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1.
Abstract The bifunctional T-protein (chorismate mutase-T: cyclohexadienyl dehydrogenase) of l -tyrosine biosynthesis was found to be present in all genera making up the enteric bacteria. The dehydrogenase component of the T-protein was active with both prephenate and l -arogenate, showing it to be a cyclohexadienyl dehydrogenase. The dehydrogenase component, but not the mutase component, of the T-protein was feedback-inhibited by l -tyrosine. Unlike some other bifunctional proteins, the T-protein has evolved recently and is not ubiquitous. However, once the biochemical specialization of bifunctionality becomes established, the results indicate that such character states are strongly conserved through evolutionary time. Thus, bifunctional proteins can provide particularly reliable markers for small (recent origin), intermediate, and large (ancient origin) phylogenetic clusters.  相似文献   
2.
Pathogenic gut bacteria, such as those comprising the Enterobacteriaceae family, have evolved sophisticated virulence mechanisms, including nutrient and chemical sensing, to escape host defense strategies and produce disease. In this review we describe the mechanisms utilized by the enteric pathogen enterohemorrhagic Escherichia coli (EHEC) O157:H7 to achieve successful colonization of its mammalian host.  相似文献   
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Abstract The DNA relatedness of 64 enterobacterial species to Escherichia coli genes pts I, pts H, crr , pts G, and pts LPM, was determined by quantitative filter hybridization. DNA relatedness was expressed relative to E. coli K-12 DNA. Enterobacterial DNAs were 0 to 100% related to E. coli genes and the level of relatedness (except for crr data) reflected the known taxonomic (phylogenetic) position of species with respect to E. coli . When pts I relatedness data were plotted against pts H data, correlation was excellent. In pts G versus pts LPM plots, the data points (species) were scattered along the diagonal with a large gap separating E. coli strains (80–100% relatedness to both probes) from the 63 other species (1 to 40% relatedness to E. coli genes). Serratia (9 species), Buttiauxella agrestis , and Klebsiella planticola gave higher relatedness values with crr probe than with the other probes tested.  相似文献   
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Abstract Translation initiation factor IF3 plays a crucial role in initiation of protein synthesis in bacteria. In order to elucidate the IF3 structural elements required for these functions, the evolutionary conservation of IF3 and its gene, infC , was investigated. Homologous infC sequences from Salmonella typhimurium, Klebsiella pneumoniae, Serratia marcescens and Proteus vulgaris were amplified by the polymerase chain reaction and sequenced. Analysis of these sequences, as well as that from Bacillus stearothermophilus , revealed several regions (e.g. residues 62–73 and 173–177) of absolute sequence conservation, suggesting an important role for these regions in IF3 function.  相似文献   
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Heat-derived (60°C) extracts of Limulus amoebocyte lysate (LAL) were found to contain potent “broad-spectrum” antimicrobial activity. Additional heating of the LAL extracts to 100°C for 30 min completely inactivated the antimicrobial activity and served as a control. Antimicrobial activity was observed over a temperature range of 0° to 37°C (higher temperatures not tested) with greatest activity at 37°C. Antimicrobial activity of LAL extracts was variable when tested against Gram-negative bacteria of the family Enterobacteriaceae. A twofold concentration of the extracts resulted in a significant decrease in antimicrobial effectiveness. Dialysis of single- and double-strength LAL extracts against deionized water produced a marked and significant enhancement of antimicrobial activity against both resistant and sensitive species, confirming the presence of a dialyzable inhibitor(s). Dialyzed LAL extracts were active against 13 of 14 species of Enterobacteriaceae tested. Two strains of Pseudomonas aeruginosa were susceptible as were two of three Gram-positive cocci tested. Highly sensitive bacterial species were rapidly killed with a greater than 90% reduction in viable counts occurring within the first 30 min of reaction time. Dialyzed LAL extracts also possessed considerable antifungal activity. The role of the Limulus polyphemus amoebocyte in defense against microbial invasion and dissemination is discussed.  相似文献   
7.
利用简便微量法定量检测肠道正常菌群中的双歧杆菌和肠杆菌,10次检测结果与常规法无显著性差异。简便微量法主要优点是简便易行,节省人力物力和时间。  相似文献   
8.
Addition of manganese, at levels of 50 ppm, to a liquid growth medium simulating adverse silage conditions had no effect on the growth or on the fermentation pattern of Enterobacter cloacae and Proteus vulgaris. Yet, the manganese strongly enhanced the growth of Lactobacillus plantarum. Co-cultures of L. plantarum and E. cloacae or P. vulgaris were, by addition of manganese ions, significantly altered in the favour of the former. This finding can be of use in mixed cultures where Enterobacteriaceae act as spoiler microorganisms.  相似文献   
9.
摘要 目的:分析本院2017年~2019年常见病原菌分布和细菌耐药性情况,以指导临床用药。方法:将送检标本中的病原菌进行鉴定,参照CLSI 2017版判读药敏结果。结果:收集2017年7月~2019年6月临床分离菌共2292株,其中革兰阴性菌1862株,占81.2%,革兰阳性菌430株,占18.8%。大肠埃希菌占比最高,占25.7%。主要分离于尿液标本(55.9%)、血液标本(12.2%)和痰液标本(10.8%)。金黄色葡葡球菌中MRSA(耐甲氧西林金黄色葡萄球菌)和凝固酶阴性葡萄球菌中耐甲氧西林凝固酶阴性葡萄球菌(MRCNS)的检出率分别为61.4%和74.4%。MRSA主要分布于普外科、神经外科和骨科。未检出替考拉宁、利奈唑胺或万古霉素耐药的葡萄球菌。肠球菌属中屎肠球菌对测试药物的耐药率均较高。16株肺炎链球菌,其中3株对青霉素耐药。肠杆菌科细菌中,肺炎克雷伯菌对碳青霉烯耐药率为14.5%。鲍曼不动杆菌对碳青霉烯的耐药率为76.9%。铜绿假单胞菌为19.3%。14株流感嗜血杆菌中,β内酰胺酶检出率为35.7%(5/14)。结论:2017年~2019年我院常见病原菌以革兰阴性杆菌为主,病原菌的耐药性较高,临床应加强科室管理,合理应用抗生素,防耐药菌株的流行,降低医院感染的发生风险。  相似文献   
10.
细菌耐药性是21世纪国际关注的重要问题,也是全球面临的重大挑战。肠杆菌科细菌是医院感染的重要病原菌之一。近年来,随着抗生素的大量使用,多种肠杆菌科耐药菌,尤其是多重耐药肠杆菌开始大量出现,对人类健康形成了日益严重的威胁。细菌可以通过耐药基因突变或水平转移的方式获得耐药性,通常情况下,可以通过已知的耐药机制预测相应的耐药表型。然而,最近有研究表明,遗传背景和环境因素能够影响耐药基因的表达,给定的基因型并不一定总是产生预期的耐药表型。这种基因型-表型分离的现象极大程度上限制了从遗传学角度预测耐药表型的能力。文中结合最新文献,从遗传背景和环境条件两个方面探讨了多种肠杆菌科细菌耐药基因的表达调控机制,以期为遗传学预测耐药表型以及临床指导用药提供一定的支持。  相似文献   
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