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1.
曲霉M—2降解有机磷农药(甲胺磷)的研究   总被引:24,自引:0,他引:24  
分离了一株能降解甲胺磷的曲霉M-2。M-2能以甲胺磷为唯一碳源、氮源及磷源生长。在0.2%甲胺磷无机盐发酵液中,培养5d后,降解率达81.5%。添加少量有机氮能促进M-2对甲胺磷的利用。  相似文献   

2.
目的 分离、筛选降解海水养殖区甲胺磷的降解菌及确定最适的降解条件.方法 从被有机磷污染的海水样中分离,以有机磷为唯一碳源反复驯化,分离筛选出1株高效降解甲胺磷的菌株M-1,并对其降解能力和所需条件进行测试.结果 初步鉴定菌株M-1属于蜡样芽胞杆菌,菌株M-1最适生长温度和pH分别为25和8.0.Zn^2+(200 mg/L),Cd^2+(50 mg/L)与pb^2+(200 mg/L)不影响菌株M-1对甲胺磷的降解作用,但Cu^2+(50mg/L),Cr^2+(50 mg/L)对菌株M-1有毒性作用.结论 海洋微生物在甲胺磷污染的海水养殖区自净中起着重要作用.  相似文献   

3.
目的分离及筛选降解海水养殖区甲胺磷的降解菌,并确定最适的降解条件。方法从被有机磷污染的海水样中分离,以有机磷为唯一碳源反复驯化,分离筛选出1株高效降解甲胺磷的菌株M-1,并对其降解能力和所需条件进行测试。通过离子交换层析、凝胶过滤层析等方法从发酵液中分离纯化了有机磷农药降解酶。结果初步鉴定菌株M-1属于腊样芽胞杆菌。菌株M-1最适生长温度和pH分别为25℃和8.0。Zn^2+(200mg/L)、Cd^2+(50mg/L)与Pb^2+(200mg/L)不影响菌株M-1对甲胺磷的降解作用,但Cu^2+(50mg/L)、Cr^2+(50mg/L)对菌株M-1有毒性作用。SDS-PAGE测得降解菌的有机磷农药降解酶的分子质量约为45kD。结论海洋微生物在甲胺磷污染的海水养殖区自净中起着重要作用。  相似文献   

4.
[目的]探究微生物对农药乙酰甲胺磷的生物降解作用。[方法]利用筛选培养基从土壤中分离乙酰甲胺磷降解性菌株,对其中一株降解性能较好的菌株YJ1进行分析,扩增菌株16S r DNA,测序并构建系统演化树,结合生理生化性质,初步确定其分类地位,并检测该菌株对乙酰甲胺磷的降解性能。[结果]乙酰甲胺磷降解菌株YJ1属于芽孢杆菌属,可以在乙酰甲胺磷为唯一碳源的环境中存活;该菌株在乙酰甲胺磷含量为1 200 mg/L的培养基中生长良好;在p H7~10碱性条件下,该菌株在乙酰甲胺磷液体培养基中生长较好,酸性条件不利于其生长;该菌株在72 h对乙酰甲胺磷降解率可达100%,具有很高的乙酰甲胺磷降解活性。[结论]所发现的芽孢杆菌YJ1可用于乙酰甲胺磷的生物降解。  相似文献   

5.
于颖  周启星 《应用生态学报》2005,16(9):1761-1764
利用塑料根际盒研究了甲胺磷在黑土和棕壤大豆根际和非根际环境中的降解脱毒行为.结果表明,甲胺磷虽是急性毒性较高的农药,但在土壤环境中能很快降解,并且同等条件下,甲胺磷在黑土中的残留量普遍低于棕壤.在无大豆种植情况下(对照处理),培养试验第2天,棕壤甲胺磷残留量约为33%,黑土只有26%.在大豆根际圈中,甲胺磷的降解明显加快,尤其是在黑土中.第9天,根际盒中层黑土和棕壤的农药残留分别比无植物对照低87.5%和76.0%.甲胺磷的土壤降解过程符合一级动力学方程,降解半衰期为2 d左右.  相似文献   

6.
真菌降解木质纤维素的功能基因组学研究进展   总被引:4,自引:0,他引:4  
田朝光  马延和 《生物工程学报》2010,26(10):1333-1339
木质纤维素利用的核心问题之一是生物质的降解,即如何将生物质由高聚大分子降解为可发酵的小分子糖,又称为糖化。自然界中向胞外大量分泌降解生物质酶类的微生物主要是真菌,研究真菌木质纤维素降解途径的分子机理对生物质的综合利用意义重大,是木质纤维素能否实现全面生物炼制的关键之一。以下将针对真菌降解木质纤维素的研究进展,特别是对利用功能基因组学所取得的进展进行评述。  相似文献   

7.
解淀粉芽胞杆菌(Bacillus amyloliquefaciens)能产生多种有研究价值的酶类,其酶具有明显的多样性,在众多领域,如轻工业、农业、种植业、养殖业、食品加工业、果蔬的采后保鲜、饲料业等行业具有重要价值。对解淀粉芽胞杆菌产生的不同类型的蛋白酶、降解多糖的重要酶类、脂类代谢相关的酶类以及其他几种重要的酶类进行了归类,并对其在各领域的应用及前景进行综述。  相似文献   

8.
茶叶上拟除虫菊酯类农药降解菌的分离及其特性   总被引:17,自引:0,他引:17  
生物修复对降解污染基质中的农药是一种对环境有益的方法。目标是要寻找能够降解在茶叶生产中使用的拟除虫菊酯类农药的降解菌。最终在福州某茶园经农药处理过的茶叶中分离降解菌。首先在富集培养基中筛选,接着在以农药为唯一碳源的基础培养基中连续筛选。结果发现,其中一株标号为c1f6的菌株生长的特别良好,经AMS-VITEK120全自动微生物分析系统鉴定,为假单胞菌属的一个未知种。采用HP6890气相色谱仪测定菌株对拟除虫菊酯类农药联苯菊酯、甲氰菊酯和氯氰菊酯的降解率。在pH7.0的基础培养基发酵液中,以各加100mg·L-1这3种农药为唯一碳源,30℃振荡培养,接种c1f6后3d,这3种农药的降解率分别为55.64%、44.56%和52.19%。采用光密度测定的菌株生长值和农药降解率的关系曲线表明,在基础培养基中,农药降解和菌株生长成正相关,说明菌株能以拟除虫菊酯类农药为唯一碳源和能源进行生长。采用同样的方法测定表明,菌株c1f6对有机磷农药也有一定的降解力,3d对甲胺磷和毒死蜱的降解率分别为27.67%和12.35%。因此,假单胞菌c1f6是一株较广谱的农药降解菌,有望用于生物修复过程,以减少茶叶栽培过程中的产品和环境污染。  相似文献   

9.
【目的】从巢湖底泥中分离筛选高效的藻毒素降解菌,并初步研究其胞内粗酶液降解藻毒素-LR(MC-LR)的特性,为水体中藻毒素污染的微生物治理提供有效的菌源与理论依据。【方法】利用富集驯化培养技术,以MC-LR为唯一碳源,分离筛选MC-LR降解菌,通过形态观察、生理生化实验及16S rRNA序列分析鉴定菌株,并考察其胞内粗酶液在不同条件下对MC-LR的降解特性。【结果】分离得到1株能高效降解MC-LR的菌株M6。分子鉴定结果表明,该菌株为蜡状芽胞杆菌(Bacillus cereus)。其降解MC-LR的活性物质为胞内酶,而且至少有3种酶参与了MC-LR的降解,它们是菌体本身的组织酶而非诱导酶。当反应体系pH值为8.0,胞内粗酶液浓度为404.9 mg/L,MC-LR的初始浓度为10 mg/L时降解率最高,16 h可达98.7%。【结论】分离出的MC-LR降解菌为蜡状芽胞杆菌,该菌株对MC-LR有较高的降解能力,并且酶促反应受到反应体系的pH值、胞内粗酶液浓度以及藻毒素初始浓度等因素的影响。  相似文献   

10.
甲胺磷降解细菌的分离鉴定及其降解效能的研究   总被引:3,自引:0,他引:3  
从土壤中分离筛选获得两株对甲胺磷农药有较强降解效能的细菌,经鉴定分别为头状葡萄球菌(Staphylococcus capitis)(称为D菌)和粪产碱菌(Alcaligenes faecalis)(称为J菌)。D菌和J菌在甲胺磷浓度为500mg.L-1,30℃,180r.min-1摇床上用基础培养基中培养72h,对甲胺磷的降解率分别达到58.49%和65.80%。D菌和J菌混合培养可提高对甲胺磷的降解效能,对甲胺磷72h的降解率达到72.93%。  相似文献   

11.
Two forms of succinic semialdehyde dehydrogenase have been isolated in Klebsiella pneumoniae M5a1. The two enzymes could be separated by filtration on Sephacryl S-300 and their apparent molecular weights were approx. 275,000 and 300,000. The large enzyme is specific for NADP. The smaller enzyme, which is induced by growth on 3-hydroxyphenylacetic acid, 4-hydroxyphenylacetic acid, 3,4-dihydroxyphenylacetic acid and gamma-aminobutyrate, has been purified to 96% homogeneity by affinity chromatography. The NAD-linked succinic semialdehyde dehydrogenase was able to use NADP as cofactor. Its induction is coordinated with 3- and 4-hydroxylase, the enzymes which initiate degradation of 3- and 4-hydroxyphenylacetic acid. The NAD-linked form is also induced by exogenous succinic semialdehyde. The large enzyme is specific for NADP and has been isolated from a defective mutant which lacked the activity of the NAD-linked succinic semialdehyde dehydrogenase. Activity and stability conditions and true K m values for substrates and cosubstrates of the two enzymes were determined. Some aspects of the induction of the NAD-linked enzyme participating in the metabolism of 4-hydroxyphenylacetic and gamma-aminobutyrate were studied.  相似文献   

12.
Methamidophos is one of the most widely used organophosphorus insecticides usually detectable in the environment. A facultative methylotroph, Hyphomicrobium sp. MAP-1, capable of high efficiently degrading methamidophos, was isolated from methamidophos-contaminated soil in China. It was found that the addition of methanol significantly promoted the growth of strain MAP-1 and enhanced its degradation of methamidophos. Further, this strain could utilize methamidophos as its sole carbon, nitrogen and phosphorus source for growth and could completely degrade 3,000 mg l−1 methamidophos in 84 h under optimal conditions (pH 7.0, 30°C). The enzyme responsible for methamidophos degradation was mainly located on the cell inner membrane (90.4%). During methamidophos degradation, three metabolites were detected and identified based on tandem mass spectrometry (MS/MS) and gas chromatography-mass spectrometry (GC–MS) analysis. Using this information, a biochemical degradation pathway of methamidophos by Hyphomicrobium sp. MAP-1 was proposed for the first time. Methamidophos is first cleaved at the P–N bond to form O,S-dimethyl hydrogen thiophosphate and NH3. Subsequently, O,S-dimethyl hydrogen thiophosphate is hydrolyzed at the P–O bond to release –OCH3 and form S-methyl dihydrogen thiophosphate. O,S-dimethyl hydrogen thiophosphate can also be hydrolyzed at the P–S bond to release –SCH3 and form methyl dihydrogen phosphate. Finally, S-methyl dihydrogen thiophosphate and methyl dihydrogen phosphate are likely transformed into phosphoric acid.  相似文献   

13.
非水溶性甲胺磷降解酶的检测   总被引:3,自引:0,他引:3  
甲胺磷农药是一种水溶性广谱、剧毒杀虫剂,化学名称:O,S-二甲基胺基硫代磷酸酯.目前,它在我国的生产和使用量已相当可观,并由此造成了严重的生态破坏和环境污染[1].近几年,作者针对上述问题,结合国内外对甲胺磷代谢和有关酶知识缺乏了解的实际[2],开展...  相似文献   

14.
The possibility of using lysine-accumulating yeast cells as a rumen-stable source of lysine for ruminants was investigated. The Saccharomyces cerevisiae strain AJ14599 accomulated free lysine amounting to 15% of the dry weight of the cells when cultured in a medium with the lysine precursor, L-α-aminoadipate (AAA). A mutant, LA-1, which was induced from AJ14599 and resistant to S-(β-aminoethyl)-cysteine (AEC), accumulated 4% free lysine in AAA-free medium. In both LA-1 and AJ14599 cells, more than 90% of the free lysine was in vacuoles. In an in vitro evaluation, the intracellular lysine was stably maintained and protected from microbial degradation during incubation in intact rumen juice, but it was immediately and completely released in a digestive enzyme (pepsin) solution. Lysine in LA-1 cells was also nutritionally available for weanling rats. Thus, lysine-accumulating yeast cells were effective for use as a rumen-stable source of lysine.  相似文献   

15.
Two di-n-butyl phthalate (DBP)-degrading strains, designated as S-3 and H-2, were isolated from DBP-polluted soil and both identified as Paenibacillus sp. When DBP was provided as the sole carbon source, about 45.5 and 71.7 % of DBP (100 mg/L) were degraded by strain S-3 and H-2, respectively, after incubation for 48 h. However, DBP (100 mg/L) was degraded completely by co-culture of strain S-3 and H-2 after incubation for 60 h. Four phthalic acid (PA) esters could be utilized by co-metabolism in the study and the degradation rates followed the order of dimethyl phthalate > diethyl phthalate > DBP > dioctyl phthalate. The metabolic pathway of DBP was elucidated based on the results of metabolites identification and enzyme assays. For strain S-3, DBP was degraded into butyl hydrogen phthalate which was degraded to PA by carboxyesterase further. But PA could be not hydrolyzed further because strain S-3 lacked 3,4-phthalate dioxygenase. Different with S-3, strain H-2 could hydrolyze PA into 3,4-dihydroxy-PA by 3,4-phthalate dioxygenase. Then 3,4-dihydroxy-PA was converted to protocatechuate and benzoic acid. Finally, the aromatic ring was cleavage and mineralized to CO2 and H2O. Above all, co-metabolism could increase the activity of 3,4-phthalate dioxygenase and accelerated the degradation of DBP. This study highlights an important potential use of co-metabolic biodegradation for the in situ bioremediation of DBP and its metabolites-contaminated environment.  相似文献   

16.
Two forms of succinic-semialdehyde dehydrogenase have been isolated in Pseudomonas putida. The two enzymes could be separated by filtration on Sephacryl S-300 and their apparent molecular weights were approx. 200,000 and 100,000. The smaller enzyme, which is induced by growth on 4-hydroxyphenylacetate, has been purified to 88% homogeneity by anion-exchange and affinity chromatography. Electrophoresis in sodium dodecyl sulphate gave rise to a molecular weight of 53,000, indicating that the native enzyme is dimeric. Under standard assay conditions this enzyme acts preferentially with NAD but reduces NADP at 9% of the rate observed for NAD. The large enzyme, which is dependent on NADP, is induced by growth on putrescine and its induction is highly coordinated with putrescine: 2-oxoglutarate transaminase, gamma-amino-butyraldehyde dehydrogenase and gamma-aminobutyrate: 2-oxoglutarate transaminase activities. Activity and stability conditions and true Km values for substrate and cosubstrates of the two enzymes were determined.  相似文献   

17.
Catalase from the facultatively psychrophilic bacterium Vibrio rumoiensis S-1(T), which was isolated from an environment exposed to H(2)O(2) and exhibited high catalase activity, was purified and characterized, and its localization in the cell was determined. Its molecular mass was 230 kDa, and the molecule consisted of four identical subunits. The enzyme, which was not apparently reduced by dithionite, showed a Soret peak at 406 nm in a resting state. The catalytic activity was 527,500 U. mg of protein(-1) under standard reaction conditions at 40 degrees C, 1.5 and 4.3 times faster, respectively, than those of the Micrococcus luteus and bovine catalases examined under the same reaction conditions, and showed a broad optimum pH range (pH 6 to 10). The catalase from strain S-1(T) is located not only in the cytoplasmic space but also in the periplasmic space. There is little difference in the activation energy for the activity between strain S-1(T) catalase and M. luteus and bovine liver catalases. The thermoinstability of the activity of the former catalase were significantly higher than those of the latter catalases. The thermoinstability suggests that the catalase from strain S-1(T) should be categorized as a psychrophilic enzyme. Although the catalase from strain S-1(T) is classified as a mammal type catalase, it exhibits the unique enzymatic properties of high intensity of enzymatic activity and thermoinstability. The results obtained suggest that these unique properties of the enzyme are in accordance with the environmental conditions under which the microorganism lives.  相似文献   

18.
Human thymidylate synthase [EC 2.1.1.45] was purified to homogeneity and its NH2-terminal amino acid sequence was determined taking advantage of the following facts: i) The source of the enzyme was a transformant of mouse FM3A mutant cells which lacks mouse thymidylate synthase but overproduces human thymidylate synthase. ii) The enzyme could be purified on two kinds of affinity column, Cibacron blue dye-bound agarose and methotrexate-bound Sepharose. iii) The enzyme could finally be separated from a trace of impurities by electrophoresis on polyacrylamide gel containing sodium dodecyl sulfate. The purified human thymidylate synthase had a subunit with a molecular weight of 33,000, as determined by sodium dodecyl sulfate polyacrylamide gel electrophoresis. The enzyme was subjected to Edman degradation and the NH2-terminal 24 amino acids were sequenced by successive use of a high-sensitivity gas-phase protein sequencer and high performance liquid chromatography to be as follows: Pro-Val-Ala-Gly-Ser-Glu-Leu-Pro-Arg-Arg-Pro-Leu-Pro-Pro-Ala-Ala-Gln-Glu- Arg-Asp -Ala-Glu-Pro-Arg-.  相似文献   

19.
Pseudomonas mendocina KR1 grows on toluene as a sole carbon and energy source. A multicomponent oxygenase was partially purified from toluene-grown cells and separated into three protein components. The reconstituted enzyme system, in the presence of NADH and Fe2+, oxidized toluene to p-cresol as the first detectable product. Experiments with p-deutero-toluene led to the isolation of p-cresol which retained 68% of the deuterium initially present in the parent molecule. When the reconstituted enzyme system was incubated with toluene in the presence of 18O2, the oxygen in p-cresol was shown to be derived from molecular oxygen. The results demonstrate that P. mendocina KR1 initiates degradation of toluene by a multicomponent enzyme system which has been designated toluene-4-monooxygenase.  相似文献   

20.
Polymorphonuclear leukocytes have been shown to contain proteolytic enzymes which are capable of degrading connective tissue proteins such as native collagen. In this study, proteolytic enzymes were extracted from human polymorphonuclear leukocytes and a neutral proteinase was extensively purified and characterized. The activity of this enzyme was monitored by degradation of denatured [ 3H ]proline-labeled type I collagen or by cleavage of a synthetic dinitrophenylated peptide with a Gly-Ile sequence. The enzyme was readily separated from leukocyte collagenase by concanavalin-A--Sepharose affinity chromatography and further purified by QAE-Sephadex ion-exchange chromatography and gel filtration on Sephacryl S-200. The purified enzyme had a molecular weight of approximately 105000, its pH optimum was about 7.8, and it was inhibited by Na2EDTA and dithiothreitol, but not by fetal calf serum. The enzyme degraded genetically distinct type I, II, III, IV and V collagens, when in a non-helical form, but not when in native triple-helical conformation. Dansyl-monitored end-group analyses, combined with digestion by carboxypeptidase A, indicated that the enzyme cleaved denaturated type I collagen at Gly-Xaa sequences, in which Xaa can be leucine, isoleucine, valine, phenylalanine, lysine, or methionine. Thus, the purified enzyme referred to here as Gly-Xaa proteinase, is a neutral proteinase, which may be of importance in inflammatory disease processes by degrading further collagen peptides which have been rendered non-helical as a result of collagenase cleavage.  相似文献   

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