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1.
芽胞杆菌产生的环脂肽类生物表面活性素surfactin具有重要抗菌、促进生物膜形成等功能,其含量和同系物组分构成影响其功能。为了提高芽胞杆菌B006产生表面活性素的产量,通过单因素实验和正交实验,测定了碳源、氮源和无机盐等营养物质及接种量、培养时间、装液量和初始pH值对芽胞杆菌B006摇瓶发酵产生表面活性素的影响;采用排油圈法测定发酵液中表面活性素的产量,采用HPLC-MS方法比较培养基优化前后surfactin的产量和组分含量。结果表明,适合芽胞杆菌B006摇瓶发酵产生表面活性素的培养基组成为:牛肉膏10 g/L、玉米粉15 g/L、硝酸铵3 g/L和氯化钠3 g/L;适合的培养条件为:初始pH值7.0、接种量10%、装液量60 m L/500 m L,发酵周期64 h。优化后surfactin的产量约为314.73 mg/L,比优化前提高了74.88%;surfactin各组分比例发生改变,其中C16和C17组分的含量明显提高,为优化前相应组分含量的1.64和8.34倍。优化的培养基组分和培养条件可明显提高芽胞杆菌B006菌株产生surfactin的产量,改变surfactin同系物组分的构成,为利用芽胞杆菌B006进行高活性表面活性素的工业生产和代谢调控研究奠定了基础。  相似文献   

2.
采用响应面方法对解淀粉芽胞杆菌TF28产抗菌脂肽培养基进行优化,以提高其产量。利用Plackett-Burman试验设计筛选出影响抗菌脂肽产量的3个主要因素:葡萄糖、硫酸镁和磷酸氢二钠。通过最陡爬坡试验逼近最大响应值区域,利用响应面分析方法确定显著组份的最佳水平。结果表明,优化后的培养基组份为葡萄糖42.37 g/L,酵母膏2 g/L,牛肉膏2 g/L,硫酸铵2 g/L,硫酸镁2.11 g/L,氯化钙0.1 g/L,硫酸锰0.1 g/L,磷酸二氢钾1.5 g/L,磷酸氢二钠3 g/L,经3次平行试验验证,抗菌脂肽产量为1.75 g/L,比优化前提高了5.25倍。该研究优化了解淀粉芽胞杆菌TF28提高抗菌脂肽产量的培养基,为抗菌脂肽的生产奠定基础。  相似文献   

3.
解淀粉芽胞杆菌PC2产抑菌物质培养基及发酵条件优化   总被引:2,自引:0,他引:2  
【目的】优化解淀粉芽胞杆菌PC2产抑菌活性物质发酵培养基及发酵条件。【方法】以马铃薯葡萄糖液体培养基为基础,依据发酵液对金黄色葡萄球菌抑菌圈的单因素试验结果,采用Box-Behnken响应面法优化发酵培养基,二次通用旋转组合设计,频率分析法优化发酵条件。【结果】影响发酵液抑菌活性的培养基主要组分为马铃薯、蔗糖和L-谷氨酸钠,最优发酵培养基配方为:马铃薯188.0 g/L,蔗糖22.0 g/L,L-谷氨酸钠1.80 g/L,培养基成本为0.81元/L;最佳发酵条件为:接种量6%、发酵温度30°C、装液量40 mL/250 mL、摇床转速185 r/min、发酵时间24 h、初始pH 7.0。优化后发酵液对金黄色葡萄球菌抑菌圈直径为30.82 mm,较优化前的18.22 mm增加了12.60 mm。【结论】优化后的培养基和发酵条件提高了解淀粉芽胞杆菌PC2发酵液的抑菌活性,为该菌株的工业化生产应用提供了依据。  相似文献   

4.
内生解淀粉芽孢杆菌CC09产Iturin A摇瓶发酵条件优化   总被引:8,自引:0,他引:8  
【目的】提高内生解淀粉芽孢杆菌CC09发酵产抗菌脂肽Iturin A的产量。【方法】首先采用单因子实验研究了碳源、氮源、NaCl浓度、pH、温度、转速和装液量等因子对CC09产Iturin A能力的影响,然后对其中显著性因子:氮源浓度、pH、温度及装液量4个因素进行正交实验,进一步优化发酵条件。【结果】优化培养基组成及发酵条件可以提高CC09菌株的生长速度及产Iturin A的量,其中可溶性淀粉以及一定比例的蛋白胨和酵母粉是CC09菌株产Iturin A的良好碳源和氮源;培养温度、装液量、培养液pH等也对CC09菌株产Iturin A有显著影响。优化后的培养基成分:可溶性淀粉(碳源)5 g/L、比例为3:1的胰蛋白胨酵母粉混合氮源15 g/L、NaCl 1 g/L;最佳培养条件:pH 6.0、28°C、摇床转速120 r/min、培养瓶装液量20%。【结论】在此条件下,Iturin A的产量可达到690 mg/L,较优化前的138 mg/L提高了4倍。  相似文献   

5.
盐碱土壤是一类典型的极端环境,极端环境下微生物产生的胞外多糖具有更加优良的性质。从敦煌地区盐碱土壤中分离出一株胞外多糖产量较高的菌株并确定其分类学地位和最佳培养基。多糖含量测定采用苯酚硫酸法,菌株鉴定结合生理生化特征、形态学特征和16S rDNA分子生物学鉴定方法,最佳培养基采用单因子优化培养基实验和正交实验。菌株Ⅱ4-01为地衣芽孢杆菌(Bacillus licheniformis),其在25 g/L蔗糖、25 g/L黄豆粉、0.5 g/L MgSO_4、2 g/L Na_2HPO_4·12H_2O、1 g/L NaH_2PO_4·2H_2O、pH=7.5的发酵培养基中培养36 h时,胞外多糖产量可达8.594 g/L。菌株Ⅱ4-01发酵培养基经优化后胞外多糖产量提高了10倍。  相似文献   

6.
在摇瓶发酵条件下,优化提高短短芽胞杆菌ch2-22芽胞浓度和抑菌活性的发酵培养基和培养条件。首先在单因素试验基础上进行响应面设计对ch2-22的发酵培养基进行优化,然后使用单因素试验方法确定最佳发酵条件,得到优化发酵培养基为淀粉35.05 g/L,豆饼粉26.08 g/L,蔗糖10 g/L,鱼粉5 g/L,Na Cl 1 g/L,Mg SO40.3 g/L,(NH4)2SO43 g/L,Mn SO40.1 g/L,K2HPO43 g/L,酵母膏1 g/L,Ca CO32 g/L。培养条件为温度32℃,转速180 r/min,装液量100 m L/500 m L,接种量4%,初始pH为7.0,发酵时间45 h。优化后的芽胞数量达到8.1×109cfu/m L,与优化前的芽胞数量(1.6×109cfu/m L)相比,提高了3.7倍,优化后发酵液效价达到3 350 IU/m L,提高了109%,高于同类菌株的2 000 IU/m L。  相似文献   

7.
笔者所在实验室前期筛选到1株产脂肪酶粘质沙雷氏菌,克隆其脂肪酶基因,构建重组枯草芽胞杆菌Bacillus subtilis 168/pMA5-lipA,成功实现了来源于粘质沙雷氏菌的脂肪酶基因在枯草芽胞杆菌中的表达。基于以上工作基础上,对B.subtilis 168/pMA5-lipA进行了摇瓶水平上的产酶发酵优化。首先通过单因素和正交试验确定了有利于产脂肪酶的最佳培养基成分,并对发酵条件进行了优化。结果表明:优化后的培养基组分为蔗糖35 g/L,玉米浆27.5 g/L,(NH4)2SO41.25 g/L,CaCl24 g/L,pH 7.0。在最优发酵培养基的条件下,37℃、160 r/min摇床培养33 h,每毫升发酵液中重组菌脂肪酶酶活可达98.6 U,是优化前的3倍。  相似文献   

8.
目的 对海洋红酵母Y2高产类胡萝卜素的发酵条件进行优化.方法 在摇瓶条件下,研究培养基成分和培养条件对海洋红酵母Y2生长和类胡萝卜素合成的影响,同时进行海洋红酵母Y2发酵过程的动态分析.结果 海洋红酵母Y2优化培养基组合为葡萄糖45 g/L,蔗糖15 g/L,酵母粉5 g/L,蛋白胨2.5 g/L,磷酸二氢钾1 g/L,磷酸二氢钠3 g/L,硫酸镁7.5 g/L,氯化钾3 g/L,氯化钠5 g/L.最适培养参数为:温度20℃,培养基初始pH为5,接种量为10%,250 mL摇瓶装液量为10~50 mL.类胡萝卜素的合成主要集中在对数生长期和稳定期.海洋红酵母Y2最适收获时间为72 h.种龄以36 h为宜.结论 利用优化培养基,在最适条件下培养海洋红酵母Y2,类胡萝卜素产量达到4.97 mg/L,比基础培养基提高了60.32%.  相似文献   

9.
表面活性素(surfactin)中的C15组分是表面活性素Surfactin异构体混合物中的重要活性组分,在表面活性、溶血活性、抗病毒活性和抑菌活性方面都有突出的表现。考察培养基p H、碳源、氮源、碳氮比、金属离子以及氨基酸等主要参数对枯草芽胞杆菌发酵产物surfactin中C15组分的影响,利用优化后的培养基(葡萄糖20 g/L、NH4NO32 g/L、K2HPO43 g/L、Na H2PO410 g/L、Mg SO40.02 g/L、Leu 1 g/L和p H 8.5),枯草芽胞杆菌BS-37发酵24 h,surfactin总产量达750 mg/L,其中C15组分达510 mg/L,占surfactin总量的68%。  相似文献   

10.
5-氨基乙酰丙酸(5-amino levulinic acid,ALA)是生物体内天然存在的一种非蛋白质氨基酸,在农业和医药等领域应用广泛。为了在谷氨酸棒状杆菌中建立ALA碳四合成途径并优化其发酵体系,首先在谷氨酸棒状杆菌中过表达沼泽红假单胞菌来源的ALA合成酶(ALAS),建立高效的ALA碳四合成途径,然后从不同发酵培养基的比较、诱导剂和底物甘氨酸的浓度以及初始接种量等不同方面对ALA摇瓶发酵工艺进行了优化。结果显示,过表达Hem A的13032/p ZWA1菌株ALA产量达到1.41 g/L,是对照菌株的67.14倍。ALA的最优摇瓶发酵条件为以酵母粉为氮源的M9培养基,采用5%的接种量0.1 mmol/L IPTG进行Hem A的诱导表达,体系中甘氨酸的浓度要控制在4 g/L,摇瓶中ALA产量可达到3.28 g/L,比优化前提高了132.62%。采用发酵优化的条件,在5 L发酵罐的放大发酵中ALA产量可达10.08 g/L,这是现有报道中谷氨酸棒状杆菌一步发酵合成ALA的最高产量。  相似文献   

11.
Statistical methodologies were employed to optimize submerged culture medium for the production of a novel antineoplastic compound aspergiolide A by a marine-derived fungus Aspergillus glaucus HB1-19 for the first time. Orthogonal design was preformed to determine the initial composition. Then Plackett–Burman design was applied to evaluate the influence of related nutrients, and yeast extract paste, soybean powder and sodium glutamate were confirmed as critical factors in the medium. Response surface methodology (RSM) was finally taken as an effective approach to optimize the combination of the obtained three significant factors. The predicted maximal aspergiolide A production of 62.4 mg/L appeared at the region where the concentrations of sodium glutamate, soybean powder, and yeast extract paste were 2, 1, and 1.07 g/L, respectively. Under the proposed optimized conditions, the experimental aspergiolide A production reached 71.2 mg/L. The correlation between predicted value and measured value of these experiments proved the validity of the response model. After optimization, aspergiolide A production increased 4.22 times compared to that of the original medium. Elemental analysis was finally taken into consideration, and carbon–nitrogen ratio in the medium increased from 20.1:1 to 86.6:1. This great difference was inferred as the most important reason for production enhancement by metabolic pathway analysis.  相似文献   

12.
Response surface methodology was employed to optimize the composition of medium for the production of avermectin B1a by Streptomyces avermitilis 14-12A in shaker flask cultivation. Corn starch and yeast extract were found to have significant effects on avermectin B1a production by the Plackett–Burman design. The steepest ascent method was used to access the optimal region of the medium composition, followed by an application of response surface. The analysis revealed that the optimum values of the tested variables were 149.57 g/l corn starch and 8.92 g/l yeast extract. A production of 5128 mg/l, which was in agreement with the prediction, was observed in verification experiment. In comparison to the production of original level (3528 mg/l), 1.45-fold increase had been obtained.  相似文献   

13.
红酵母NZ-01发酵条件的优化   总被引:6,自引:1,他引:5  
以红酵母菌株NZ-01为试验菌株,研究其发酵工艺与中试生产。采用摇瓶发酵优化的方式,研究培养基组分与发酵工艺条件对该菌发酵的影响,并进行中试放大生产。结果显示,该菌最适生长培养基组分为葡萄糖10g/L,蔗糖10g/L,酵母膏10g/L,牛肉膏2.5g/L;色素合成最适培养基组分为葡萄糖15g/L,蔗糖10g/L,酵母膏2.5g/L,牛肉膏5g/L。最适生长起始pH值为6.0,最适接种量为8%,生长周期为44h;最适色素合成起始pH值为7.0,最适色素合成接种量为8%,色素合成周期为48h。发酵优化后的色素产量3.88μg/mL较优化前1.71μg/mL提高了127%。中试产量达3.05μg/mL。红酵母菌NZ-01优化后的发酵条件可以应用于中试生产虾青素,有规模化生产应用潜力。  相似文献   

14.
黑曲霉固态发酵生产单宁酶的条件优化   总被引:1,自引:0,他引:1  
研究采用响应面法优化黑曲霉固态发酵生产单宁酶的培养条件。应用Plackett—Burman试验筛选出重要影响因子:五倍子粉含量、(NH4)2SO4浓度以及接种孢子量,最陡爬坡试验逼近最大响应区域。应用Box.Behnken响应面试验对重要影响因子进一步优化。得到最佳培养条件:每250mL三角瓶中装入1.0g五倍子粉、4.4g稻壳和0.5g麸皮、液固比(mL/g)2:1且营养盐溶液组成为(NH4)2s0421g/L、MgSO4·7H2O1g/L、NaCl1g/L,培养基pH自然,接种5.7×10^7个孢子后在30℃温度下培养4d。在此条件下,单宁酶产量从40U/g提高到114U/g,3次重复验证性试验平均值为115U/g,验证了模型的可靠性。  相似文献   

15.
《Process Biochemistry》2004,39(9):1057-1062
Optimization of the fermentation medium for maximization of actinorhodin production by Streptomyces coelicolor A3(2) was carried out. Response surface methodology (RSM) was applied to optimize the medium constituents. A 24 full-factorial central composite design (CCD) was chosen to explain the combined effects of the four medium constituents, viz. sucrose, glucose, yeast extract (YE) and peptone, and to design a minimum number of experiments. The P-values of the coefficients for linear, quadratic and cross-product effect of sucrose and glucose concentration were <0.0001, suggesting that these were critical variables having the greatest effect on the production of actinorhodin in the complex medium. The optimized medium consisting of 339 g/l sucrose, 1 g/l glucose, 1.95 g/l YE and 2.72 g/l peptone predicted 195 mg/l of actinorhodin which was 32% higher than that of the unoptimized medium. The amounts of glucose, YE and peptone required were also reduced with RSM.  相似文献   

16.
Statistical experimental designs, involving a Plackett-Burman design followed by a rotatable central composite design were used to optimize the culture medium constituents for Bacillus thuringiensis bioinsecticide production. This was carried out by using firstly an asporogenic strain and extrapolated to some sporeless and sporulating strains. Initial screening of production parameters was performed and the variables with statistically significant effects on delta-endotoxin production were identified: glucose, glycerol, yeast extract and MnSO(4). These variables were selected for further optimization by response surface methodology. The obtained results revealed that the optimum culture medium for delta-endotoxin production consists of 22.5 g/l of glucose, 4.8g/l of glycerol, 5.8 g/l of yeast extract and 0.008 g/l of MnSO(4). Under these conditions, delta-endotoxin production was 2,130 and 2,260 mg/l into 250 and 1,000 ml flask respectively, which represent more than 38% improvement in toxin production over the basal medium (1,636 mg/l). Such medium composition was shown to be suitable for overproducing delta-endotoxins by sporeless and sporulating strains.  相似文献   

17.
为了提高碱性果胶酶基因工程菌(pWB980-pel521/WB600)产酶能力,实验室在摇瓶条件下采用Plackett-Burman (P-B) 方法筛选出对产酶有重要影响的3个因素(豆饼粉、磷酸盐以及氯化钠的添加量),并采用响应面试验设计(RSM) 对重要因素进行优化.结果表明,摇瓶发酵培养基成分为:麸皮30.00 ...  相似文献   

18.
A cane molasses-based medium for the biomass production of biocontrol agent Rhodosporidium paludigenum was statistically optimized. Molasses concentration (after pretreatment), yeast extract, and initial pH were identified by the Plackett-Burman design to show significant influence on the biomass production. The three factors were further optimized by central composite design and response-surface methodology. The statistical analysis indicated the optimum values of the variables were 89.98?g/L for cane molasses, 2.35?g/L for yeast extract and an initial pH of 8.48. The biomass yield at the optimal culture achieved 15.89?g/L in flask fermentation, which was 2.1 times higher than that at the initial NYDB medium. In a 10-L fermenter, 18.97?g/L of biomass was obtained after 36?hr of cultivation. Moreover, the biocontrol efficacy of the yeast was investigated after culture optimization. The results showed the yeast harvested in the optimal medium maintained its initial biocontrol properties by reducing the percentage of decayed apples to below 20%.  相似文献   

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