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金属离子促进Gluconobacter oxydans高效合成2-酮基-L-古龙酸 被引量:3
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作者 纪凯 刘杰 +2 位作者 秦苏东 刘立明 陈坚 《食品与生物技术学报》 CAS CSCD 北大核心 2010年第1期139-144,共6页
根据Gluconobacter oxydans合成2-酮基-L-古龙酸(2-KLG)代谢途径采用单因素实验研究了6种金属离子对细胞生长和2-KLG的影响,在此基础上,对促进细胞生长或产酸的Mg2+、Mn2+、Fe3+建立多元二次方程模型,得到上述3种金属元素的最佳浓度为Fe... 根据Gluconobacter oxydans合成2-酮基-L-古龙酸(2-KLG)代谢途径采用单因素实验研究了6种金属离子对细胞生长和2-KLG的影响,在此基础上,对促进细胞生长或产酸的Mg2+、Mn2+、Fe3+建立多元二次方程模型,得到上述3种金属元素的最佳浓度为Fe3+0.21 mmol/L,Mn2+9.98 mmol/L和Mg2+4.23 mmol/L。在这一最优组合下,2-KLG产量达到65.1 g/L,与优化前比较,提高了144.4%。 展开更多
关键词 gluconobacter oxydans 金属离子 2-酮基-L-古龙酸
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Mannonic Acid and Bio-Ethanol Production from Konjac Using a Two-Step Bioprocess with Candida Shehatae and Gluconobacter Oxydans 被引量:1
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作者 Jianglin Zhao Xiaotong Zhang +3 位作者 Weiwei Lei Xingqi Ji Xin Zhou Yong Xu 《Journal of Renewable Materials》 SCIE EI 2020年第1期79-88,共10页
Amorphophallus konjac is rich in glucomannan,which can be hydrolyzed into glucose and mannose,thereby acting as an economic raw material for the acquisition of glucose and mannose.The total sugar yield was 91.2%when k... Amorphophallus konjac is rich in glucomannan,which can be hydrolyzed into glucose and mannose,thereby acting as an economic raw material for the acquisition of glucose and mannose.The total sugar yield was 91.2%when konjac powder was treated with 0.75%hydrochloric acid at 121℃for 1 h.Thus,dilute acid hydrolysates of konjac powder were used as a carbon source for obtaining value-added products.Here we showed that the microbial production of ethanol and mannonic acid was obtained by employing Candida shehatae(C.shehatae)and Gluconobacter oxydans(G.oxydans).Through a step-by-step bioprocess,glucose is the first selectively converted to ethanol by C.shehatae,which enables G.oxydans-mediated biocatalysis of mannose to mannonic acid.Finally,approximately 100 g ethanol and 340 g mannonic acid were produced starting from 1 kg refined konjac powder.The results demonstrated the feasibility of this bioconversion method for producing mannonic acid starting from crude hydrolysates of konjac powder. 展开更多
关键词 KONJAC mannonic acid ETHANOL gluconobacter oxydans Candida shehatae
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Investigating the Interaction Between Gluconobacter Oxydans and Bacillus M egaterium for 2-keto-L-gulonic Acid Biosynthesis in the Two-Step Vitamin C Fermentation 被引量:2
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作者 张志雄 孙君伟 袁景淇 《Journal of Shanghai Jiaotong university(Science)》 EI 2015年第3期281-285,共5页
In the two-step vitamin C fermentation process, its precursor 2-keto-L-gulonic acid was synthesized from L-sorbose by mixed culture of Gluconobacter oxydans and Bacillus megaterium. The interaction between Gluconobact... In the two-step vitamin C fermentation process, its precursor 2-keto-L-gulonic acid was synthesized from L-sorbose by mixed culture of Gluconobacter oxydans and Bacillus megaterium. The interaction between Gluconobacter oxydans and Bacillus megaterium remains unclear and it is a challenge to mathematically model the mixed growth of these two strains. The Monod-type equations were previously proposed to describe the coupled growth of Gluconobacter oxydans and Bacillus megaterium. However, in this study, we modeled the interaction of these two strains in a macroscopic view by introducing the population theory. Taking account of the fact that the density or concentration of Gluconobacter oxydans or Bacillus megaterium was hardly to measure accurately in the mixed culture broth, the data of concentrations of the substrate and product were used to indirectly investigate the relation between these two strains. Three batch experiments were used to validate our model. And according to the values of identified parameters, the type of interaction between Gluconobacter oxydans and Bacillus megaterium was concluded to be predation, where Gluconobacter oxydans was predator, and Bacillus megaterium was prey. 展开更多
关键词 2-keto-L-gulonic acid kinetic model mixed culture gluconobacter oxydans Bacillus megaterium
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Efficient biosynthesis of 2-keto-D-gluconic acid by fed-batch culture of metabolically engineered Gluconobacter japonicus 被引量:1
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作者 Weizhu Zeng Wen Cai +3 位作者 Li Liu Guocheng Du Jian Chen Jingwen Zhou 《Synthetic and Systems Biotechnology》 SCIE 2019年第3期134-141,共8页
2-keto-D-gluconic acid(2-KGA)is a key precursor for synthesising vitamin C and isovitamin C.However,phage contamination is as constant problem in industrial production of 2-KGA using Pseudomonas fluorescens.Gluconobac... 2-keto-D-gluconic acid(2-KGA)is a key precursor for synthesising vitamin C and isovitamin C.However,phage contamination is as constant problem in industrial production of 2-KGA using Pseudomonas fluorescens.Gluconobacter holds promise for producing 2-KGA due to impressive resistance to hypertonicity and acids,and high utilisation of glucose.In this study,the 2-KGA synthesis pathway was regulated to enhance production of 2-KGA and reduce accumulation of the by-products 5-keto-D-gluconic acid(5-KGA)and D-gluconic acid(D-GA)in the 2-KGA producer Gluconobacter japonicus CGMCC 1.49.Knocking out the ga5dh-1 gene from a competitive pathway and overexpressing the ga2dh-A gene from the 2-KGA synthesis pathway via homologous recombination increased the titre of 2-KGA by 63.81%in shake flasks.Additionally,accumulation of 5-KGA was decreased by 63.52%with the resulting G.japonicas-Δga5dh-1-ga2dh-A strain.Using an intermittent fed-batch mode in a 3 L fermenter,2-KGA reached 235.3 g L^−1 with a 91.1%glucose conversion rate.Scaling up in a 15 L fermenter led to stable 2-KGA titre with productivity of 2.99 g L^−1 h^−1,11.99%higher than in the 3 L fermenter,and D-GA and 5-KGA by-products were completely converted to 2-KGA. 展开更多
关键词 2-Keto-D-gluconic acid gluconobacter DEHYDROGENASE Homologous recombination Fed-batch fermentation
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Enhanced production of L-sorbose by systematic engineering of dehydrogenases in Gluconobacter oxydans
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作者 Li Liu Yue Chen +2 位作者 Shiqin Yu Jian Chen Jingwen Zhou 《Synthetic and Systems Biotechnology》 SCIE 2022年第2期730-737,共8页
L-Sorbose is an essential intermediate for the industrial production of vitamin C(L-ascorbic acid).However,the formation of fructose and some unknown by-products significantly reduces the conversion ratio of D-sorbito... L-Sorbose is an essential intermediate for the industrial production of vitamin C(L-ascorbic acid).However,the formation of fructose and some unknown by-products significantly reduces the conversion ratio of D-sorbitol to L-sorbose.This study aimed to identify the key D-sorbitol dehydrogenases in Gluconobacter oxydans WSH-003 by gene knockout.Then,a total of 38 dehydrogenases were knocked out in G.oxydans WSH-003,and 23 dehydrogenase-deficient strains could increase L-sorbose production.G.oxydans-30,wherein a pyrroloquinoline quinone-dependent glucose dehydrogenase was deleted,showed a significant reduction of a by-product with the extension of fermentation time.In addition,the highest conversion ratio of 99.60%was achieved in G.oxydans MD-16,in which 16 different types of dehydrogenases were inactivated consecutively.Finally,the gene vhb encoding hemoglobin was introduced into the strain.The titer of L-sorbose was 298.61 g/L in a 5-L bioreactor.The results showed that the systematic engineering of dehydrogenase could significantly enhance the production of L-sorbose. 展开更多
关键词 D-sorbitol dehydrogenase gluconobacter oxydans L-ascorbic acid Metabolic engineering
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Study on the Effect of Mutated Bacillus megaterium in Two-Stage Fermentation of Vitamin C 被引量:5
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作者 吕树娟 王军 +1 位作者 姚建铭 余增亮 《Plasma Science and Technology》 SCIE EI CAS CSCD 2003年第5期2011-2016,共6页
Bacillus megaterium as a companion strain in two-stage fermentation of vitamin C could secrete some active substances to spur growth of Gluconobacter oxydans to produce 2-KLG. In the fermenting system where Gluconobac... Bacillus megaterium as a companion strain in two-stage fermentation of vitamin C could secrete some active substances to spur growth of Gluconobacter oxydans to produce 2-KLG. In the fermenting system where Gluconobacter oxydans was combined with GB82-a mutated strain of B. megaterium by ion implantation, the amount of 2-KLG harvested was larger than that produced by the original B. megaterium BP52 being substituted for GB82. In this paper, we studied the effect of the active substances secreted by GB82 to enhance the capability of Gluconobacter oxydans to produce 2-KLG. The supernate of GB82 sampled at different cultivation times all had much more activity to spur Gluconobacter oxydans to yield 2-KLG than that of the original B. megaterium, which might be due to the genetic changes in the active components caused by ion implantation. Furthermore, the active substances of GB82's supernate would lose a part of its activity in extreme environments, which is typical of some proteins. 展开更多
关键词 bacillus megaterium gluconobacter oxydans two-stage fermentation of Vita- mine 2-kelo-L-gulonic acid
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Isolation of Acetic Acid Bacteria and Preparation of Starter Culture for Apple Cider Vinegar Fermentation 被引量:1
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作者 Bernadette Mathew Shaily Agrawal +2 位作者 Nandita Nashikkar Sunita Bundale Avinash Upadhyay 《Advances in Microbiology》 2019年第6期556-569,共14页
Vinegars are commonly used as food condiments and preservatives. Apple cider vinegar (ACV) is also used in the Ayurvedic pharmaceutical industry because of its medicinal properties. Since specifically selected starter... Vinegars are commonly used as food condiments and preservatives. Apple cider vinegar (ACV) is also used in the Ayurvedic pharmaceutical industry because of its medicinal properties. Since specifically selected starter cultures for commercial vinegar production are not readily available, apple juice supplemented with sugar is commonly inoculated with a microbiologically undefined culture obtained from the previous batch of ACV. The present work focuses on the isolation of yeasts and acetic acid bacteria from ACV and the preparation of a starter culture. ACV was produced in a bench scale bioreactor using a traditional fermentation process wherein an acetic acid concentration of 3.8% was obtained after three weeks. Several acetic acid bacteria (AAB) were isolated from ACV using selective media. Microscopy revealed the cultures to be gram negative to gram variable short rods. The growth pattern of the isolates on differential media and biochemical tests suggested the presence of Acetobacter and Gluconobacter species. Ten potent isolates were selected for starter culture preparation. Two consortia were formulated with five AAB isolates in each along with a yeast isolate and used for ACV production, wherein an acetic acid concentration of 4.2% - 4.9% was obtained in 10 - 12 days. Thus, these two starter cultures with locally isolated AAB can be used for the commercial production of apple cider vinegar. 展开更多
关键词 ACETOBACTER gluconobacter Apple CIDER VINEGAR STARTER Culture Acetic Acid
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葡萄糖酸氧化杆菌木糖醇脱氢酶基因的克隆与表达(英文) 被引量:1
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作者 林燕清 谢志鹏 +3 位作者 张建国 鲍文娜 潘海峰 李博义 《微生物学报》 CAS CSCD 北大核心 2012年第6期726-735,共10页
【目的】获得葡萄糖酸氧化杆菌(Gluconobacter oxydans CGMCC 1.637)的木糖醇脱氢酶基因,研究其酶学性质及碳源特别是D-阿拉伯醇和木糖醇对该酶活性的影响。【方法】通过已报道序列的木糖醇脱氢酶的保守区设计引物,用聚合酶链式反应(pol... 【目的】获得葡萄糖酸氧化杆菌(Gluconobacter oxydans CGMCC 1.637)的木糖醇脱氢酶基因,研究其酶学性质及碳源特别是D-阿拉伯醇和木糖醇对该酶活性的影响。【方法】通过已报道序列的木糖醇脱氢酶的保守区设计引物,用聚合酶链式反应(polymerase chain reaction,PCR)扩增获得目的基因片段。根据获得的片段序列设计引物克隆目的基因的5'和3'片段,将所获得的片段拼接,获得完整的木糖醇脱氢酶基因。通过构建工程菌获得重组蛋白,并利用氧化还原反应测定重组酶的活性。用含不同碳源的培养基培养G.oxydans CGMCC 1.637,并测定其破胞上清液木糖醇脱氢酶氧化木糖醇的活性;用不同碳源培养的G.oxydans CGMCC 1.637转化木酮糖,用高效液相色谱法测定木糖醇的产量。【结果】获得一个新的798bp的木糖醇脱氢酶基因,所编码的木糖醇脱氢酶含265个氨基酸,属于短链脱氢酶家族。酶学性质研究发现,该木糖醇脱氢酶催化木糖醇氧化的最适合条件为35℃、pH 10.0,最高活性为23.27 U/mg,催化木酮糖还原为木糖醇的最适条件为30℃、pH 6.0。最高活性为255.55 U/mg;该木糖醇脱氢酶的对木糖醇的Km和Vmax分别为78.97 mmol/L和40.17 U/mg。碳源诱导实验表明,d-山梨醇对G.oxydans CGMCC 1.637木糖醇脱氢酶的活性有明显的促进作用,而葡萄糖、果糖、木糖、木糖醇、D-阿拉伯醇对木糖醇脱氢酶活性有明显的抑制作用。而在转化实验中,用d-甘露糖培养的G.oxydans CGMCC 1.637的转化能力明显高于其他碳源培养的G.oxydans CGMCC 1.637的转化能力,其中,用阿拉伯醇培养的G.oxydans CGMCC 1.637的转化能力最低,仅为对照的35%。【结论】克隆自G.oxydans CGMCC 1.637的木糖醇脱氢酶基因是一个新的基因,用阿拉伯醇培养的G.oxydans CGMCC 1.637破胞液木糖醇脱氢酶活性低;且阿拉伯醇对G.oxydans CGMCC 1.637木酮糖的还原能力具有抑制作用。 展开更多
关键词 葡萄糖酸氧化杆菌(gluconobacter oxydans) 短链脱氢酶/还原酶家族 木糖醇脱氢酶 D-木酮糖 木糖醇 克隆
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