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1.
探讨了嗜热真菌Chaetomium thermophile产生纤维素酶的液体发酵条件及滤纸酶(FPA)的特性。采用液体发酵培养法,通过对碳源、氮源、培养时间、培养基的起始pH值及产酶过程中pH值和蛋白质含量变化的研究发现:在2%纤维素、1%可溶性淀粉为碳源;2.0%KNO3 0.2%酵母粉为氮源;起始pH值为6.5,50℃下培养9d后,各种酶活最高。发酵过程中,pH值和蛋白质的含量均在前3d下降,后升高。FPA的反应最适温度和pH值分别为60℃和5.5~6.0;且具有较高的热稳定性和DH稳定性。  相似文献   

2.
高酶活菌株的筛选及漆酶特性   总被引:5,自引:0,他引:5  
通过Bavendamn氏反应和液体发酵实验筛选出漆酶高产菌株 ,并对其产酶条件和酶活性进行了研究。结果表明 71株实验真菌中有 64株Bavendamn氏反应呈阳性 ,且阳性菌株都具有漆酶活性 ;不同菌株产酶培养基最适碳源、氮源不同 ,采绒革盖菌以淀粉为碳源、干酪素为氮源 ,毛栓菌以麦草粉为碳源、硫酸铵为氮源 ,有利于酶的分泌 ;不同来源漆酶性质不尽相同 ,采绒革盖菌漆酶最适酶解温度为 2 5℃ ,最适酶解pH值为4.6,毛栓菌则分别为 3 0℃和 pH 4.0 ;K+ ,Zn2 + 等对 2种漆酶均有激活作用 ,Ag+ 则能明显抑制漆酶活性。  相似文献   

3.
碱性木聚糖酶在碱性条件下催化水解木聚糖,广泛应用于造纸、纺织等领域.着重对短小芽胞杆菌M-11产碱性木聚糖酶的发酵条件进行初步的探索.研究了菌株的生长曲线、确定最佳接种龄为16 h、最佳接种量为1%;确定最适碳源浓度为7%、最适单一氮源为氯化铵、其浓度为1.0%、最适无机盐为氯化铁、其浓度为3 mmol/L;在此基础之上进行6因素3水平的正交试验,确定最适产酶培养基组成:麸皮5%,接种量3%,氯化铵1.2%,氯化铁3.5 mmol/L,硫酸镁0.03%,氯化钠5 mmol/L,磷酸氢二钾0.4%;最适培养条件:接种龄16 h,初始pH 8.0,温度37℃,300 mL摇瓶装液量50 mL,摇床转速220 r/min,发酵周期48 h.通过对发酵条件的优化使发酵液酶活达613 IU/mL.无机氮源为其最适氮源,因此短小芽胞杆菌M-11在碱性木聚糖酶的产品开发上优于短小芽胞杆菌M -26.  相似文献   

4.
采用斜面培养和液体发酵培养产甲壳素脱乙酰酶的真菌构巢曲霉,并且研究了产酶条件。结果表明,构巢曲霉的最适产酶条件为:发酵培养基初始pH值为6.5、发酵时间为96h、培养温度为31℃、碳源浓度为2%、氮源浓度为2%、金属离子浓度为0.01mol/L、接种量为6%。  相似文献   

5.
黑曲霉GD-6纤维素酶液体发酵条件的研究   总被引:7,自引:0,他引:7  
采用黑曲霉 (Aspergillusniger)GD 6液体发酵生产纤维素酶 ,研究了碳源、氮源、培养基起始 pH值、接种量、摇床转速、通气量对该菌株产纤维素酶活力的影响。结果表明 ,GD 6的最适发酵温度为 2 8~ 3 0℃ ,产酶pH为 5 .5~ 6.0 ,摇床最适转速为 1 5 0r/min ,最佳接种量为 1 0 %。在以 6.0 %稻草粉为碳源、1 %豆饼粉为氮源时产酶活力最高。在最适培养条件下 ,发酵周期为 1 2 0h,发酵液中CMC酶活为 1 88.6U/mL ,FP酶活为 2 7.0U/mL。  相似文献   

6.
研究了碳源、氮源等对青霉(Penicillium)P-1液体发酵产植酸酶的影响。最佳碳源为蔗糖,最佳氮源为蛋白胨和硝酸铵。最适发酵产酶条件为培养温度30℃,发酵培养基最适pH 5,摇瓶装液量10%,接种量4%,摇床转速120 r/min,培养时间96 h,最高酶活性可达78 U/L。  相似文献   

7.
木霉菌株T6木聚糖酶固态发酵条件和酶学性质研究   总被引:11,自引:0,他引:11  
吴克  蔡敬民等 《菌物系统》2001,20(2):191-195
研究了碳源和氮源、起始pH、接种量及温度等条件对一野生型木霉Trichodermasp.T6菌株固态发酵产木聚糖酶的影响。在28℃培养4d后,酶活力可达1918IU/g干培养物。酶的最适反应温度为50℃,最适反应pH4.5。不同温度保温1h后,测定酶的半失活温度为47.7℃,酶的pH稳定性也进行了研究。  相似文献   

8.
利用固体淀粉筛选培养基,从安阳市郊区面粉厂附近的土壤里分离筛选出1株产淀粉酶的菌株,编号为MF-3-2.经过菌株形态、革兰氏染色、16S rDNA鉴定及系统进化树分析,初步确定其为枯草芽孢杆菌(Bacillus subtilis).摇瓶培养后对其酶学性质研究发现,该菌株淀粉酶的最适温度为65℃,最适pH值为6.0,在pH值4.8~6.0范围内仍能残余70%以上的酶活力.该菌株的最适生长温度为40℃,最适生长pH值为6.5.产酶条件优化结果表明:最适碳源为马铃薯淀粉,最适氮源为豆粕粉,最适碳氮比为1∶15,发酵温度30℃,发酵pH值6.0,装液量10%,种龄10h,接种量5%,转速200 r/min,48 h达到产酶高峰.通过发酵产酶条件优化,其淀粉酶活性达到86.8 U/mL,是优化前的35倍.另外,在酸性条件下还具有较好的活性.因此,该菌株的淀粉酶具有潜在的工业应用前景.  相似文献   

9.
采用鸡腿菇为实验菌株,对其生产溶栓酶的液体发酵条件进行了初步优化,确定的菌株产酶培养基组分及最适培养条件为:碳源为蔗糖,氮源为豆饼粉,蔗糖/豆饼比值为2:5,发酵培养基的初始pH值为自然(6~7),装液量为250mL三角瓶装40mL,接菌量为直径1cm的菌片1片,发酵温度21℃~25℃,CuSO4添加量为0.001%.液态发酵所得溶栓酶活力可稳定达到溶圈面积180mm2以上, 相当于尿激酶活力150IU/mL,较优化前提高5倍.  相似文献   

10.
Aspergillus sp.脂肪酶发酵条件优化及酶学性质的研究   总被引:2,自引:0,他引:2  
作者为了得到一种热稳定性较好的脂肪酶新酶种,通过研究分离白极端环境的Aspergillus sp.的最佳产酶条件及其所产脂肪酶的酶学性质,得出了该菌产酶的最佳发酵条件为:以1%黄豆饼粉为氮源、0.2%玉米淀粉为碳源,1.5%橄榄油为诱导物,起始pH6.0左右。装量10mL(250mL三角瓶。摇瓶转速180r/min)、发酵时间为96h。在最佳发酵条件下可得最大发酵酶活36U/mL。Aspergillus sp.所产的脂肪酶的酶学性质是:最适pH为9.0,在pH5.0—10.0于20℃下放置24h后,残余酶活仍保持在起始酶活的90%以上;该酶的最适温度为50℃,50℃保温60min后仍保留70%以上的酶活。Aspergillus sp.所产脂肪酶的热稳定性较好。  相似文献   

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It has now been over twenty years since a novel herpesviral genome was identified in Kaposi's sarcoma biopsies. Since then, the cumulative research effort by molecular biologists, virologists, clinicians, and epidemiologists alike has led to the extensive characterization of this tumor virus, Kaposi's sarcoma-associated herpesvirus(KSHV; also known as human herpesvirus 8(HHV-8)), and its associated diseases. Here we review the current knowledge of KSHV biology and pathogenesis, with a particular emphasis on new and exciting advances in the field of epigenetics. We also discuss the development and practicality of various cell culture and animal model systems to study KSHV replication and pathogenesis.  相似文献   

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Comprises species occurring mostly in subtidal habitats in tropical, subtropical and warm-temperate areas of the world. An analysis of the type species, V. spiralis (Sonder) Lamouroux ex J. Agardh, a species from Australia, establishes basic characters for distinguishing species in the genus. These characters are (1) branching patterns of thalli, (2) flat blades that may be spiralled on their axis, (3) width of the blade, (4) primary or secondary derivation of sterile and fertile branchlets and (5) position of sterile and fertile branchlets on the thalli. Application of the latter two characters provides an important basic method for separation of species into three major groups. Osmundaria , a genus known only in southern Australia, was studied in relation to Vidalia , and its separation from the Vidalia assemblage is not accepted. Species of Vidalia therefore are transferred to the older genus name, Osmundaria. Two new species, Osmundaria papenfussii and Osmundaria oliveae are described from Natal. Confusion in the usage of the epithet, Vidalia fimbriala Brown ex Turner has been clarified, and Vidalia gregaria Falkenberg, described as an epiphyte on Osmundaria pro/ifera Lamouroux, is revealed to be young branches of the host, Osmundaria prolifera.  相似文献   

18.
Fifteen chromosome counts of six Artemisia taxa and one species of each of the genera Brachanthemum, Hippolytia, Kaschgaria, Lepidolopsis and Turaniphytum are reported from Kazakhstan. Three of them are new reports, two are not consistent with previous counts and the remainder are confirmations of very scarce (one to four) earlier records. All the populations studied have the same basic chromosome number, x = 9, with ploidy levels ranging from 2x to 6x. Some correlations between ploidy level, morphological characters and distribution are noted.  相似文献   

19.
肝癌中HBV和HCV基因和抗原的分布及意义   总被引:1,自引:0,他引:1  
采用原位分子杂交方法检测HCV RNA及HBV X基因;采用免疫组织化学方法研究HCV核心抗原,非结构区C33c抗原及HBxAg在肝细胞肝癌中的定位及分布.结果表明(1)HCV RNA、HBV X基因在肝细胞肝癌组织检出率分别为40%(55/136)和82%(112/136).HCV RNA定位于癌细胞的胞浆内,阳性细胞呈散在、灶状及弥漫分布三种形式;HBV X基因在肝癌细胞中的分布呈胞浆型、核型及核浆型,阳性细胞也呈上述三种分布形式;(2)HCV C33c抗原、核心抗原在肝细胞肝癌中的阳性率为81%(133/164)及86%(141/164).C33c抗原定位于癌细胞及肝细胞的胞浆内;核心抗原既定位于癌细胞核中,又可定位于胞浆中.C33c抗原阳性细胞以灶状分布为主;而核心抗原阳性细  相似文献   

20.
For a plant selection model with frequency-independent viabilities, fertilities and selfing rates, it is shown that apart from global fixation, for certain parameter combinations a protected polymorphism and facultative fixation (either allele may become fixed according to initial frequencies) may both occur. Facultative fixation requires different selling rates for the dominant and recessive type. Protection of the polymorphism requires resource allocation for male and female function. In this connection the problem of purely genetically caused population extinction is discussed.
For general frequency dependence and regular segregation, the chances for establishment of a completely recessive gene are compared to those of a completely dominant gene. It is proven that the process of establishment of the recessive gene, despite a fitness advantage, may be considerably endangered by drift effects if random mating prevails. The recessive gene may reach the same effectivity in establishment as a dominant gene, only if the recessive homozygote mates exclusively with its own type during the period of establishment.  相似文献   

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