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1.
【目的】研究并建立利用原生质体紫外诱变技术选育可利用廉价碳源发酵的高产油新菌株的方法。【方法】采用1.5%蜗牛酶和1.0%纤维素酶混合液水解去除细胞壁得到2A00015(近平滑假丝酵母,Candida parapsilosis)的原生质体,将其放于紫外灯下诱变及再生壁培养,筛选获得可利用廉价碳源发酵的高产油酵母,并采用气相色谱质谱联用法(GC-MS)测定其脂肪酸组成。【结果】突变效果最好的突变菌株2A00015/25用葡萄糖发酵培养7 d后,其生物量、油脂产率和产油量分别为17.77 g/L、58.12%和10.32 g/L,较原始菌株分别提高了12.45%、23.32%和38.68%;利用废糖蜜发酵培养,其生物量、油脂产率和产油量分别为18.54 g/L、49.44%和9.17 g/L,较原始菌株分别提高了9.09%、21.16%和32.18%。利用废糖蜜培养其产油效率虽低于利用葡萄糖培养,但从环境保护及原材料成本的角度考虑,用废糖蜜作为碳源发酵培养产生油脂更具优势。诱变菌株利用废糖蜜发酵后产生油脂经检测含有8种脂肪酸,其脂肪酸组成与植物油近似,其中不饱和脂肪酸含量占脂肪酸总量的82.4%。【结论】通过利用原生质体紫外诱变技术,成功选育出一株新的可利用廉价碳源的高产油海洋菌株,产油率达到49.4%,提高了21.2%。  相似文献   

2.
【目的】通过诱变筛选技术选育阿维菌素高产突变株,对其发酵培养基进行响应面优化,提高阿维菌素产量。【方法】采用常压室温等离子体(ARTP)诱变技术,结合链霉抗性和卡那霉素抗性筛选法及96深孔板高通量筛选法,筛选阿维菌素高产株。在单因素实验的基础上,应用响应面分析法对其发酵培养基进行优化,最后确定最佳培养基配方。【结果】获得一株遗传性状稳定的阿维菌素高产株K-1A6,其阿维菌素产量达到4.22 g/L,比出发菌株9-39提高了23.4%,在最佳培养基中阿维菌素产量达到5.36 g/L,较优化前提高了27.01%。【结论】通过对阿维链霉菌9-39菌株进行ARTP诱变筛选及发酵培养基优化研究能显著提高阿维菌素的产量。  相似文献   

3.
以高山被孢霉为出发菌株,抗氧化剂——没食子酸辛酯为筛选剂,经过紫外-LiCl复合诱变处理,筛选出抗脂肪酸脱氢酶抑制剂的菌株。将筛选出的菌株经过摇瓶发酵复筛,筛选到1株生产性能优于出发菌株的突变株R807。与原始菌株相比,该菌株的油脂组成脂肪酸分布中C18系列脂肪酸相对较少,花生四烯酸(ARA)占总脂肪酸的含量保持在40%(质量分数)以上。其菌体生物量达到39.2 g/L,油脂产量达到16.3 g/L,ARA占总脂肪酸含量为41.72%(质量分数),ARA产量达6.81 g/L。各数值比原始菌株分别提高了22.9%、3.2%、35.1%和39.8%。连续传代多次,其产量性状无显著变化。  相似文献   

4.
【背景】大肠杆菌(Escherichia coli)由于生长性能优良、遗传背景清楚、遗传操作手段成熟,是合成β-法尼烯的合适生产菌,但其合成β-法尼烯的产量目前仍不能满足工业化生产的需求。【目的】通过诱变筛选技术选育β-法尼烯高产突变株。【方法】采用常压室温等离子体(atmosphericand room temperature plasma,ARTP)诱变技术和紫外线照射对出发菌株大肠杆菌EC-16进行复合诱变,并以异戊烯焦磷酸耐受性为选择压力进行平板初筛,之后进行摇瓶复筛,最后进行发酵罐验证。通过连续多代培养筛选到的高产突变菌株,观察其遗传稳定性。【结果】经复合诱变选育筛选出一株β-法尼烯高产突变株E.coliHVK-9,其产量高达22.1g/L,相比出发菌株提高了168.74%。【结论】采用ARTP-紫外复合诱变,再结合异戊烯焦磷酸抗性筛选的集成方法,使得诱变菌株的正突变率大大提高,可以有效地提高诱变菌株的β-法尼烯产量。突变株HVK-9作为工业化发酵生产菌种具有较好的遗传稳定性,为β-法尼烯的工业化生产和应用奠定了良好的基础。  相似文献   

5.
对具有发酵产α-酮戊二酸能力的解脂耶氏酵母(Yarrowia Lipolytica)ZY-4进行了紫外诱变和NTG诱变育种,筛选得到产量提高的突变株,并对突变株的发酵培养基进行了优化,结果表明,紫外诱变和NTG诱变后筛选到的突变株分别比原始出发菌株产量提高了67.8%和110%。优化后发酵培养基成分为甘油8%,氯化铵5.0 g/L,硫胺素1.0μg/L,磷酸二氢钾1.0 g/L,七水硫酸镁0.5 g/L,培养基优化后α-酮戊二酸产量比原始出发菌株提高了232.4%。  相似文献   

6.
【目的】获得高产聚β-羟基丁酸酯(Poly-β-hydroxybutyricacid,PHB)菌株。【方法】以假单胞菌属Pseudomonas koreensis PK3菌株为出发菌株,采用硫酸二乙酯和紫外线相结合的诱变方法进行多轮诱变。【结果】经过初筛和复筛得到一株高产PHB突变菌株,命名为Pseudomonas koreensis UVCN-18。连续传代9次后,发酵28 h条件下,PHB产量达到15.94 g/L,占细胞干重69.54%,较原出发菌株Pseudomonas koreensis PK3(4.42 g/L)提高了2.61倍,并且该菌株具有良好的遗传稳定性。【结论】采用硫酸二乙酯和紫外线相结合的诱变方法,成功获得了一株高产PHB突变菌株。  相似文献   

7.
深黄被孢霉高产花生四烯酸菌株的紫外诱变原生质体育种   总被引:5,自引:0,他引:5  
【目的】为了获得一株生长活力较强, 产花生四烯酸能力强的菌株。【方法】我们以干菌重、微生物油脂产量和花生四烯酸产量为评价指标,采用紫外线诱变原生质体的方法。我们利用单因素实验确定了紫外线诱变剂量, 并采用气相色谱分析了花生四烯酸含量。【结果】试验结果表明:紫外灯功率20 W,照射距离30 cm,照射时间40 s,其致死率为79.5 %。【结论】经过诱变及菌种筛选所获得高产菌株YZ-124的生物量为36.5 g/L,微生物油脂含量为19.2 g/L,花生四烯酸含量为4.72 g/L,花生四烯酸产量比出发菌株AS3.3410提高576 %,并且遗传性能稳定。  相似文献   

8.
诱变育种是获得高产菌株,实现微生物工业化生产油脂的重要措施。以前期获得的高产不饱和油脂菌株桔青霉(Penicillium citrinum)Asc-2-4为出发菌株,利用丙二酸建立快速筛选高产不饱和脂肪酸突变菌的方法,通过紫外线 氯化锂复合诱变得到1株高产油脂突变菌Asc-2-4-1,油脂含量比出发菌株提高了92.98%。经过初步的培养基无机盐优化,其油脂得率和不饱和脂肪酸产量达到了7.10 g/L和3.84 g/L,与Asc-2-4相比,分别提高了84.42%和77.78%。结果表明,通过复合诱变选育技术可选育出高产突变菌株,选育的Asc-2-4-1可望作为产油微生物被开发利用。  相似文献   

9.
【目的】从陕西省石泉县玉米地土壤中分离获得一株产丁醇菌株并提高其丁醇耐受性和丁醇产量。【方法】采用自行设计的多因子复合筛选方法和丁醇胁迫驯化处理,在获得丁醇高产菌株的同时提高菌株的丁醇耐受性。【结果】野生菌株D64经多轮次丁醇胁迫驯化处理和多因子复合筛选,分离获得突变株T64,其丁醇耐受性明显提高,能在丁醇浓度为20 g/L的复合筛选培养基上正常生长,发酵7%玉米醪丁醇产量由13.35 g/L提高到15.18 g/L,总溶剂(丙酮、丁醇、乙醇)达到21.8 g/L。【结论】采用长时间且丁醇浓度呈梯度渐进增加的胁迫驯化方式,可使菌种在丁醇的环境中不断进化并有效地提高菌株对丁醇的耐受性。多因子复合筛选方法较其他单一因子筛选方法更为有效,能较快获得丁醇高产菌。  相似文献   

10.
【目的】建立对糖化酶生产菌种黑曲霉随机突变文库进行筛选的方法,以获得糖化酶酶活提高的突变菌株。【方法】以一株可产糖化酶的黑曲霉菌株Aspergillus niger X1为出发菌株,经硫酸二乙酯诱变获得突变文库,采用葡萄糖的结构类似物——2-脱氧葡萄糖进行筛选,并在筛选过程中逐渐提高2-脱氧葡萄糖浓度,定向选育具有2-脱氧葡萄糖抗性、高产糖化酶的突变株。【结果】获得的高产突变菌株DG36摇瓶发酵糖化酶产量比出发菌株A.niger X1提高22.2%–33.8%,经工业水平50 m~3罐发酵测试,突变株DG36发酵128 h糖化酶活可达49094 U/m L,在相同发酵时间内,其酶活较出发菌株A.niger X1提高32.8%,发酵时间缩短16.9%。【结论】本研究开发了一种以2-脱氧葡萄糖为抗性标记选育高产糖化酶突变株的方法,所得突变株DG36遗传性状稳定,与出发菌相比具有菌丝粗壮、产酶期提前、糖化酶活高、发酵时间短、有利于发酵后处理的优点。  相似文献   

11.
考察种子培养基中谷氨酸钠质量浓度和NaCl质量浓度(盐度)对Schizochytrium sp. HX-308菌种质量及发酵性能的影响。结果表明:40 g/L谷氨酸钠条件下培养菌种,发酵后DHA质量分数达到(53.25±0.48)%,而其油产量、油脂质量分数和DHA产量分别为(24.9±0.4)g/L、(45.2±0.6)%、(8.6±0.35)g/L; 利用不含谷氨酸钠的种子培养基发酵,其油产量、油脂质量分数和DHA产量分别为(30.1±0.8)g/L、(54.3±0.5)%、(12.1±0.5)g/L,比含40 g/L谷氨酸钠时分别提高了20.88%、20.13%和40.70%,为菌种驯化提供了新的思路和方向。此外,低盐度培养条件有利于菌种生产性能的发挥,6.25 g/L NaCl条件下发酵后油质量分数、DHA产量及DHA质量分数最高,分别为(62.1±0.8)%、(10.0±0.3)g/L、(48.97±0.42)%。  相似文献   

12.
Thraustochytrids have recently emerged as a promising source for docosahexaenoic acid (DHA) production due to their high growth rate and oil content. In this study, two thraustochytrid isolates, Aurantiochytrium sp. PKU#SW7 and Thraustochytriidae sp. PKU#Mn16 were used for DHA production. Following growth parameters were optimized to maximize DHA production: temperature, pH, salinity, and glucose concentration. Both isolates achieved the highest DHA yield at the cultivation temperature of 28 °C, pH 6, 100 % seawater, and 2 % glucose. A DHA yield of 1.395 g/l and 1.426 g/l was achieved under the optimized culture conditions. Further investigation revealed that both isolates possess simple fatty acids profiles with palmitic acid and DHA as their dominant constituents, accounting for ~79 % of total fatty acids. To date, very few studies have focused on the DHA distribution in various lipid fractions which is an important factor for identifying strains with a potential for industrial DHA production. In the present study, the lipids profiles of each strain both revealed that the majority of DHA was distributed in neutral lipids (NLs), and the DHA distribution in NLs of PKU#SW7 was exclusively in the form of triacylglycerols (TAGs) which suggest that PKU#SW7 could be utilized as an alternative source of DHA for dietary supplements. The fermentation process established for both strains also indicating that Aurantiochytrium sp. PKU#SW7 was more suitable for cultivation in fermenter. In addition, the high percentage of saturated fatty acids produced by the two thraustochytrids indicates their potential application in biodiesel production. Overall, our findings suggest that two thraustochytrid isolates are suitable candidates for biotechnological applications.  相似文献   

13.
二十二碳六烯酸(DHA)具有促进婴幼儿大脑和视网膜发育等多种生理功能,被广泛应用于食品、医药和养殖等行业。为了获得适合于工业化生产的高产油、高产DHA的裂殖壶菌工程株,文中建立了一套操作简单、快速准确的基于尼罗红染色的高通量筛选方案。首先利用紫外线(UVC)诱变的方式快速构建裂殖壶菌的随机突变体库。然后采用优化后的筛选条件如裂殖壶菌的最佳尼罗红染色条件(二甲基亚砜浓度为20%,尼罗红终浓度为2.0μg/mL,孵育时间为10 min,孵育温度为40℃)和更合理的筛选依据(多功能酶标仪实现高通量测量的单位细胞密度油脂量)等,对3 648株突变体进行筛选,得到了3株高产油突变体(D03432、D05106和D01521)。摇瓶发酵实验表明,这3株突变体在生物量、油脂含量和DHA产量上均高于野生型菌株,其中突变体D03432和D05106的油脂量分别达到了干重的64.74%和63.13%,远高于野生型菌株的43.19%。而且这两株突变体的DHA产量分别是野生型菌株的2.26倍和2.37倍。最后,对突变体D03432和D05106进行了5 L发酵罐发酵培养,相较于野生型菌株,这两株突变体不仅生物量和油脂含量有所增加,而且DHA产量更是分别增加了45.5 1%和66.46%,展现出较好的工业应用潜力。此外,本筛选方案对其他产油微生物高产油突变体的高通量筛选具有借鉴作用。  相似文献   

14.
深圳海域6株破囊壶菌的生长特性及油脂成分分析   总被引:1,自引:0,他引:1  
【目的】从深圳海域分离得到6株破囊壶菌,对其基本形态特征、生活史和油脂含量等进行研究,开发其应用潜力。【方法】使用松花粉垂钓法对破囊壶菌进行分离,通过18S r RNA基因测序的方法对破囊壶菌进行鉴定,用显微镜观察其基本形态特征,通过使用尼罗红(Nile Red)染色法对油脂含量进行定性检测,并用GC-MS分析菌株的油脂含量和组成情况。【结果】18S r RNA基因鉴定其属于Aurantiochytrium sp.、Schizochytrium sp.和Thraustochytrium sp.三个属。破囊壶菌的脂肪酸主要成分为十六碳饱和脂肪酸和二十二碳六烯酸(DHA),其中Mn11和Mn15的饱和脂肪酸含量达到总脂肪酸含量的70%以上,Mn16和Sw7的DHA产量分别达到1.29 g/L和1.26 g/L。【结论】Mn11和Mn15菌株适合用于生物柴油的生产,Mn16和Sw7是DHA发酵生产的潜力菌株。  相似文献   

15.
The cell growth and docosahexaenoic acid (DHA) synthesis of Schizochytrium sp. are closely related to the culture pH. A two-phase pH control strategy based on nitrogen consumption was developed in which pH 7.0 was used for biomass accumulation and pH 5.0 for DHA synthesis. Using this strategy, the cell dry weight and DHA content reached 98.07 and 25.85 g/L, respectively. Furthermore, ammonia and citric acid were used as pH regulators. Application of citric acid further resulted in 7.88 and 4.87% improvements of total lipids and the ratio of DHA to total fatty acids, respectively. Ammonia, as a suitable nitrogen source, promoted non-lipid biomass accumulation. Using this method, a maximum DHA yield of 32.75 g/L was obtained with non-lipid biomass (58.01 g/L) and the ratio of DHA to total fatty acids (52.36%). This study provides an easy strategy for large-scale industrial production of DHA via high-cell-density fermentation of Schizochytrium sp.  相似文献   

16.
花生四烯酸高产菌株的选育   总被引:18,自引:0,他引:18  
本研究以一株能产生花生四烯酸的被孢霉菌为出发菌株,通过紫外线诱变筛选出一株高产花生四烯酸的突变株M10,发酵试验结果表明:突变株M10的每升培养液中干菌体得率为31g,油脂含量为8.3g,而原菌株仅为20.3g和5.4g,气相色谱分析结果M10所产花生四烯酸的量占总脂的10.06%(0.83g/L培养液)。同时对M10菌株的生长和发酵特性及发酵过程中菌丝体形态变化作了一定的探讨。  相似文献   

17.
The effect of aeration on the performance of docosahexaenoic acid (DHA) production by Schizochytrium sp. was investigated in a 1,500-L bioreactor using fed-batch fermentation. Six parameters, including specific growth rate, specific glucose consumption rate, specific lipid accumulation rate, cell yield coefficient, lipid yield coefficient, and DHA yield coefficient, were used to understand the relationship between aeration and the fermentation characteristics. Based on the information obtained from the parameters, a stepwise aeration control strategy was proposed. The aeration rate was controlled at 0.4 volume of air per volume of liquid per minute (vvm) for the first 24 h, then shifted to 0.6 vvm until 96 h, and then switched back to 0.4 vvm until the end of the fermentation. High cell density (71 g/L), high lipid content (35.75 g/L), and high DHA percentage (48.95%) were achieved by using this strategy, and DHA productivity reached 119 mg/L h, which was 11.21% over the best results obtained by constant aeration rate.  相似文献   

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