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1.
对一株产D-(-)-扁桃酸对映选择性脱氢酶的酿酒酵母菌(Saccharomyces cerevisiae sp.strain by1.1b)发酵产酶条件进行了优化.研究各种碳源、氮源及无机盐对产酶的影响,应用正交试验优化发酵培养基组成,结果为:蛋白胨60 g/L,麦芽糖30 g/L,MgSO4 0.5 g/L,ZnSO4 0.01 g/L,KCl 1.0 g/L.优化后酶产量提高了7.9倍(由2.56 U/mL增至20.21 U/mL).摇瓶培养最佳条件为:装液量40%,发酵pH 6.5,接种量10%,发酵温度30℃.考察了细胞生长及产酶的时间进程,最佳培养时间为25 h.  相似文献   

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对一株产D-(-)-扁桃酸对映选择性脱氢酶的酿酒酵母菌(Saccharomyces cerevisiae sp. strain by1.1b)发酵产酶条件进行了优化。研究各种碳源、氮源及无机盐对产酶的影响, 应用正交试验优化发酵培养基组成, 结果为: 蛋白胨 60 g/L, 麦芽糖 30 g/L, MgSO4 0.5 g/L, ZnSO4 0.01 g/L, KCl 1.0 g/L。优化后酶产量提高了7.9倍(由2.56 U/mL增至20.21 U/mL)。摇瓶培养最佳条件为: 装液量40 %, 发酵pH 6.5, 接种量10 %, 发酵温度30 ℃。考察了细胞生长及产酶的时间进程, 最佳培养时间为25 h。  相似文献   

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目的:对黑曲霉WP124发酵产橙皮苷酶的工艺条件进行优化,旨在为利用酶法改造橙皮苷打下基础.方法:采用摇瓶培养,对培养基的成分和培养条件进行了优化.结果:黑曲霉WP124发酵产橙皮苷酶的最佳培养基组成是:蔗糖30g/L,酵母膏20g/L,磷酸二氢钾3g/L,桔皮粉50g/L;最佳培养条件是:起始pH为5.5,培养温度为30℃,摇瓶转速是180r/min.在上述条件下,经过72h的培养,橙皮苷酶酶活达到1398U/mL.结论:该菌株发酵过程具有较好的工业化应用的前景.  相似文献   

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高山被孢霉产花生四烯酸发酵条件的研究   总被引:12,自引:0,他引:12  
通过一株高山被孢霉M_(20)(Mortierella alpina)产花生四烯酸的摇瓶发酵研究,确定了其最佳发酵培养基组成及最适摇瓶发酵工艺条件。摇瓶实验确定的最佳培养基组成为(g/L):玉米粉水解液葡萄糖150,酵母粉15,KH_2PO_4 3.0,NaNO_3 3.0,MgSO_4·7H_2O 0.5。最佳发酵工艺条件为:初始pH6.5,装液量为50ml/500ml摇瓶,摇床转速150r/min,温度在菌体生长前三天控制在25℃培养,以后调至20℃培养。在此条件下,发酵培养被孢霉的生物量、菌体总油脂及花生四烯酸分别高达35.5g/L、13.2g/L及2.2g/L,在15L及1000L自动机械搅拌罐进行发酵试验,AA产量分别高达1.86g/L及1.70g/L。  相似文献   

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红曲多糖液态发酵工艺条件的优化   总被引:2,自引:0,他引:2  
实验研究红曲多糖的液态发酵条件,得出优化后红曲菌ZKOA发酵工艺条件:蔗糖40g/L,酵母粉4.5g/L,KH2PO4·3H2O3.5∥L.MgSO40.4g/L,植物油2mL/L,接种量8%,种龄30h,发酵液起始pH5.0,发酵时间90h,在此条件下,摇瓶和中试发酵罐中的粗多糖质量浓度分别为7.6g/L和7.34g/L。  相似文献   

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星形孢菌素产生菌H41-38的发酵工艺条件   总被引:2,自引:1,他引:2  
本研究对菌株H41-38发酵生产星形孢菌素的工艺进行了研究.结果表明:30℃、96h为菌株摇瓶培养最适条件.玉米淀粉和酵母粉为最适碳、氮源.采用Fractional factorial design方法确定培养基成分的重要因子:酵母粉和粗盐,然后利用爬坡路径试验和响应面分析法优化了发酵效价取得最大值时酵母粉和粗盐含量,发酵效价最大理论值为252.31μg/mL,摇瓶实测值为251.28μg/mL,其发酵水平比优化前提高了4.33倍.在30L发酵罐(300r/min、30℃、V空气=10L/min~15L/min)中扩大培养84h后发酵效价达到286.44μg/mL,比摇瓶培养效价提高了45.16μg/mL,其发酵参数变化曲线可指导生产罐的应用生产.  相似文献   

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一株寡营养细菌胞外多糖的摇瓶发酵研究   总被引:2,自引:0,他引:2  
从新疆的寡营养环境——古尔班通古特沙漠中分离到一株寡营养细菌Azotobacter sp.(1~15mg碳/L培养基),通过进行Azotobacter sp.菌的单因子优化培养基的试验、摇瓶培养工艺条件的优化试验(培养温度、培养时间、初始pH值、溶氧量),确定了菌种生长与营养需求等主要因子与胞外多糖产量、粘度的关系,结果表明,摇瓶发酵的最适宜条件为:以蔗糖为碳源,碳酸钙含量为2g/L,初始pH值为7左右,种龄72~84h,磷酸二氢钾、硫酸镁的含量分别为0.3g/L、0.1g/L,接种体积分数15%,于37℃摇瓶培养72h,250mL摇瓶装液量为50mL,在适宜条件下粘多糖的产量最大可达到1145.94μg/mL,粘性可达9200 mPa·s。  相似文献   

8.
蛹虫草液体培养条件优化及有效成分含量分析   总被引:9,自引:0,他引:9  
为优化蛹虫草菌的液体培养条件,对蛹虫草菌丝体进行液体摇瓶培养。以干菌丝体得率为指标,对影响发酵产量的重要因子设计正交试验,得出最佳培养条件。在最优条件下扩大培养,检测此时菌丝体中虫草素及虫草多糖含量。结果表明:蛹虫草菌丝体液体发酵的最适条件为:接种量10 % (v/v) ,发酵初始pH7 0 ,发酵温度2 7℃,发酵时间96h。扩大培养后,测得菌丝体中虫草素的含量为5 1 785mg/10 0g ,虫草精多糖含量为1 92g/10 0g。  相似文献   

9.
从数株红酵母中选出 1株产类胡萝卜素能力较强的红酵母RY 98(生物量、类胡萝卜素含量和产量分别为19.9g/L ,334 .8μg/ g和 6 .7mg/L) ;研究了该菌株产类胡萝卜素的最适营养与环境条件 ,获得了最佳的发酵生理学条件 :葡萄糖 40 g/L ,(NH4 ) 2 SO4 10 g/L ,酵母膏 3g/L ,蕃茄汁 2mL/L ,花生油 0 .5mL/L ,接种量 30mL/L ,初始pH 6 .0和通气量 (培养基装量 ) 4 0mL/ 2 5 0mL。在此初步优化的培养条件下 ,红酵母RY 98经 72h摇瓶发酵其生物量、类胡萝卜素含量和产量分别可达 2 6 .8g/L ,386 .9μg/ g和 10 .4mg/L ,依次比初筛中提高了 34 .7% ,15 .6 %和 5 5 .2 %。  相似文献   

10.
在摇瓶和5 L发酵罐中研究了溶氧 (DO) 对Blakeslea trispora分批发酵生产β-胡萝卜素的影响,总结了5 L发酵罐中β-胡萝卜素发酵过程中溶氧的变化规律.结果表明,当500 mL摇瓶装液量为50 mL,转速为240 r/min条件下发酵生产β-胡萝卜素产量最大,达到3.416 g/L; 5 L发酵罐中,在搅拌转速为1 000 r/min,通气量为1.5 vvm的条件下,β-胡萝卜素的产量可达到3.712 g/L,略高于摇瓶,这可能是由于5 L发酵罐中的气液传递和混合状况好于摇瓶,促进了产物的合成.  相似文献   

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In experiments on Black Sea skates (Raja clavata), the potential of the receptor epithelium of the ampullae of Lorenzini and spike activity of single nerve fibers connected to them were investigated during electrical and temperature stimulation. Usually the potential within the canal was between 0 and –2 mV, and the input resistance of the ampulla 250–400 k. Heating of the region of the receptor epithelium was accompanied by a negative wave of potential, an increase in input resistance, and inhibition of spike activity. With worsening of the animal's condition the transepithelial potential became positive (up to +10 mV) but the input resistance of the ampulla during stimulation with a positive current was nonlinear in some cases: a regenerative spike of positive polarity appeared in the channel. During heating, the spike response was sometimes reversed in sign. It is suggested that fluctuations of the transepithelial potential and spike responses to temperature stimulation reflect changes in the potential difference on the basal membrane of the receptor cells, which is described by a relationship of the Nernst's or Goldman's equation type.I. P. Pavlov Institute of Physiology, Academy of Sciences of the USSR, Leningrad. I. M. Sechenov, Institute of Evolutionary Physiology and Biochemistry, Academy of Sciences of the USSR, Leningrad. Pacific Institute of Oceanology, Far Eastern Scientific Center, Academy of Sciences of the USSR, Vladivostok. Translated from Neirofiziologiya, Vol. 12, No. 1, pp. 67–74, January–February, 1980.  相似文献   

16.
Evolution of living organisms is closely connected with evolution of structure of the system of regulations and its mechanisms. The functional ground of regulations is chemical signalization. As early as in unicellular organisms there is a set of signal mechanisms providing their life activity and orientation in space and time. Subsequent evolution of ways of chemical signalization followed the way of development of delivery pathways of chemical signal and development of mechanisms of its regulation. The mechanism of chemical regulation of the signal interaction is discussed by the example of the specialized system of transduction of signal from neuron to neuron, of effect of hormone on the epithelial cell and modulation of this effect. These mechanisms are considered as the most important ways of the fine and precise adaptation of chemical signalization underlying functioning of physiological systems and organs of the living organism  相似文献   

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