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1.
当酵母细胞处于高渗压环境时,甘油被诱导合成以提高其胞内渗透压,这一过程受HOG途径的调控。GPD1基因为HOG途径的重要靶基因,高效表达使胞内3磷酸甘油脱氢酶酶活水平提高可极大地提高甘油的产量。本研究将产甘油假丝酵母(Candidaglycerologenesis)染色体DNA经Sau3AI部分酶解后的5~10kbDNA片段与经BamHI线性化及CIP处理过的酵母大肠杆菌穿梭质粒YEp51连接,以大肠杆菌DH5α为受体,构建产甘油假丝酵母的染色体基因文库。通过遗传互补法,在含50g/L氯化钠的培养基上筛选出15个转化子,对转化子0601进行了进一步鉴定,转化子0601所含质粒YEp0601带有YEp51的标记并可以消除Saccbaromycescerevisiae642菌株由于其GPD1,GPD2两基因的缺失突变而表现出的渗透压敏感性,表明已克隆到产甘油假丝酵母的编码胞浆3磷酸甘油脱氢酶的基因  相似文献   

2.
热带假丝酵母代谢烷烃过程中的β-氧化和代谢调控   总被引:5,自引:0,他引:5  
热带假丝酵母 (Candidatropicalis)能利用烷烃作唯一碳源和能源。当以烷烃或脂肪酸为碳源时 ,在细胞内可形成大量的过氧化物酶体 (peroxisome) ,同时诱导生成脂肪酸 β 氧化酶系 ,当以葡萄糖为碳源时 ,则极少有过氧化物酶体形成[1] ,一些C .tropicalis能氧化烷烃生成长链二元酸 (longchaindicarboxylicacid ,DCA)。由于这些特征 ,人们从酶学、分子生物学和实际应用等方面对这种酵母进行了深入研究 ,并阐述了C .tropicalis代谢烷烃的途径、脂肪酸β 氧化酶系…  相似文献   

3.
用热带假丝酵母(Candida tropicalis)SCB412作为出发菌株,经能量50KeV、剂量1× 1011~5 ×1015 ions/cm的N离子注入诱变处理,以产生可遗传的诱变。 N离子注入后,存活率与剂量呈指数衰减关系:log(存活率%)= 8.23- 0.604 × log(剂量),在培养过程中可观察到酵母菌菌落和细胞形态均发生了变化。经筛选,获得了一株能够利用  相似文献   

4.
用热带假丝酵母(Candida tropicalis)SCB412作为出发菌株,经能量50KeV、剂量1× 10~11~5 ×10~15 ions/cm~2的N~+离子注入诱变处理,以产生可遗传的诱变。 N~+离子注入后,存活率与剂量呈指数衰减关系:log(存活率%)= 8.23- 0.604 × log(剂量),在培养过程中可观察到酵母菌菌落和细胞形态均发生了变化。经筛选,获得了一株能够利用正十二烷烃发酵产生长链二元酸的高产菌热带假丝酵母SCB609。在初始正十二烷烃浓度为15%(v/v)下产酸量由43.5g/L上升到73.2g/L。比较两株菌发酵生长特性的差异,产酸过程有一定的变化。  相似文献   

5.
当酵母细胞处于高渗压环境时,甘油被诱导合成以提高其胞内渗透压,这一过程受HOG途径的调控。GPD1基因为HOG途径的重要靶基因,高效表达使胞内3磷酸甘油脱氢酶酶活水平提高可极大地提高甘油的产量。本研究将产甘油假丝酵母(Candidaglycerologenesis)染色体DNA经Sau3AI部分酶解后的5~10kbDNA片段与经BamHI线性化及CIP处理过的酵母大肠杆菌穿梭质粒YEp51连接,以大肠杆菌DH5α为受体,构建产甘油假丝酵母的染色体基因文库。通过遗传互补法,在含50g/L氯化钠的培养基上筛选出15个转化子,对转化子0601进行了进一步鉴定,转化子0601所含质粒YEp0601带有YEp51的标记并可以消除Saccbaromycescerevisiae642菌株由于其GPD1,GPD2两基因的缺失突变而表现出的渗透压敏感性,表明已克隆到产甘油假丝酵母的编码胞浆3磷酸甘油脱氢酶的基因  相似文献   

6.
克鲁斯假丝酵母及其近似种的脉冲电泳核型分析   总被引:6,自引:0,他引:6  
用钳位均匀电场脉冲电泳(CHEF)系统分析了克鲁斯假丝酵母(Candida krusei),郎比可假丝酵母(C. lambica)和粗状假丝酵母(C. valiad)的模式菌株的电泳核型,发现这三种表型相似的假丝酵母却具有互不相同的染色体DNA分子带型,为其分类学研究提供了可靠的鉴别依据。在常规分类学研究的基础上,测定了AS 2.75(原定种名为(C. incospicua),AS2.1182(原定种名为 C. lambica)和AS 2.1772(未定种)等三株假丝酵母的G+C含量和脉冲电泳核型。通过对已报道的C. inconspicu的G+C含量及上述三种假丝酵母模式菌株的脉冲电泳核型的比较分析证明,AS 2.75和AS 2.1772为粗状假丝酵母(C. valida),AS 2.1182为克鲁斯假丝酵母(C. krusei)。  相似文献   

7.
在脉冲电泳(pulsed-field gel elctrophoresis,PFGE)研究中,经常使用的分子量标记有啤酒酵母(Saccharomyces cereveslae)和粟酒裂殖酵母(Schizosaccharomyces pombe)的染色体完整DNA。其中,啤酒酵母(如菌株YNN295)有16条染色体,分子量变化范围为0.25Mb~2.2Mb(McCluskeyelal,1990),适于作为小于2.2Mb的染色体DNA的分子量标记;粟酒裂殖酵母(如菌株972h-)有3条染色体,分子量…  相似文献   

8.
一株高效脱酚菌麦芽糖假丝酵母10-4的研究   总被引:7,自引:0,他引:7  
从炼油厂严重污染的污水和土壤中分离筛选到12株假丝酵母及丝孢酵母,能以苯酚为唯一碳源生长,28.40h内降解苯酚可达1200mg/L以上。其中10-4号菌株降解苯酚浓度最高可达1700mg/L。在含500mg/l苯酚及20mg/LCN-(50mg/LKCN)的培养液中,降解苯酚的同时能降解13.7mg/L的CN。鉴定为麦芽糖假丝酵母(Condidamaltosa)。其生长的最适pH范围为6-9,降解苯酚的最适pH范围为4-9,生长的最适温度为25-32℃,降解苯酚的最  相似文献   

9.
采用等高锁状均质电场(CHEF)凝胶电泳技术,对黑木耳(Auricularia auricula)电泳核型进行分析,以酿酒酵母(Saccharomyces cerivisiae)菌株YPH755和祭酒裂殖酵母(Schizosaccharomyces pombe)菌株AS2.214的染色体DNA大小作为分子量标记,估计黑木耳基因组中至少包含9条DNA分子量在850kb至5800kb之间的染色体,多数染色体DNA分子量在1000kb至3400kb之间,基因组大小在22Mb以上。  相似文献   

10.
脉冲电泳核型分析在酿酒酵母菌分类学研究中的应用   总被引:13,自引:0,他引:13  
根据酵母属( Saccharomyces Meyen ex Reess) 分类学研究最新进展,核实并更新了保藏于中国普通微生物菌种保藏中心的该属菌株的种类归属。在形态和生理生化性状,包括对6 种糖的发酵能力、对18 种碳源和3 种氮源化合物的同化能力、在无维生素培养基中和37 ℃下的生长情况、对放线菌素酮的抗性等常规分类学研究的基础上,对部分疑难菌株进行了脉冲电泳核型比较分析。酿酒酵母( Saccharomycescerevisiae) 、贝酵母( S.Bayanus) 和巴氏酵母( S.Pastorianus) 三者与少孢酵母( S.Exiguus) 在电泳核型上具有明显的差异,主要表现在前三者染色体DNA 分子的大小范围均为225 ~2200 kb ,而S.Exiguus 缺少小于365 kb 的染色体DNA 分子。S.Cerevisiae 的模式和权威菌株具有12 ~14 条染色体DNA 带;S.BayanusS.Pastorianus 的模式菌株均有17 条带,但在带型上存在一定差异。原归于S.Cerevisiae 的株菌AS2-100 具有16 条带,与S.Cerevisiae 区别明显而与S.…  相似文献   

11.
Selected yeast classified as Candida sake van Uden et Buckley were examined for their physiological, morphological and immunological properties and their DNA relatedness. Candida maltosa Komagata, Nakase et Katsuya is herein recognized as a species separate from C. sake, Candida maltosa was distinguished from C. sake and from C. tropicalis by insignificant DNA reassociation. In addition, C. maltosa was distinguished from C. sake by its higher maximal growth temperature and lower guanine plus cytosine content of its DNA and from C. tropicalis by its failure to utilize soluble starch for growth and its resistance to cycloheximide. The species C. cloacae and C. subtropicalis are placed in synonymy with C. maltosa.  相似文献   

12.
By using pulsed-field gel electrophoresis, we have separated the entire chromosome bands and examined the electrophoretic karyotypes of 27 strains of Candida albicans. The electrophoretic karyotype varied widely among these strains. Their chromosomal DNAs were resolved into 7-12 bands ranging in size from 0.42 to 3.0 Mb. Most of the separated chromosomal bands were assigned by eight cloned C. albicans DNA probes. These results suggest that the haploid number of C. albicans chromosomes is eight. Each of the probes hybridized specifically to one or two bands of similar size in most strains. With the exception of the MGL1 probe, when two bands were detected by one probe, the size of one of them was very conserved whilst the other was of fairly variable size. The sizes of the chromosome bands assigned by the MGL1 probe were much more variable. As C. albicans is considered to be a diploid organism, it is inferred that the karyotype polymorphism between strains is mainly derived from wide size heterogeneity in one of the homologous chromosomes. Furthermore, we have confirmed species-specific and strain-specific variation in medically important Candida species (C. stellatoidea, C. tropicalis, C. parapsilosis, C. krusei, C. guilliermondii, C. kefyr and C. glabrata). Electrophoretic karyotype analysis is thus useful for species assignation. The TUB2 probe, encoding C. albicans beta-tubulin, hybridized to the chromosomal DNA of all the Candida species examined, but four C. albicans probes exhibited cross-species hybridization with C. stellatoidea only. The karyotype of C. stellatoidea seems to be within the range of the intraspecies variation observed in C. albicans.  相似文献   

13.
Evaluation of industrial yeasts for pathogenicity.   总被引:7,自引:0,他引:7  
Eleven yeasts representative of species of industrial interest were compared with Candida albicans for their potential pathogenicity for untreated and cortisone-treated mice. Only C. tropicalis produced a progressive infection similar to that produced by C. albicans. Candida lipolytica, Torulopsis spp., and Hansenula polymorpha were not recovered from mice 6 days after inoculation. Kluyveromyces fragilis, C. pseudotropicalis, C. utilis, C. guilliermondii and C. maltosa were recovered from mice but did not produce evidence of infection.  相似文献   

14.
Phylogenetic relationships of several species within the n-alkane assimilating Candida yeasts were investigated by using characters from the nucleotide sequence of the variable D1/D2 region at the 5' end of a large-subunit (26S) ribosomal DNA (rDNA) gene. First the nucleotide sequences of D1/D2 domain of Candida sp. 1098 (formerly identified as C. tropicalis 1098) and its dicarboxylic acid-producing-mutant strain M1210 were investigated. These two nucleotide sequences were identical and lacked only one base pair compared with that of C. maltosa CBS 5611 (type strain), and they were identified as C. maltosa. We then showed that C. maltosa IFO 1978 (formerly identified as C. cloacae) and C. maltosa IFO 1975 (formerly identified as C. subtropicalis) had the same nucleotide sequence and had only one base pair substitution compared with C. maltosa CBS 5611 (type strain), which is consistent with conventional classification. We also found that another widely studied n-alkane assimilating Candida yeast, C. tropicalis pk233, to be C. viswanathii.  相似文献   

15.
Monospecific factor serum for identifying Candida tropicalis was obtained either from rabbit antiserum to heated cells of C. tropicalis M 1519 (S 96) or from antiserum to C. tropicalis IFO 1400, by adsorption with heated cells of Candida albicans serotype A, or C. albicans (A) and Candida krusei, respectively. We designated this adsorbed serum factor t serum. The monospecific factor serum reacted with 31 out of 32 strains of C. tropicalis, only when tested on heat-treated cell antigens, whereas it did not react with any of 72 strains of the six other medically important species of Candida. The morphological and physiological characteristics of the one strain of C. tropicalis that did not react with the factor t serum, designated the t- -strain, were shown to be similar to those of the type strain of C. tropicalis by most of the methods employed for identifying Candida. Therefore, cell wall mannan from the t- -strain was compared with that from several typical strains of C. tropicalis for its specificity by the precipitation reaction and also for its 1H-nuclear magnetic resonance spectrum. The results showed that these mannans are similar to each other serologically and physicochemically, suggesting that the new antigen t is not mannan. Taxonomic characterization of the t-- and several typical strains of C. tropicalis was carried out by determining the mol% G+C of their DNA and also their DNA homology. Although the mol% G+C values of four typical strains of C. tropicalis were fairly similar (35.2 to 36.2 mol% by the Tm method and 35.5 to 36.4 mol% by the HPLC method), the t- -strain had a G+C content of 44.1 (Tm) and 43.3 (HPLC) mol%. Furthermore, the DNAs of the t- -strain and the type strain of C. tropicalis showed only 18.2% relatedness. These results suggest that the antigen corresponding to serum factor t exists only in the cell wall of C. tropicalis strains, not in those of the other medically important Candida, and that the t- -strain should not be classified as C. tropicalis. In conclusion, the taxonomic value and usefulness of factor t serum is primarily for differentiating C. tropicalis from C. albicans serotype A serologically.  相似文献   

16.
应用流式细胞术(FCM)对处于稳定生长阶段的念珠菌属(Candida)的7种8株念珠菌进行了DNA总含量的流式细胞(FCM)分析。这8株念珠菌是:白念珠菌(C.albicans)2株,热带念珠菌(C.tropicalis),克柔念珠菌(C.krusei),近平滑念珠菌(C.parapsiolosis),乳酒念珠菌(C.kefyr),白念珠菌星形变种(C.stellatoidea),即血清B型白念珠菌,季也蒙念珠菌(C.guilliermondii)各一株。应用EB一步插入法染色,用鸡红细胞(CRBC)作为内参标准进行DNA总含量测定。分析结果表明:稳定生长阶段的组方图上,大多数念珠菌细胞处于DNA合成周期的G_0/G_1期;DNA总含量有明显的种间和种内差异。  相似文献   

17.
A simple electrophoretic method for yeast identification was evaluated. Whole cells were extracted by SDS and the protein profiles obtained in SDS-PAGE after Coomassie blue staining were compared for 52 strains from 9 species of yeast or yeast-like fungi commonly isolated from man (Candida albicans, C. glabrata, C. guilliermondii, C. krusei, C. parapsilosis, C. pseudotropicalis, C. tropicalis, Geotrichum candidum, Saccharomyces cerevisiae). The corresponding patterns showed 30 to 45 polypeptides in the range 95-20 kDa and were clearly different for the 9 species. No differences could be detected between strains from the same species. The characteristic patterns were obtained within 24 h allowing rapid identification of the most commonly encountered clinical yeast isolates.  相似文献   

18.
Cytochemical staining and microscopy were used to study the trophic structures and cellular morphotypes that are produced during the colonization of oil-water interfaces by oil-degrading yeasts and bacteria. Among the microorganisms studied here, the yeasts (Schwanniomyces occidentalis, Torulopsis candida, Candida tropicalis, Candida lipolytica, Candida maltosa, Candida paralipolytica) and two representative bacteria (Rhodococcus sp. and Pseudomonas putida) produced exocellular structures composed of biopolymers during growth on petroleum hydrocarbons. Four of the yeasts including S. occidentalis, T. candida, C. tropicalis and C. maltosa excreted polymers through modified sites in their cell wall ('canals'), whereas C. lipolytica and C. paralipolytica and the two bacterial species secreted polymers over the entire cell surface. These polymers took the form of fibrils and films that clogged pores and cavities on the surfaces of the oil droplets. A three-dimensional reconstruction of the cavities using serial thin sections showed that the exopolymer films isolated the ambient aqueous medium together with microbial cells and oil to form both closed and open granules that contained pools of oxidative enzymes utilized for the degradation of the oil hydrocarbons. The formation of such granules, or 'trophosomes,' appears to be a fundamental process that facilitates the efficient degradation of oil in aqueous media.  相似文献   

19.
Development of a transformation system in the n-alkane-assimilating diploid yeast Candida tropicalis requires an antibiotic resistance gene in order to establish a selectable marker. The resistance gene for hygromycin B has often been used as a selectable marker in yeast transformation. However, C. tropicalis harboring the hygromycin resistance gene (HYG) was as sensitive to hygromycin B as the wild-type strain. Nine CTG codons were found in the ORF of the HYG gene. This codon has been reported to be translated as serine rather than leucine in Candida species. Analysis of the tRNA gene in C. tropicalis with the anticodon CAG [tRNA(CAG) gene], which is complementary to the codon CTG, showed that the sequence was highly similar to that of the C. maltosa tRNA(CAG) gene. In C. maltosa, the codon CTG is read as serine and not leucine. These results suggested that the HYG gene was not functional due to the nonuniversal usage of the CTG codon. Each of the nine CTG codons in the ORF of the HYG gene was changed to a CTC codon, which is read as leucine, by site-directed mutagenesis. When a plasmid containing the mutated HYG gene (HYG#) was constructed and introduced into C. tropicalis, hygromycin-resistant transformants were successfully obtained. This mutated hygromycin resistance gene may be useful for direct selection of C. tropicalis transformants.  相似文献   

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