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1.
过氧化氢酶(catalase,CAT)是一种在食品、医疗、纺织等领域广泛应用的工业酶,具有催化效率高、专一性强、绿色环保等突出特点。工业中游离过氧化氢酶无法回收再利用,导致以其为核心的工业生物转化过程成本较高。开发一种简单、温和、低成本并且体现绿色化学理念的方法对过氧化氢酶进行固定化有望提高其利用率并且强化酶学性能,具有迫切的现实需求。本研究将源自枯草芽孢杆菌(Bacillus subtilis)168的过氧化氢酶KatA在大肠杆菌中进行重组表达,之后将分离纯化得到的纯酶以酶-无机杂化纳米花形式制备成固定化酶并进行酶学性质研究。结果显示,利用乙醇沉淀、DEAE阴离子交换层析、疏水层析3步纯化,最终获得电泳纯的重组KatA,之后通过优化制备条件获得了一种新型KatA/Ca3(PO4)2杂化纳米花固定化酶。酶学性质研究结果显示,游离酶KatA的最适反应温度为35℃,KatA/Ca3(PO4)2杂化纳米花的最适反应温度为30−35℃,二者最适反应pH值均为11.0。游离酶KatA和KatA/Ca3(PO4)2杂化纳米花在pH4.0−11.0和25−50℃条件下均表现出较好的稳定性。KatA/Ca3(PO4)2杂化纳米花显示出比游离酶KatA更好的储存稳定性,在4℃储存14d后仍保留82%的酶活力,而游离酶仅具有50%的酶活力。此外,纳米花在进行5次催化反应后仍具有55%的酶活力,表明其具有较好的操作稳定性。动力学研究结果显示,游离酶KatA对底物过氧化氢的Km为(8.80±0.42)mmol/L,kcat/Km为(13151.53±299.19)L/(mmol·s);而KatA/Ca3(PO4)2杂化纳米花的Km为(32.75±2.96)mmol/L,kcat/Km为(4550.67±107.51)L/(mmol·s)。与游离酶KatA相比,KatA/Ca3(PO4)2杂化纳米花对底物过氧化氢的亲和力下降,同时其催化效率也有所降低。综上所述,本研究以Ca2+作为自组装诱导剂,成功将KatA以酶-无机杂化纳米花形式制备成固定化酶,不仅对部分酶学性能实现了强化,而且为固定化过氧化氢酶的绿色制备和规模化应用奠定了基础。  相似文献   

2.
为探索贵州苗药光枝勾儿茶内生真菌类群特征、分布部位及其抑菌活性,该研究采用传统方法对贵州省贵阳市和黔西市光枝勾儿茶内生真菌进行分离,并基于分子生物学及统计学对其分类地位进行鉴定及多样性评价,最后通过微量肉汤倍比稀释法筛选具有抑菌活性的菌株。结果表明:(1)从光枝勾儿茶中分离到191 株内生真菌,隶属于3 个门5 个纲10 个目15 个科19 个属,优势属为叶点霉属(Phyllosticta)、间座壳属(Diaporthe)、葡萄座腔菌属(Botryosphaeria)和刺盘孢属(Colletotrichum)。(2)黔西光枝勾儿茶内生真菌香农-维纳多样性指数(H''Q=2.112)较贵阳(H''G=1.801)高,索伦森相似性指数CsG-Q为0.923,不同组织香农-维纳多样性指数为茎(H''S=2.004)>根(H''R=1.764)>叶(H''L=1.654)>果实(H''F=1.473),茎和叶内生真菌的索伦森相似性最高(CsS-L=0.667)。(3)筛选出的21株内生真菌对供试菌大肠杆菌(Escherichia coli)、金黄色葡萄球菌(Staphylococcus aureus)和沙门氏菌(Salmonella enterica)具有抑菌效果,其中Diaporthe sp. QX4G6对大肠杆菌、金黄色葡萄球菌和沙门氏菌的最小抑菌浓度分别为12.5、6.25、12.5 mg·mL-1,最小杀菌浓度分别为12.5、6.25、12.5 mg·mL-1。以上研究结果揭示了光枝勾儿茶蕴藏丰富的内生真菌资源,不同地区及组织内生真菌类群组成有差异,多个分离菌株具有抗菌活性,为光枝勾儿茶内生真菌天然抗菌药物或药源研发奠定了基础。  相似文献   

3.
为研究不同CO2浓度升高和氮肥水平对水稻叶绿素荧光特性的影响,利用由开顶式气室(OTC)组成的CO2浓度自动调控平台开展田间试验。以粳稻9108为试验材料,CO2浓度设置CK(对照,环境大气CO2浓度)、C1(CO2浓度比CK增加160 μmol/mol)和C2(CO2浓度比CK增加200 μmol/mol)3个水平;氮肥设置低氮(N1:10 g/m2)、中氮(N2:20 g/m2)和高氮(N3:30 g/m2)3个水平。结果表明,在低氮条件下,与CK相比,C1处理使拔节期的Fo上升4.8%(P=0.031);C2处理使拔节期的Fo上升6.3%(P=0.015),Fv/Fm下降4.8%(P=0.003),使孕穗期的Fo上升12.7%(P=0.039),Fv/Fo下降18.2%(P=0.039)。在高氮条件下,与CK相比,C2处理使灌浆期的FmFvFv/Fm分别下降3.6%(P=0.039)、4.9%(P=0.013)和1.3%(P=0.039)。在中氮条件下,与CK相比,C1和C2处理的影响不明显。在整个生育期内,CO2浓度升高与施氮处理交互作用对水稻叶绿素荧光特性的影响未到达显著水平。研究表明,大气CO2浓度升高使水稻叶片光系统Ⅱ受损,抑制其电子传递能力、电子受体QA氧化还原情况、最大光化学效率和潜在活性,通过适量施氮可以有效地缓解其负面效应。  相似文献   

4.
双须叶须鱼(Ptychobarbus dipogon Regan)隶属裂腹鱼亚科(Schizothoracinae)叶须鱼属(Ptychobarbus),是西藏特有经济鱼类,2016年被列入中国脊椎动物红色名录,必须加快推动该鱼的养护工作。2013年2~3月份及2014年2~6月份,在雅鲁藏布江谢通门段与支流拉萨河上游段采集1 030尾双须叶须鱼样本,以脊椎骨作为年龄鉴定材料进行年龄与生长特点研究,以期分析和评价该类群鱼类资源情况。研究结果如下:双须叶须鱼样本中最大年龄为49龄,最小年龄为4龄;体重与体长关系是样本总体W=4.4×10-5?SL2.7688、雌鱼W=5.0×10-4?SL2.3474、雄鱼W=2.8×10-5?SL2.8414;体长生长方程为雌鱼Lt(♀)=431.8[1-e-0.19t+1.19)],渐进体长L(♀)=431.8 mm,拐点年龄为3.3龄,雄鱼Lt(♂)=367.6[1-e-0.42t+3.37)],渐进体长L(♂)=367.7 mm;体重生长方程为雌鱼Wt(♀)=767.40[1-e-0.19t+1.19)]2.3474,雄鱼Wt(♂)=545.02[1-e-0.42t+3.37)]2.8414;群体异速生长指数b=2.768 8与匀速生长指数3存在显著性差异,即P<0.05。研究表明双须叶须鱼体趋向低龄化,应当予以充分关注。  相似文献   

5.
为研究蝎毒素BmkTXKβ对家兔心房肌细胞瞬间外向钾电流(Ito)的影响,采用全细胞膜片钳技术记录应用BmkTXKβ前后的Ito电流. 结果显示BmkTXKβ(1 μmol/L)使心房肌细胞Ito(刺激电压为+50 mV)从(13.63±0.87)pA/pF减少到(7.98±0.78)pA/pF,抑制率为41.4% (n=16, P<0.001).冲洗后, Ito部分恢复至(11.18±0.82)pA/pF (n=6, P<0.01,与给药后比较).在0.01~100 μmol/L范围内BmkTXKβ呈浓度依赖性地抑制Ito,IC50的均值为0.95 μmol/L (n=10, P<0.01),但无频率依赖性(n=6,P>0.05). 1 μmol/L的BmkTXKβ可使Ito通道的失活动力学曲线明显左移,V1/2分别为(-23.6±2.7) mV和(-35.3±3.6) mV(n=8,P<0.05),曲线斜率基本不变.同时可使Ito通道的恢复过程明显减慢,恢复曲线右移,τ值从(51.2±8.5) ms延长至(93.5±13.4) ms(n=9,P<0.01),但不影响其激活过程.据此推断BmkTXKβ对家兔心房肌细胞Ito具有显著的抑制作用,主要作用于失活过程,延长该通道的恢复时间.  相似文献   

6.
吴诗琪  潘凤  赵财 《广西植物》2023,43(11):2065-2077
为了探究西南地区野生刺梨(Rosa roxburghii)的遗传多样性和起源演化,该研究基于2段单拷贝核基因(GAPDH和ncpGS)和3段叶绿体基因(atpF-trnH、trnL-trnF和trnG-trnS)的拼接序列,对刺梨27个野生居群共320个个体进行PCR扩增和测序,并用相关软件对测序结果进行分析。结果表明:(1)在单拷贝核基因和叶绿体基因水平上刺梨均表现出较低的遗传多样性(scnDNA: Hd=0.469 2, π=0.000 49; cpDNA: Hd=0.653 4, π=0.000 65),并且不同居群间存在较大差异。(2)分子方差分析(AMOVA)结果均显示,遗传变异主要发生在居群内,表明居群内的变异是野生刺梨遗传变异的主要来源,居群间存在明显的遗传分化( cpDNA:FST=0.336 47,GST=0.273,NST= 0.308; scnDNA:FST=0.094 87,NST=0.076,GST=0.056),刺梨的分布不具有明显的谱系地理结构(P>0.05)。(3)中性检验 Tajima''s D值均为不显著负值,符合中性进化模型。Fu''s Fs值均为显著负值,结合失配分析曲线,推测刺梨种群在小范围内经历过扩张,但总体上维持稳定状态。(4)根据单倍型多样性得出,毕节地区的居群遗传多样性水平较高并且拥有丰富的单倍型,推测可能为冰期避难所,因此应对其实施就地保护。对于拥有特殊性状和特有单倍型的居群也应采取优先保护措施。该文为野生刺梨资源保护和遗传育种提供了一定的参考价值。  相似文献   

7.
曲豪杰  张涵丹  谭志超  陈光才 《生态学报》2020,40(19):6969-6981
通过野外调查、采样和实验室分析方法,研究优新景观树种纳塔栎(Quercus nuttallii)和柳叶栎(Quercus phellos)对湖南郴州Pb、Zn矿区复合污染土壤的适应性和修复潜力。试验设计A、B、E区种植1年生纳塔栎,C、D区种植1年生柳叶栎,1年后测量株高、地径、生物量等生长指标,随机采集植物全株及根际土壤,测试植物根际土壤和树木组织中的重金属含量。试验结果:Pb、Zn矿区土壤受到重金属Cd、Pb、Zn和As的复合污染,不同区域的土壤表现出污染异质性,采用单污染指数(Pi)和内梅罗指数(PN)评价不同地块的污染程度,A区尾矿库(PN=20.08)和B区(PN=3.14)为重度复合污染,C区(PN=2.43)为中度复合污染,D区(PN=1.55)和E区(PN=1.07)为轻微污染。纳塔栎和柳叶栎在以上不同污染地块均能正常生长,株高、地径和生物量与复合污染指数(内梅罗指数)及重金属含量呈负相关。其中纳塔栎对Cd的生物富集系数(BCF)在A、B、E区分别为6.27-8.37、3.67-4.38、42.93-52.75,高于C、D区柳叶栎对Cd的生物富集系数1.79-2.15、0.89-1.07。B-E区Zn的转运系数(TF)在1.79-2.28之间,A区Zn的转运系数为0.43。结论:纳塔栎和柳叶栎表现出较强的重金属耐性,对Cd具有较高的生物富集能力,对Zn具有较高的转运能力。其中纳塔栎对重金属积累能力较强,可作为亚热带地区铅锌矿区Cd、Pb、Zn、As复合污染土壤的植被恢复及生态修复候选树种。  相似文献   

8.
In sunflower (Helianthus annuus L.) grown under controlled conditions and subjected to drought by withholding watering, net photosynthetic rate (P N) and stomatal conductance (g s) of attached leaves decreased as leaf water potential (Ψw) declined from −0.3 to −2.9 MPa. Although g s decreased over the whole range of Ψw, nearly constant values in the intercellular CO2 concentrations (C i) were observed as Ψw decreased to −1.8 MPa, but C i increased as Ψw decreased further. Relative quantum yield, photochemical quenching, and the apparent quantum yield of photosynthesis decreased with water deficit, whereas non-photochemical quenching (qNP) increased progressively. A highly significant negative relationship between qNP and ATP content was observed. Water deficit did not alter the pyridine nucleotide concentration but decreased ATP content suggesting metabolic impairment. At a photon flux density of 550 μmol m−2 s−1, the allocation of electrons from photosystem (PS) 2 to O2 reduction was increased by 51 %, while the allocation to CO2 assimilation was diminished by 32 %, as Ψw declined from −0.3 to −2.9 MPa. A significant linear relationship between mean P N and the rate of total linear electron transport was observed in well watered plants, the correlation becoming curvilinear when water deficit increased. The maximum quantum yield of PS2 was not affected by water deficit, whereas qP declined only at very severe stress and the excess photon energy was dissipated by increasing qNP indicating that a greater proportion of the energy was thermally dissipated. This accounted for the apparent down-regulation of PS2 and supported the protective role of qNP against photoinhibition in sunflower.  相似文献   

9.
分别采用BATH和HIC方法测定青枯菌细胞表面疏水性(CSH), 并比较菌液与正十二烷比例(BATH方法)和菌液上样量(HIC方法)对CSH测定结果的影响。确定在BATH方法中菌液(OD600=0.5)与正十二烷的比例为2:1, HIC方法中菌液(OD600=1.0)上样量为0.2 mL; 在此条件下, BATH和HIC两种方法之间呈现出良好的线性关系(r=0.99)。进一步采用HIC方法测定青枯菌在生长过程中CSH的变化情况, 结果显示随培养时间的延长, CSH逐渐降低, 24 h后CSH趋于稳定, CSH与青枯菌细胞表面的EPSⅠ (胞外酸性多糖)含量呈负相关。3株不同致病强度的青枯菌的试验结果进一步验证了青枯菌细胞表面的CSH随EPSⅠ含量的增加而降低。  相似文献   

10.
槭叶铁线莲(Clematis acerifolia)为太行山特有植物,但数量稀少且分布零散,其生存状况受到学者和政府部门的高度关注。本文通过对河北省易县葫芦峪沟谷新发现的槭叶铁线莲群落的典型样地调查,以物种重要值作为生态位计量指标,对各物种生态位宽度、生态位重叠和生态位相似性进行了定量分析,对槭叶铁线莲的生存安全状况进行了评估。结果表明:在调查样地中共记录到14科15属17种植物,群落物种组成较为简单,槭叶铁线莲在大部分调查样地中的重要值最大,占据优势地位,其他物种重要值相对较低;群落内所有物种中,槭叶铁线莲的生态位宽度最大(Bi=6.264),绒毛绣线菊(Spiraea dasyantha)次之(Bi=5.144),其他种类较小;所有物种组成的136个种对中,生态位完全重叠(Qik=1)、重叠程度较高(0.5≤Qik<1)和重叠程度较低(Qik<0.5)的种对比例分别为8.09%、16.91%和75.00%,生态位完全相似(Cik=1)、相似程度较高(0.5≤Cik<1)和相似程度较低(Cik<0.5)的种对比例分别为8.09%、5.88%和86.03%,大部分物种之间生态位重叠程度和相似性都处于较低水平;槭叶铁线莲与其他物种构成的16个种对中,62.50%的种对生态位重叠程度较低(Qik<0.5),81.25%的种对生态位相似性程度较低(Cik<0.5),反映出群落内各物种间对资源和空间的竞争较为温和,群落较为稳定,槭叶铁线莲在其分布生境中生存状况相对安全;本文研究表明,利用生态位分析方法可以作为珍稀濒危物种生存状态和安全风险评估的一种方法。  相似文献   

11.
Summary The restriction of oxygen transfer in Ca-alginate beads used for the immobilization of microbial cells was applied to a coupled reductive and oxidative microbial degradation of the xenobiotic 4-chloro-2-nitrophenol (CNP). The conversion of CNP by Enterobacter cloacae under anaerobic conditions led to the formation of 4-chloro-2-aminophenol (CAP, 81%) and 4-chloro-2-acetaminophenol (CAAP, 16%) after 50 h incubation. CAP, the main reduction product, was further degraded under aerobic conditions by Alcaligenes sp. TK-2, a hybrid strain isolated by conjugative in-vivo gene transfer. Whereas both degradation steps excluded one another in homogeneous systems with free cells, a coupled reductive and oxidative degradation of CNP was observed in one aerated reactor system after co-immobilization of both strains in Ca alginate. The diameter of the alginate beads used for immobilization was recognized as one main factor determining the properties of this mixed culture system. Offprint requests to: H.-J. Rehm  相似文献   

12.
通过竹炭固定化以加强施氏假单胞菌Pseudomonas stutzeri ZH-1对苯酚的降解能力。采用正交试验优化竹炭对菌株ZH-1固定化条件,冷场发射扫描电镜(SEM)观察固定化后的菌株在竹炭上的附着情况,对比固定化菌和游离菌的降解性能并对固定化菌做重复利用性能测试。结果显示,竹炭固定化P. stutzeri ZH-1的最适条件为竹炭1 g,接种量5%(体积分数),吸附时间24 h;SEM显示菌附着在竹炭表面和内部空隙中;竹炭固定化后菌株ZH-1对苯酚的降解率显著增加(P<0.05),处理48 h时降解率增加15%;竹炭固定化菌ZH-1经10轮重复利用后仍有很高的苯酚降解性能,48 h时降解率增加173%(P<0.05)。竹炭固定化菌ZH-1在去除含苯酚类有机废水中具有较好的应用前景。  相似文献   

13.
A novel quinoline-degrading strain, named K4, was isolated from activated sludge of a coking wastewater treatment plant and identified as Brevundimonas sp. on the basis of its 16s rDNA gene sequence analysis. Its optimum temperature and pH for quinoline degradation were 30 °C and pH 9.0, respectively, and during the biodegradation process, at 100 mg/L initial quinoline concentration, an inoculation amount of 8% (OD600 of 0.23) was the optimal strain concentration. In addition, the kinetics of free K4 strains for quinoline degradation showed that it followed a zero-order equation. Furthermore, compared with free K4 strains, immobilized K4 strains’ potential for quinoline degradation was investigated by adding both of them into SBR reactors for actual coking wastewater treatment on operation over 15 days. The results showed that bioaugmentation by both free and immobilized K4 strains enhanced quinoline removal efficiency, and especially, the latter could reach its stable removal after a shorter accommodation period, with 94.8% of mean quinoline removal efficiency.  相似文献   

14.
The induced strain HG1 exposed to 10.0 T high magnetic field for 30 min and the original strain G1 (Bacillus sp.) isolated from soil were used to degrade acid red 1. The degradation process of the azo dye by these microbes was approximated by a reversed S-like curve. A kinetics equation whose parameters reflected the degradation process, was then established. The comparison and analysis of the kinetics parameters showed that the high magnetic field enhanced the biodegradation ability of the exposed strain—increasing the value of A (degradation constant) and Vmax (maximum reaction rate) to 1.7 and 1.5 times, respectively, and at the same time, reducing the value of tc (time when the maximum reaction rate was reached) to 0.8 times. Additionally, the UV/vis spectra also showed that the degradation ability of Bacillus sp. was improved and the metabolic pathway of the bacteria might be changed after being exposed to the high magnetic field.  相似文献   

15.

In this study, agar immobilization technique was employed for biological hydrogen production using Rhodobacter capsulatus DSM 1710 (wild type) and YO3 (hup-mutant) strains in sequential batch process. Different agar and glutamate concentrations were tested with defined nutrient medium. Agar concentration 4% (w/v) and 4 mM glutamate were selected for bacterial immobilization in terms of rate and longevity of hydrogen production. Acetate concentration was increased from 40 to 60—100 and 60 mM gave best results with both bacterial strains immobilized in 4% (w/v) agar. Cell concentration was increased from 2.5 to 5 mg dcw mL−1 agar and it was found that increasing cell concentration of wild-type strain caused decrease in yield and productivity while these parameters improved by increasing cell concentration of mutant strain. Also, the hydrogen production time has extended from 17 days up to 60 days according to the process conditions and parameters. Hydrogen production by immobilized photosynthetic bacteria is a convenient technology for hydrogen production as it enables to produce hydrogen with high organic acid concentrations comparing to suspended cultures. Besides, immobilization increases the stability of the system and allowed sequential batch operation for long-term application.

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16.
包埋法固定化对硫氧化微生物菌群结构和功能的影响   总被引:1,自引:0,他引:1  
【目的】为探讨包埋法固定化过程对硫氧化菌群硫化物去除能力及菌群微生物群落结构的影响,【方法】以聚乙烯醇-海藻酸钠-活性炭为载体,对硫氧化菌群进行了固定化,并采用富含硫化物的无机盐培养基,对比固定化与非固定化硫氧化菌群对硫化物的氧化去除能力。同时,利用PCR-DGGE技术,探讨硫氧化菌群在固定化前后以及在硫化物氧化去除过程中微生物群落结构变化。【结果】在对硫氧化菌群进行固定化之后,12 h之内对硫化物的最大去除能力从1000 mg/L下降为600 mg/L。硫氧化菌群的微生物群落结构发生了明显变化,但菌群中的硫氧化菌Catenococcus thiocycli未受影响,硫氧化菌Thioclava pacifica在菌群中的地位反而得到了强化。【结论】受制于底物在载体材料中的扩散迁移效率,硫氧化菌群对硫化物的氧化去除能力在固定化之后有所下降。由于不同微生物对固定化形成的微环境的适应能力以及对载体附着能力的不同,固定化对硫氧化菌群的微生物群落结构产生较大影响。  相似文献   

17.
The immobilization of recombinant cells by using the unstable 3,4-dihydroxyphenylacetate 2,3-dioxygenase was studied as a model. Dioxygenase activity and cell viability were compared in immobilized-cell systems and cells in suspension. Immobilization increased enzyme stability and the efficient degradation of 3,4-dihydroxyphenylacetate. The stability of the cloned enzyme and the viability of the immobilized recombinant cells were well maintained for at least 15 days. We used the strain Escherichia coli CC118-D in which the hpaB gene from Klebsiella pneumoniae, coding for the subunit of 3,4-dihydroxyphenylacetate 2,3-dioxygenase, was inserted into the chromosome. This study has demonstrated that the implementation of E. coli CC118-D in a pilot-scale bioreactor resulted in a 100% stabilization of dioxygenase activity, and could be a useful tool for bioremediation processes.  相似文献   

18.
在石油开采和加工过程中产生的含油污泥是石油化工行业中主要的污染源,会对周边生态环境造成持续性的危害。生物法降解被认为是一种有效且可持续的技术而备受关注。目前的研究多聚焦在微生物法降解石油,而酶法降解鲜有报道。【目的】本研究旨在优选石油高效降解酶,并深入分析其降解特性,以期构建一套酶法降解石油的体系。【方法】基于分子对接模拟技术,分析酶与石油类常见底物的结合可能性及结合模式,通过石油降解实验优选降解酶;通过添加表面活性剂及酶固定化进一步提高酶对石油的降解效果。【结果】利用分子对接模拟及实验验证获得5种具有石油降解能力的生物酶,其中枯草芽孢杆菌(Bacillus subtilis)来源的漆酶BsLac对石油的降解率最高,72 h可降解34.1%的石油;进一步研究发现,表面活性剂的添加均可促进BsLac对石油的降解,其中槐糖脂的促进作用尤为显著。当槐糖脂终浓度为1 000 mg/L时,石油的降解率最高,为46.3%;然而,2,2''-联氮-双(3-乙基苯并噻唑啉-6-磺酸)二铵盐的添加对BsLac降解石油的促进作用并不明显;固定化结果表明,以花生壳为吸附载体固定化的BsLac对石油的降解率最高,为56.3%。【结论】本研究基于分子对接模拟和实验筛选获得了石油降解酶BsLac,固定化的BsLac可实现石油的高效降解,为生物酶法降解石油的进一步探索奠定了实验和理论基础。  相似文献   

19.
We screened wild fungal isolates for melanolytic activity and found thatSporotrichum pruinosum was the most promising of the very limited number of fungi that decolourised synthetic melanin. We used a submerged aerobic process to produce a skin depigmentation enzyme by this strain, and found that in the medium the presence of Mn2+ ions was necessary, the limitation of carbon source was beneficial, and Zn2+ ions were inhibitory. Cultivation in a stirred bioreactor required immobilization of mycelium and use of low stirring velocity. A partially purified enzyme was prepared and tested for depigmentation of human skin corneocytes and whole epidermis of phototypes III and V. This is the first study demonstrating the effective enzymatic degradation of the skin melanin rather than inhibition of its synthesis. This opens the possibility of using melanolytic enzymes in cosmetic skin lightening.  相似文献   

20.
In the present study, a new bacterial strain isolated from activated sludge has been identified as Lysinibacillus sphaericus based on its morphology, physiochemical properties, and the results of 16S ribosomal RNA (rRNA) gene sequence analysis. This new bacterial strain uses ethanethiol as both carbon source and energy source. The key factors for controlling the degradation efficiency of ethanethiol by this strain were found to be initial ethanethiol concentration, temperature, and pH value of solutions. Under the optimized conditions, as well as 4 mg l−1 ethanethiol, 30°C, and pH = 7.0, almost 100% ethanethiol can be degraded within 96 h and sulfate as a final product was detected in aqueous medium. The degradation reaction of ethanethiol over this newly isolated strain can be described by pseudo first-order equation in which the maximum degradation rate constant K and the minimum half-life were respectively calculated to be 0.0308 h−1 and 22.5 h under the optimal conditions.  相似文献   

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