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121.
丁二酸是一种重要的C4化合物平台,可以合成一系列重要化合物。文中对产琥珀酸放线杆菌Actinobacillus succinogenes GXAS137发酵生产丁二酸培养基成分进行优化。通过单因素和Plackett-Burman试验设计筛选出影响丁二酸发酵的重要参数,采用最陡爬坡实验逼近最大丁二酸生产区域后,利用Box-Behnken设计确定重要参数的最佳水平。筛选结果表明,影响丁二酸产量的重要参数是葡萄糖、酵母提取物和碱式碳酸镁浓度。最佳条件为(g/L):葡萄糖70.00,酵母提取物9.20,碱式碳酸镁58.10。优化后丁二酸产量达到47.64 g/L。与初始条件 (36.89 g/L) 相比,丁二酸浓度提高了30 %。在最佳工艺条件下得到的试验结果与模型预测值很吻合,说明建立的模型是有效的。  相似文献   
122.
胸膜肺炎放线杆菌是引起猪传染性胸膜肺炎(APP)的呼吸道病原菌,其分泌的Apx毒素是最重要的毒力因子之一。为构建APP突变弱毒菌株,在apxIC基因下游XhoI酶切位点处插入氯霉素抗性基因(Chlr)制备转移载体,通过电转化导入APP血清10型参考菌株(D13039)进行同源重组,筛选获得apxIC基因插入突变菌株D13039C-Chlr。该突变菌株特性鉴定结果表明其溶血活性完全丧失,可正常增殖和分泌ApxI毒素,连续10次传代后基因组中插入的Chlr基因可稳定遗传,利用5个剂量(2×108CFU~2×106CFU)对每组3只小鼠腹腔攻毒结果显示突变菌株毒力较母源菌株降低至少100倍以上,将突变菌株作为弱毒活疫苗经滴鼻途径免疫仔猪后利用APP血清1型(4074)和血清10型(D13039)菌株攻毒进行免疫原性鉴定,结果显示血清1型攻毒后非免疫组4头仔猪全部死亡而免疫组4头中死亡2头,非免疫组肺损伤指数(34.4)显著高于免疫组(17.5),血清10型攻毒后非免疫组肺损伤指数(17.5)也高于免疫组(10.5),同时鼻拭子和肺组织样品的细菌重分离数及PCR检测阳性数非免疫组也明显高于免疫组,表明突变菌株作为弱毒活设疫苗对仔猪具有一定的交叉免疫保护力。该突变菌株的鉴定ApxI毒素活性及研制具有交叉保护活性的APP弱毒活疫苗奠定的基础。  相似文献   
123.
为了深入研究猪胸膜肺炎放线杆菌(Actinobacillus pleuropneumonie,App)转铁结合蛋白基因(Transferrin BindingProtein8,脚)的生物学特性,采用生物信息学方法,对GenBank中的5株App的TbpB的核酸及其氨基酸序列进行比对,选取其中的中国湖北分离株(JL03)对其分子结构、理化性质及功能域、蛋白质二级和三级结构等重要参数进行了预测和分析,并在三级结构的基础上进行了同源建模。结果表明,不同APP菌株之间核酸序列相似性较大,而氨基酸序列存在较大差异,二级结构以延伸链和随机卷曲为主要构件,其空间结构与脑膜炎双球菌GNAl870蛋白相似性较高,以此为模板成功构建了三维结构分子模型,为TbpB基因功能的深入研究提供了线索和参考依据。  相似文献   
124.
目的从健康奶牛瘤胃液中分离、筛选出1株以产乙酸为主Actinomyces ruminicola。方法无菌采取装有瘤胃瘘奶牛的瘤胃液,按照厌氧茵分离步骤,通过Actinomyces ruminicola的特异性培养基进行筛选,提取分离菌的基因组DNA,克隆其16SrRNA基因,进行序列测定,分离出1株Actinomyces ruminicola。结果通过形态学观察、生化反应和序列分析证实所分离的1株产乙酸的杆菌为Actinomyces ruminicola。结论从健康牛瘤胃液中成功分离出1株Actinomyces ruminicola,为进一步研究其对瘤胃发酵的影响奠定了基础。  相似文献   
125.
通过接合转移和SacB负向筛选方法,成功构建了一株apxⅡC缺失的血清7型胸膜肺炎放线杆菌重组菌株。首先构建重组转移质粒pEHA1。将pEHA1转化供体菌大肠杆菌(E.coliβ2155),并将其与野生型APP血清7型亲本菌混合培养约5h,然后涂到含氯霉素抗性的培养基培养,挑取阳性克隆,接种到无抗性液体培养基,培养后涂于含有蔗糖的的固体培养基,培养一定时间后挑取蔗糖抗性的克隆,即可得到目的突变株。通过PCR、遗传稳定性、外毒素分泌、重组位点序列分析证明重组菌构建成功。通过对重组菌生物学特性进行初步研究,表明突变株生长能力未受影响,对小鼠毒力显著降低。该突变株构建体系的建立为猪传染性胸膜肺炎减毒活疫苗的开发及对胸膜肺炎放线杆菌新基因的功能研究奠定了良好基础。  相似文献   
126.
127.
Models of the cultivation process of Actinobacillus sp. cells in two media, rich (NB) and minimal (M9) that includes phenol as a sole carbon source, have not been described in the available literature. For these reasons, several single-substrate inhibition models (Monod, Andrew, and Tesseir) were investigated in order to determine the mathematical expression of Actinobacillus sp. growth rate. The experimental data for both nutrient broth and M9 media were fitted to the above models mentioning that Andrews' model best fits these data adequately for both media with regression coefficient of 0.973 and 0.962, respectively. The maximum predicted growth rate by this model is 0.37 h- 1 for both media obtained when the initial concentration of phenol is 100 mg/L. The half-saturation concentration constant, KP, is 1.00 mg/L, which represents the phenol concentration when μ is equal to half μmax. On the other hand, the inhibition constant, Kp is 13,000.00 mg/L for broth medium and 12,000 mg/L for M9 medium, which is a measure of sensitivity to inhibition by inhibitory substances. When cells are grown in nutrient broth and minimal media, the rate of cell production with time can be expressed by the Reccati and Voltera models. Voltera model better fits in the case of M9 minimal medium plus phenol as sole carbon source. The pH of 7, the incubation temperature of 35°C to 37°C, and the agitation rate of 150 rpm are the optimal conditions for achieving the higher percentage of phenol degradation by Actinobacillus sp. Succinic acid and glycine as carbon and nitrogen source, respectively, were the most efficient of the cosubstrates (out of 10 substrates tested) for removal of phenol on an mg/L basis.  相似文献   
128.
Trehalase was studied in Schizosaccharomyces pombe cells growing vegetatively on minimal medium and in sporulating cultures. Acid trehalase activity, measured at pH 4.2, was absent in vegetative cells and occurred only in asci, indicating that this activity represented the sporulation-specific trehalase reported previously. In contrast, neutral trehalase, measured at pH 6.0, was constitutively present in vegetative cells during the exponential and stationary growth phase as well as in asci. In vegetative cells, neutral trehalase did not sediment with cell walls, suggesting a cytoplasmic localization. Its activity increased ten-fold when growing cells were subjected to heat treatment of 2 h. Neutral trehalase from heat-treated cells had a pH optimum of 6.0 and was almost completely inhibited by 3 mM ZnCl2. Acid trehalase activity could be measured in intact asci, indicating that it is localized in the ascus cell walls, while neutral trehalase was not detectable in intact asci and appeared to be present primarily in the walls of ascospores and in the ascus epiplasm.  相似文献   
129.
Abstract We investigated the expression of important Actinobacillus pleuropneumoniae surface polysaccharides, namely, capsular polysaccharides (CPS) and lipopolysaccharides (LPS), after growth under iron-restricted conditions. Iron restriction did not seem to affect the production of CPS, as determined by labelling with a monoclonal antibody (mAb) against the serotype l K-antigen and flow cytometry analysis, and also as determined by electron microscopy. SDS-PAGE revealed that the LPS profiles of these cells were also unaffected by iron restriction. Using flow cytometry analysis, however, we observed that binding of mAb against serotype 1 O-antigen was altered in cells of A. pleuropneumoniae serotype l reference strain (4074) grown under iron-restricted conditions. This strain exhibited two subpopulations with distinct patterns of reactivity with the mAb against the O-antigen. When strain 4074 was grown under iron-restricted conditions, a shift from one cell subpopulation (moderately fluorescent) to another cell subpopulation (highly fluorescent, thus binding more antibodies) was observed. Our results indicate that growth of A. pleuropneumoniae serotype l under iron-restricted conditions did not seem to affect CPS production, but might alter, at least for the reference strain, the expression of LPS.  相似文献   
130.
Actinobacillus pleuropneumoniae is the causative agent of severe necrotizing pneumonia in swine. Previously, we identified the ohr gene encoding organic hydroperoxide reductase as specifically induced during infection of pigs, induced in vitro by organic peroxides but not other oxygen radicals, and present in A. pleuropneumoniae serotypes 1, 9 and 11 but not in other serotypes ( Shea & Mulks, 2002 ). Through analysis of flanking genomic sequence, we identify a homologue of gst , which encodes glutathione- S -transferase, immediately downstream of ohr and demonstrate that ohr-gst confers low but uninducible Ohr activity to serotype 5. We further identify a genomic island of 9.3 kb, flanked by lysR and araC homologues, in serotypes 1, 9 and 11, which contains ohr and gst . In serotypes 2–8, 10 and 12, this region of the genome contains a 1.1-kb islet with a putative transposase flanked by lysR and araC .  相似文献   
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