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1.
目的:筛选新的吡咯喹啉醌(PQQ)产生菌株。方法:收集土壤样品富集培养,分离菌株,NBT染色法快速筛选PQQ产生菌,经Native-PAGE复筛,NBT-Gly法和分光光度法相结合测定菌株PQQ产量;选取产量最高的1株菌考察菌株生长条件,扩增16S rDNA并测序,Blast比对分析确定菌株分类位置。结果:从500余份土壤样品中筛选得到1株PQQ产生菌T28,PQQ产量达13.3 mg/L。该菌株16S rDNA序列与生丝微菌的同源性为96%,确定了T28的最适生长培养基配方。结论:从土壤中筛选到1株新的PQQ产生菌,命名为生丝微菌T28。  相似文献   

2.
吡咯喹啉醌(Pyrroloquinoline quinone,PQQ)作为一种新型的氧化还原酶辅酶,在医药和食品等领域有广阔的应用前景。为改善扭脱甲基杆菌Methylobacterium extorquens AM1 PQQ生产性能,采用常压室温等离子体(Atmospheric and room temperature plasma,ARTP)进行诱变,结合高通量快速筛选方法,得到以PQQ产量为指标的正向突变株。ARTP诱变的菌株正突变率为31.6%,筛选得到的较优正突变株M.extorquens AM1(E-F3),PQQ产量达到54.0 mg/L,是出发菌株的近3倍。系统的高通量方法筛选ARTP诱变菌为后续进一步提高M.extorquens AM1菌株PQQ的产量奠定了基础,亦为改善菌株生产性能提供了新思路。  相似文献   

3.
吡咯喹啉醌(PQQ)是一种细菌脱氢酶的辅酶,具有促进机体生长、调节机体自由基水平等功能,应用于食品、医药等领域。由于化学合成法成本较高,微生物发酵法生产PQQ受到关注。目前,发酵法生产PQQ产量较低,限制了其工业应用。然而,由于对PQQ菌株的合成与调控机制尚缺乏深入理解,以及对野生型菌株缺乏必要的基因工程改造手段,目前采用代谢工程强化PQQ合成菌株还缺乏相关基础。因此,本研究以扭脱甲基杆菌Methylobacterium extorquens I-F2为研究对象,整合常压室温等离子体诱变、流式细胞术分选和高通量筛选策略,对样品制备和流式分选过程进行优化,最终筛选出一株PQQ高产突变菌株1-C6,PQQ产量比出发菌株I-F2提高98.02%。本文所述的流式细胞术结合高通量筛选方法能简单、快速地获得高产突变菌株,相比于基因工程改造和传统筛选方法,具有提升效果明显且易于实施等优势。  相似文献   

4.
【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   

5.
本文旨在通过诱变和耐受性筛选的手段提高放线菌ε-PL的产量.以稠李链霉菌Streptomyces padanus LS-L5为出发菌,经紫外诱变,在以琥珀酸为唯一碳源的培养基上筛选快速生长的菌株,测定突变株的ε-PL发酵水平和遗传稳定性.经初筛和复筛,获得突变株H3,其摇瓶发酵ε-PL产量为0.68 g/L,较出发菌提高了41%,传代4次产量基本稳定.H3在5L发酵罐中分批发酵,ε-PL产量达到2.0 g/L,较出发菌提高了一倍.在固定二氧化碳的能力方面,突变株H3的PEP羧化酶酶活较出发菌株LSL5的PEP羧化酶酶活提高了1.67倍.  相似文献   

6.
从虎杖内生细菌和黏细菌中筛选吡咯喹啉醌(PQQ)产生菌。采用3种以甲醇为唯一碳源的培养基对160株供试菌株进行摇瓶培养发酵,发酵产物采用光谱学分析法及HPLC法筛选。结果显示,通过初筛和复筛共得到甲醇利用型菌134株,PQQ产生菌4株,其中菌株083114的PQQ产量为64.34 mg/L。菌株083114的16S rRNA基因序列分析结果显示,其序列与酸快生芽孢杆菌(Bacillus acidiceler)的系统发育关系最近。虎杖内生细菌及黏细菌中存在PQQ产生菌。  相似文献   

7.
【背景】由于甲基营养菌被发现的时间较短,而且可以生产吡咯喹啉醌(pyrroloquinoline quinone,PQQ)的甲基杆菌属细菌只有少数菌株的全基因组序列被公布,增加了该类细菌基因组学和生物代谢途径研究的难度。【目的】将本实验室筛选的PQQ生产菌经多种诱变方式处理,用于提高PQQ的发酵产量。对高产突变菌株进行全基因组解析,以探究甲基杆菌PQQ合成的分子机制,为后续分子育种提供序列背景信息。【方法】将野生型PQQ生产菌株进行紫外诱变、亚硝基胍诱变、甲基磺酸乙酯诱变、硫酸二乙酯诱变和紫外-氯化锂复合诱变。将突变菌株利用PromethION三代测序平台和MGISEQ-2000二代测序平台测序,然后进行组装和功能注释。组装得到的全基因组序列与模式菌株扭脱甲基杆菌AM1 (Methylobacterium extorquens AM1)进行比较基因组学分析。【结果】经11轮诱变获得一株突变菌株NI91,其PQQ产量为19.49mg/L,相较原始菌株提高44.91%。突变菌株NI91的基因组由一个5 409 262 bp的染色体组成,共编码4 957个蛋白,与模式菌株M. extorqu...  相似文献   

8.
产灵菌红素沙雷氏菌的诱变育种   总被引:5,自引:2,他引:3  
通过紫外线—氯化锂复合处理灵菌红素生产菌沙雷氏菌 (Serratiasp )W 0 2 0 6,用高浓度葡萄糖为碳源的选择性平板定向筛选抗葡萄糖分解代谢物阻遏的高产株 ,筛得高产突变株B 2 0 ,相对于原始菌株 ,B 2 0摇瓶发酵灵菌红素产量提高了 3倍 ,5L反应器上的产量提高了 63 %。  相似文献   

9.
本文旨在通过诱变和耐受性筛选的手段提高放线茵£一PL的产量。以稠李链霉菌Strepto—myces padanus LS-L5为出发菌,经紫外诱变,在以琥珀酸为唯一碳源的培养基上筛选快速生长的菌株,测定突变株的ε-PL发酵水平和遗传稳定性。经初筛和复筛,获得突变株H3,其摇瓶发酵ε-PL产量为0.68dL,较出发菌提高了41%,传代4次产量基本稳定。H3在5L发酵罐中分批发酵,ε-PL产量达到2.0g/L,较出发菌提高了一倍。在固定二氧化碳的能力方面,突变株H3的PEP羧化酶酶活较出发菌株LS-L5的PEP羧化酶酶活提高了1.67倍。  相似文献   

10.
龙燕  刘然  梁恒宇  刘天罡 《微生物学报》2018,58(7):1298-1308
【目的】乳酸链球菌素(nisin)是一种天然生物活性抗菌肽,对包括食品腐败菌和致病菌在内的许多革兰氏阳性菌具有强烈的抑制作用,而用作食品的防腐剂。本研究通过建立高通量筛选方法,实现高效快速省力的高产菌株筛选,为工业上筛选高产菌株提供研究方案。【方法】通过对Lactococcus lactis ATCC11454菌株进行紫外诱变,获得2511株突变株。利用Biomek FXP自动工作站建立96微孔板的高通量筛选方法,突变株经高通量挑选、菌种培养及菌液稀释后,加入到生长至对数中期的藤黄微球菌中,采用改进后的比浊法快速检测nisin生物活性。用此方法对突变株进行初筛、复筛后可得到nisin高产菌株,并通过摇瓶发酵评估高通量筛选方法。【结果】确定比浊法检测的条件为:nisin活性稀释在10–25 IU/m L范围内,与藤黄微球菌反应2 h后检测藤黄微球菌的菌体量(OD600)。2511株突变株经过2轮高通量筛选,最终获得约50株产量提升的菌株,对其中8株进行摇瓶精确测量,显示产量均有提高,并且其中一株产量提升了30%,成功建立了高通量筛选nisin高产菌株的方法。【结论】利用比浊检测法,在其基础上成功建立高通量筛选高产nisin菌的方法,经过初筛复筛,整个周期由1人耗时5 d即可完成2511株突变株的筛选工作。相较于传统的选育方法,高通量筛选具有快速、稳定、高效的特点,提高了筛选效率,缩短了选育周期,是工业上筛选高产nisin菌的有效手段。  相似文献   

11.
采用新型常压室温等离子体射流诱变产油酵母,结合快速突变产油酵母操作条件及基于96孔板的高通量筛选手段,获得了一系列增殖速度和产油量发生变化的突变株。在等离子体对菌株致死率为99%的条件下获得的以突变株增殖速度为指标的正突变率达到27.2%。用含酵母粉 (10 g/L)、蛋白胨 (10 g/L) 及葡萄糖 (20 g/L) 的酵母膏胨葡萄糖培养基进行发酵实验表明,筛选得到的高产突变体产油量从对照株的1.87% (W/W) 增加到4.07% (W/W)。  相似文献   

12.
目的:研究甲醇脱氢酶基因mpq1818在甲基营养菌MP688生长代谢中的作用。方法:利用同源重组原理构建中间为庆大霉素抗性基因Gmr、两侧mpq1818基因上下游序列同源的敲除载体pAK0-up-Gmr-down,接合转移导入MP688,通过庆大霉素抗性和组合PCR方法筛选基因敲除菌,并检测其生长、甲醇脱氢酶活性、甲醇利用及吡咯喹啉醌(PQQ)生物合成能力等方面的差异。结果:抗性和PCR验证显示mpq1818缺失株构建成功;与野生菌相比,缺失株的甲醇脱氢酶活力及利用甲醇的能力降低,而且菌株的生长和PQQ产量也有显著下降。结论:基因mpq1818的缺失影响菌株前期生长与PQQ合成。  相似文献   

13.
A novel and efficient screening method for pyrroloquinoline quinone (PQQ) high-yielding methylotrophic strains was developed by using glucose dehydrogenase apoenzyme (GDHA) which depended on PQQ as the cofactor. Using this high-throughput method, PQQ high-yielding strains were rapidly screened out from thousands of methylotrophic colonies at a time. The comprehensive phylogenetic analysis revealed that the highest PQQ-producing strain zju323 (CCTCC M 2016079) could be assigned to a novel species in the genus Methylobacillus of the Betaproteobacteria. After systematic optimization of different medium components and cultivation conditions, about 33.4 mg/L of PQQ was obtained after 48 h of cultivation with Methylobacillus sp. zju323 at the shake flask scale. Further cultivations of Methylobacillus sp. zju323 were carried out to investigate the biosynthesis of PQQ in 10-L bench-top fermenters. In the batch operation, the PQQ accumulation reached 78 mg/L in the broth after 53 h of cultivation. By adopting methanol feeding strategy, the highest PQQ concentration was improved up to 162.2 mg/L after 75 h of cultivation. This work developed a high-throughput strategy of screening PQQ-producing strains from soil samples and also demonstrated one potential bioprocess for large-scale PQQ production with the isolated PQQ strain.  相似文献   

14.
以红曲米中筛选到的红色红曲霉菌株G为原始菌株,通过农杆菌介导T-DNA插入突变技术,成功构建了含有1 483株红曲霉突变子的T-DNA插入突变库。用HPLC等方法从突变库中筛选出10株γ-氨基丁酸(GABA)产量稳定高于原始菌株G的突变子,薄层层析结合HPLC技术分析了10株突变子发酵液中桔霉素的含量;其中突变子1047的GABA产量较高,为1.169g/L,是原始菌株G(GABA产量0.472g/L)的247.67%,桔霉素含量稳定低于原始菌株G。以红曲霉菌株G和突变子1047为实验材料,通过5 L发酵罐发酵并定时取样,HPLC等方法精确分析发酵液各种活性物质的含量;结果显示,突变子1047生长速度稍快于原始菌株G;GABA、莫纳可林K(Monacolin K)、红曲色素色价分别为2.201 g/L、83.892 mg/L、21.984 U/mL,是原始菌株G的279.67%、108.01%和182.35%;而桔霉素产量为1.976 mg/L,是原始菌株G的41.71%。因此,利用TDNA插入的方法对红曲霉进行育种,能产生稳定的遗传变化,在红曲霉资源的保护和利用上有一定潜力。  相似文献   

15.
We succeeded in obtaining a strain adapted to higher temperature from a thermotolerant strain, Gluconobacter frateurii CHM43, for sorbose fermentation. The adapted strain showed higher growth and L: -sorbose production than original CHM43 strain at higher temperature around 38.5-40?°C. It was also shown to be useful even with the fermentation without temperature control. To understand the sorbose fermentation ability of the adapted strain at higher temperature, D: -sorbitol-oxidizing respiratory chain was compared with the CHM43 strain and the adapted strain. We found that the activity of pyrroloquinoline quinone (PQQ)-dependent glycerol dehydrogenase (GLDH), which is a primary dehydrogenase of the respiratory chain and responsible for L: -sorbose production, was decreased when the temperature increased, but the decreased activity of GLDH was recovered by the addition of PQQ. Since the adapted strain was found to produce more PQQ than the CHM43 strain, it was suggested that the adapted strain keeps GLDH as holoenzyme with the increased PQQ production, and thus produces more L: -sorbose and grows better under higher temperature.  相似文献   

16.
The effects of pH control strategy and fermentative operation modes on the biosynthesis of pyrroloquinoline quinine (PQQ) were investigated systematically with Methylobacillus sp. CCTCC M2016079 in the present work. Firstly, the shake-flask cultivations and benchtop fermentations at various pH values ranging from 5.3 to 7.8 were studied. Following a kinetic analysis of specific cell growth rate (μ x ) and specific PQQ formation rate (μ p ), the discrepancy in optimal pH values between cell growth and PQQ biosynthesis was observed, which stimulated us to develop a novel two-stage pH control strategy. During this pH-shifted process, the pH in the broth was controlled at 6.8 to promote the cell growth for the first 48 h and then shifted to 5.8 to enhance the PQQ synthesis until the end of fermentation. By applying this pH-shifted control strategy, the maximum PQQ production was improved to 158.61 mg/L in the benchtop fermenter, about 44.9% higher than that under the most suitable constant pH fermentation. Further fed-batch study showed that PQQ production could be improved from 183.38 to 272.21 mg/L by feeding of methanol at the rate of 11.5 mL/h in this two-stage pH process. Meanwhile, the productivity was also increased from 2.02 to 2.84 mg/L/h. In order to support cell growth during the shifted pH stage, the combined feeding of methanol and yeast extract was carried out, which brought about the highest concentration (353.28 mg/L) and productivity (3.27 mg/L/h) of PQQ. This work has revealed the potential of our developed simple and economical strategy for the large-scale production of PQQ.  相似文献   

17.
To improve fermentative production of enduracidin, heavy‐ion beams generated by the Heavy Ion Research Facility in Lanzhou (HIRFL), China, were employed for the first time to generate mutations in Streptomyces fungicidicus. Initial screening detected 44 positive mutants with larger inhibition zone, which were subsequently tested based on flask fermentation. Finally, 20 mutants showed 20% increase in enduracidin production, when compared with the original strain. Among them, enduracidin production by the three mutants (M13, M30, and M34) was significantly higher than that by the original strain. In particular, mutant M30 exhibited highest enduracidin production, which was 114% higher than that obtained with the original strain. Following culture optimization, the maximal enduracidin yield obtained by M30 reached 918.5 mg/L in 10 days, which was 34% higher than that noted in the control.  相似文献   

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