、盐度、温度对细菌降解PAHs的影响.结果表明,微杆菌3-28X对萘、菲、蒽和芘均有较高的降解能力,112 h后萘与菲完全降解,而蒽和芘28 d的降解率分别为97.54%、90.2%.初始底物浓度会影响细菌生长速率,底物浓度过高不利于细菌生长.相同培养时间下多底物培养液中的菌群浓度明显高于单底物系统.微杆菌3-28能够在pH 6.0-9.0、盐度10~30g/kg,温度40~55℃的环境下生存,并保持较高的降解能力.图8参33  相似文献   

3.
用单基质及混合基质体系,探讨了白腐菌Pleurotus ostreatus BP对氮杂环化合物的降解规律.结果表明,在弱酸性环境下,白腐菌能有效降解喹啉和吲哚.单摹质体系中,喹啉的降解率15 d内能达到89.48%,98.17%的吲哚6 d内被降解;混合基质体系中,基质(喹啉、吡啶、苯酚及氨氮)的加入能促进白腐菌对吲哚的降解,但(吲哚、吡啶、苯酚及氨氮)却抑制了白腐菌对喹啉的降解.不同基质体系中,白腐菌对喹啉和吲哚的降解分别遵循零级和一级反应动力学.相对单基质而言,混合基质的存在对白腐菌生物学特性产生明显影响,可缩短生长周期,提高生长速率和漆酶活性.漆酶在吲哚的降解中起着重要的作用,但不能完全决定喹啉的降解.  相似文献   

4.
废水反硝化生物反应器中喹啉降解细菌的分离与特性   总被引:1,自引:0,他引:1  
杂环化合物喹啉是焦化等工业废水中的一种难降解化合物.有关喹啉微生物降解的研究还很有限,分离筛选多样的喹啉降解细菌,对认识喹啉的降解机制和强化废水中喹啉的降解具有重要意义.本研究通过富集和多种分离条件的培养,从焦化废水活性污泥及唪啉驯化的生物膜样品中分离获得56株与喹啉降解相关的菌株,以16S rDNA双酶切方法进行ARDRA分型,将这些菌株分为12个OTU.选取部分代表菌株进行16S rDNA测序分析,表明分离所获得的菌株主要是Ochrobactrum、Bacillus、Pseudomonas和Rhodococcus属的微生物.通过对部分菌株测定其喹啉降解能力.发现大部分菌株都能以喹啉为唯一碳源进行生长并高效降解喹啉,极少数菌株不能单独降解喹啉.降解喹啉的Ochrobactrum属菌株还未见报道.  相似文献   

5.
几种化感物质对杉木幼苗生长的影响   总被引:25,自引:1,他引:25  
采用培养皿滤纸法 ,研究了不同浓度的肉桂酸、苯甲酸、对羟基苯甲酸对杉木 (Cunninghamialanceolata)幼苗生长的影响 .结果表明肉桂酸、苯甲酸、对羟基苯甲酸分别在 1× 10 -5molL-1、1× 10 -3molL-1、1× 10 -4 molL-1浓度时降低了叶绿素含量 (P =0 .0 5 ) ,而在 1× 10 -6molL-1、1× 10 -4 molL-1、1× 10 -5molL-1浓度时抑制了杉木幼苗胚根和胚芽的生长 (P =0 .0 1) .3种酚类物质对胚根生长的抑制作用明显高于对胚芽生长的抑制作用 .在 3种酚类物质中 ,肉桂酸对杉木幼苗生长的抑制作用最强 ,对羟基苯甲酸次之 ,苯甲酸最弱 .这表明酚类物质能在不同程度上抑制杉木幼苗的生长 ,降低其生产力 ,可能是连栽杉木人工林生产力降低的因素之一 .图 2表 1参 14  相似文献   

6.
以大环多胺镍配合物[NiL](ClO_4)_2为催化剂(L=1,8-二甲基-1,3,6,8,10,13六氮杂十四烷),H2O2为氧化剂,碱性品红为底物,研究了催化剂用量、氧化剂投入量、底物浓度、反应溶液pH值、反应温度、常见阴离子和天然有机物对催化反应效率的影响.结果表明,反应体系p H=6,催化剂浓度200μmol·L~(-1),碱性品红浓度15 mg·L~(-1),氧化剂投入量0.12 mol·L~(-1),在50℃下反应催化速率达最大值,10 min内碱性品红脱色率96.7%.通过自由基淬灭实验和电子顺磁共振测试发现[NiL](ClO_4)_2-H_2O_2反应体系中主要起氧化降解作用的自由基是O_2~-·,并推测反应机理为:过氧化氢与大环多胺镍配位化合物的中心离子镍配位,形成一个五配位的配位化合物,配位化合物在溶液中分解能给出超氧离子,超氧离子降解碱性品红.  相似文献   

7.
新农药氯虫酰胺在醇液中的光解   总被引:1,自引:0,他引:1  
分别以氙灯和紫外灯为光源,对氯虫酰胺在甲醇和乙醇中的光解动力学及降解机理进行了研究。结果表明,在氙灯和紫外照射下,氯虫酰胺在甲醇和乙醇中的光解符合一级反应动力学规律。在模拟太阳光氙灯辐射下,氯虫酰胺在甲醇和乙醇中的光解半衰期分别为1.58h和2.57h,而紫外光辐射下分别为1.49min和1.60min。采用LC-MS对氯虫酰胺光解产物进行分离和鉴定,推断氯虫酰胺在醇中的光解途径主要涉及到分子环合和重排生成光解产物A[2-(2-溴-4H-吡唑并[1,5.d]吡啶并[3,2-b]B,4]恶嗪-4-基亚氨基)-5-氯-N,3-二甲基苯甲酰胺]和B[2-(3-溴-1-(3-羟基吡啶-2-基)-1H-吡唑-5-基)-6-氯-3,8-二甲基喹啉-4(3H)-酮1。  相似文献   

8.
杀虫单降解菌的筛选分离与降解特性研究   总被引:8,自引:0,他引:8  
从农药厂废水排放沟污泥中分离到一株对杀虫单有较强降解能力的菌株LY-4,经鉴定为巨大芽孢杆菌(Bacillus megaterium)。其生长的最适pH为7,最适温度为30℃。该菌对杀虫单有很强的耐受性,在杀虫单浓度ρ=5000mg/L时,仍能较好地生长并发挥降解作用。当杀虫单初始浓度高于一定值时,一定量的菌剂对杀虫单的降解率随底物浓度的提高而降低,而绝对去除量则随底物浓度的提高而提高。与不加菌的对照相比,加入LY-4后,可使杀虫单浓度在很短的时间内降到很低的水平。图5表1参6  相似文献   

9.
从3种污泥中驯化筛选出10种菌株,研究了各菌株对油制气废水不同污染指标的处理能力差别,以及各菌株对废水中芳烃化合物的降解能力.结果表明,各菌株可在初始阶段提高废水的BOD值,在高低废水浓度条件的降解能力基本一致;酚的去除率可达93.9%,但对废水中氨氮的去除率小于27.3%;实验采用的3种菌株对废水中的芳烃化合物都能降解,但其对芳环数≤3的芳烃化合物的降解能力强于对芳环数为4~6的芳烃化合物的降解能力.图4表2参10  相似文献   

10.
细胞色素P450酶(P450)的分子改造及其催化的生物转化是当前的两个研究热点.本研究以扩展P450 2A6的底物适应性为目标,通过尝试对P450 2A6酶进行N-端修饰提高表达量、筛选随机突变库以及点突变改变活性位点重要氨基酸残基等手段,在两个随机突变体中未筛选到功能突变体,但通过点突变重要氨基酸残基获得了新的突变体P450 2A6 (N297Q/I300A).该突变体具有比野生型和已报道的其它突变体更广泛的底物适应性,能够催化氧化大位阻底物6-苄氧基吲哚(6-OBzl-indole)生成蓝绿色物质.该物质经质谱测定为靛蓝类二聚体化合物.实验表明,其中两个氨基酸残基的变化都是关键突变,此结果与最新的P450 2A6突变体晶体结构研究相符.计算机模拟显示,I300A突变导致活性口袋在铁卟啉环的垂直和水平方向都增大,使其能接纳在两个方向都有位阻的底物;而297位的天冬酰胺是一个功能保守的残基,N297Q的变化可能与氢键等弱作用有关.图4表1参29  相似文献   

11.
多环芳烃降解菌ZL5分离鉴定及其降解质粒   总被引:13,自引:3,他引:13  
通过选择性富集培养,从辽河油田石油污染土壤中分离到一株多环芳烃(PAHs)降解菌ZL5.它能以菲和芘为唯一碳源生长,但是不能利用萘.16S rDNA核苷酸序列分析结果表明,ZL5属于变形细菌α亚类中的鞘氨醇单胞菌属.该菌株含有一个大小约为60kb的质粒.丝裂霉素C消除实验表明,随着质粒的丢失,菌株利用菲和芘的能力也丧失.用电转化和氯化铷转化法分别将菌株ZL5的质粒导人大肠杆菌JM109和DH5α中,随着质粒的获得,这些转化子获得了降解菲和芘的能力.本研究结果表明,鞘氨醇单胞菌ZL5降解PAHs的功能和质粒有关。  相似文献   

12.
王小 《环境化学》2003,22(4):324-328
利用发光细菌新鲜菌悬液进行毒性测试,研究了O3/UV降解喹啉过程中的毒性变化.研究表明,在选取的浓度范围内,无论是HgCl2还是喹啉,发光细菌发光抑制率(或相对发光量)与物质浓度的对数均呈线性关系.采用处于对数生长期初期的发光细菌进行毒性测试时的灵敏度和最低检测限都很理想,适合于毒性测试.O3/UV降解喹啉时,体系毒性出现先迅速上升并保持一段时间随后缓慢下降然后又缓慢上升的现象.O3/UV降解喹啉过程中产生了毒性更强的中间产物,这些产物是导致体系毒性上升的主要因素。  相似文献   

13.
Xanthoceras sorbifolia Bunge with tumor roots was discovered, and the endophytic bacteria that were isolated from the tumor roots were purified and identified. This paper aimed to study the characteristics of endophytic bacteria. The CAS detection plate, Salkowski colorimetry, phosphate solubilizing circle, and molybdenum antimony spectrophotometry were used to analyze endophytic bacteria ability, which produced siderophores, secreted indole-3-acetic acid (IAA), and dissolved phosphorus. Strains were isolated from the tumor roots through morphological and molecular identification, and they were named XSB1-XSB9, of which 6 strains belonged to Bacillus sp., 2 strains belonged to Brevibacillus sp., and 1 strain belonged to Pseudomonas sp. All 9 strains produced siderophores; strains XSB3, XSB4, XSB8, and XSB9 were extremely high yielding, and strains XSB5 and XSB6 were high yielding. The strains with high yields were XSB3, XSB4, XSB5, XSB6, XSB8, and XSB9 and accounted for 66.7% of the tested strains. Nine strains secreted IAA; the concentration of IAA secreted by the strains that contained tryptophan was between 15-50 mg/L, and the concentration of IAA secreted by the one strain without tryptophan was between 10-35 mg/L. The IAA ability of the XSB2, XSB3, XSB4, XSB5, and XSB9 strains were significantly different (P < 0.05) after adding tryptophan. These results indicate that the synthesis of IAA may be the tryptophan synthesis pathway where tryptophan is used as a precursor. All 9 strains had some ability to dissolve phosphorus. The concentration of phosphate in the solubilizing strains, XSB1, XSB2, XSB4, and XSB5, were significantly higher than that in the other strains (P < 0.01), and the concentration of phosphate solubilizing was between 50-90 mg/L; the ability to dissolve phosphate was increased by 19-29 times. The XSB4 and XSB5 strains, which produced siderophores, secreted IAA and had a strong capacity to dissolve phosphorus, may be candidate strains for promoting growth. This research provides the foundation for the development and utilization of rhizosphere microbes to understand the resistance mechanisms and cultivation level of X. sorbifolia. © 2018 Science Press. All rights reserved.  相似文献   

14.
对蒽生物降解中铜绿假单胞菌S6分泌的生物表面活性剂的作用进行了研究.结果表明,在接种蒽降解菌A10之前1d及与接种A10同时投加60mg.l-1的生物表面活性剂能够最大程度地促进蒽降解,相比于未添加表面活性剂的样品,降解率分别提高了16.50%和18.03%.过高浓度的生物表面活性剂会在一定程度上抑制蒽的降解.对蒽降解过程的分析表明,提前投加生物表面活性剂能明显促进蒽的降解且一直保持较好的降解效果.蒽降解过程中,生物表面活性剂能够被微生物利用,具有生物可利用性,是一种环境友好的生物制剂.  相似文献   

15.
The ability of microbial populations to mediate the anaerobic transformation of four aromatic compounds (aniline, benzoic acid, pyridine, and quinoline) in sediments of the Tsengwen River was examined. Along the river, from a freshwater (0.0° salinity) to an oceanic (37.0° salinity) environment, five sampling stations were chosen to collect the sediment. Sediment slurries were incubated in an anaerobic mineral salts medium that was amended with multiple electron acceptors, including manganese (IV) and ferric (III) oxides, and the concentrations of the aromatic substrates were followed over a 3- to 4-month period. Most sediment samples showed a complete loss of benzoic acid and quinoline (0.12–0.21 mM) within approximately three months. Pyridine was transformed after a lag period of 53 days in the sediment slurries from the freshwater environment which had been amended with both metal oxide (either Fe (OH)3 or MnO2) and inhibitor (either BESA or molybdate). Pyridine was not transformed in other sediment slurries. No significant metabolism of aniline was apparent in any of the sediments.  相似文献   

16.
甲基对硫磷降解菌DLL-1的分离、鉴定及降解性研究   总被引:13,自引:0,他引:13  
从长期施用甲基对硫磷的污染土壤中分离到一株能以甲基对硫磷为唯一碳源生长且能将其完全矿化的细菌 D L L- 1 ,经鉴定,为邻单胞菌( Plesiomonas sp .) .该菌株3 h 内对50 mg/ L甲基对硫磷的降解率为93 % ,24h 内对50 mg/ L甲基对硫磷的降解率为95 % 以上.在葡萄糖铵盐培养基中, D L L1 对甲基对硫磷的耐受浓度和降解速度均增大.降解曲线表明延滞期内,菌体依靠上一生长阶段分泌的酶类对甲基对硫磷进行降解,一旦菌体开始生长,则检测不到中间代谢产物对硝基苯酚的存在.生长情况和粗酶液试验均显示 D L1 优良的降解性状  相似文献   

17.
从有机磷生产厂家的下水道污泥中分离出一株对高浓度和低浓度乙酰甲胺磷都具有高效降解能力的寡营养菌YAL-2,根据形态、生理生化和16S rRNA基因系统发育分析,将菌株YAL-2鉴定为Methylobacterium sp.降解特性实验表明,菌株YAL-2能利用乙酰甲胺磷为唯一碳源生长和降解;在添加了甲醇的无机盐培养基中,84 h可完全降解300mg L-1乙酰甲胺磷,24 h将50 mg L-1和10 mg L-1乙酰甲胺磷降至非检测水平;4 d能完全去除100 mg L-1甲胺磷,5 d分别降解58.4%和40.6%的100 mg L-1乐果、敌敌畏.小青菜农药残留去除实验显示,菌株YAL-2可在7 d内将乙酰甲胺磷和甲胺磷将至限量水平.结果表明,将菌株YAL-2应用于保证果蔬等食品的食用安全是可行的.  相似文献   

18.
About 10 billion tons of chitin, a natural polymer, is generated annually. However, the utilization of chitin was hindered because of the lack of a clean and effective degradation process. In this study, bacterial strains with chitosanase-producing ability were isolated from soil and identified using 16S rDNA, gyrA, and gyrB gene sequence analysis. In addition, the degradation of insoluble chitin and antifungal capability of the bacterial strains were investigated. One selected isolate was identified as Bacillus amyloliquefaciens strain MY001. It showed antagonistic effect on Phomopsis asparagi (Sacc.) Bubak and could degrade insoluble chitin. The combination of chitin/chitosan and MY001 strain could enhance the inhibition on the growth of P. asparagi. In conclusion, strain B. amyloliquefaciens MY001 can directly degrade chitin. The combination of MY001 strain with chitin shows more effective inhibition on P. asparagi growth. These results suggest the direct utilization of chitin against fungal diseases of crops. © 2018 Science Press. All rights reserved.  相似文献   

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