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1.
目的:探讨高分辨率熔解曲线分析(High resolution melting,HRM)技术检测结核分枝杆菌耐药突变位点的可行性。方法:对218株结核分枝杆菌进行利福平(RFP)和异烟肼(INH)的药物敏感性测定,并进行耐药基因位点的PCR扩增和测序,同时采用HRM方法检测RFP和INH耐药基因位点情况,分析HRM的敏感性和特异性。结果:218株结核分枝杆菌药敏试验结果显示,有106株(48.6%)对RFP耐药,100株(45.9%)对INH耐药,81株(37.4%)对RFP和INH均耐药。测序发现,101株(46.3%)存在RFP耐药基因的突变,107株(49.1%)存在INH耐药基因的突变。HRM检测结果显示,100株(45.9%)存在RFP耐药基因的突变,103株(47.2%)存在INH耐药基因的突变。分别以药敏试验和测序结果为标准,HRM检测RFP耐药的敏感性为94.3%(100/106)和99.0%(100/101);特异性为97.3%(109/112)和100%(117/117);INH耐药的敏感性为97.0%(97/100)和98.1%(103/105);特异性为97.3%(109/112)和100%(113/113)。结论:HRM快速检测结核分枝杆菌耐药具有较高的特异性和灵敏度,能够满足临床需求。  相似文献   

2.
[目的] 了解宁夏地区奶牛乳腺炎金黄色葡萄球菌(Staphylococcus aureus,SA)代表菌株的基因组序列基本特征,进一步探究其耐药基因型、毒力及进化关系,为兽医临床防治提供理论依据。[方法] 采用纸片法对97株金黄色葡萄球菌临床分离株进行抗菌药物敏感性试验,同时进行葡萄球菌蛋白A(Staphylococcus aureus protein A,spa)分型、多位点序列分型(multilocus sequence typing,MLST),根据分型结果选取16株代表菌株进行全基因组测序,并对获得的测序序列进行处理分析。[结果] 药敏试验结果显示97株分离株对18种抗菌药物存在不同程度的耐药,其中9株耐甲氧西林金黄色葡萄球菌(methicillin-resistantStaphylococcus aureus,MRSA)对青霉素、氨苄西林、苯唑西林、头孢噻呋、磺胺异噁唑、红霉素、庆大霉素和克林霉素等8种抗菌药物完全耐药,甲氧西林敏感金黄色葡萄球菌(methicillin-sensitiveStaphylococcus aureus,MSSA)菌株对青霉素、氨苄西林、磺胺异噁唑耐药率较高。耐药基因数据库(antibiotic resistance genes database,ARDB)注释分析显示16株代表菌株共携带21种耐药基因,其中norAtet38bacAmepA的携带率较高,与药敏试验结果具有一定的相关性。毒力基因数据库(virulence factors of pathogenic bacteria,VFDB)注释分析显示所有菌株携带多种与粘附、宿主免疫逃逸、分泌、胞外酶编码、铁摄取等疾病相关的毒力基因,MRSA菌株均携带较多毒力因子,MSSA菌株携带毒力因子数目不等。基因岛预测结果显示16株代表菌株存在不同数量的基因岛且MRSA菌株携带基因岛数目及毒力基因岛较多,但耐药基因岛数目与MSSA差异不明显。SNP分析结果显示部分分离株同源性较高,同源性较高的两株MRSA的全基因组基本序列特征差异较小,携带的耐药、毒力基因情况相似。[结论] 宁夏地区牛源SA分离株耐药性情况严重且具有较高的毒力水平,本研究为家畜相关MRSA(livestock-associated MRSA,LA-MRSA)与MSSA基因组序列信息的比较分析及宁夏地区SA感染的临床防控提供参考依据。  相似文献   

3.
【背景】作为临床最常见的非结核条件致病分枝杆菌,脓肿分枝杆菌(Mycobacteroides abscessus)因其天然、多耐药等特性成为目前临床治疗的一大挑战。作为分枝杆菌限制性营养元素——铁摄取的关键系统,分枝杆菌素(mycobactin,MBT)、羧基分枝杆菌素(carboxymycobactin,cMBT)与病原分枝杆菌的毒力、耐药等密切相关。【目的】丰富分枝杆菌MBT、cMBT结构数据,探究MBT在致病分枝杆菌起源过程中的演化规律。【方法】在MALDI-TOF-MS与FT-MS/MS解析脓肿MBT、cMBT结构的基础上,进一步开展其活性分析与生物合成基因簇比较基因组分析。【结果】虽然脓肿分枝杆菌MBT、cMBT母核修饰模式与海洋分枝杆菌最相似,R1、R2、R3、R5等位置的修饰完全相同,而且脂肪酸链均位于R4位置;但脂肪酸链长度不同[C10-17 (MBT)、C4-8 (cMBT)],为新结构。Fe-cMBT不仅以浓度依赖方式促进脓肿分枝杆菌生长,而且利用效率显著高于FeCl3,相关结果表明MBT-cMBT是脓肿分枝杆菌高效获取铁元素的关键系统。与MBT结构结果一致,mbt-1基因簇共线性分析及mbt-1mbt-2系统发育分析结果均表明脓肿分枝杆菌与海洋分枝杆菌(M.marinum)亲缘关系最近,而非结核分枝杆菌(M.tuberculosis)或耻垢分枝杆菌(M.smegmatis) (基于16S rRNA基因序列分析)。进一步分析发现,M.marinumM.tuberculosisM.bovis等病原分枝杆菌脂肪酸链长度变化范围仅4 C,而M.abscessusM.fortuitumM.aviumM.smegmatis等条件致病与非致病菌的脂肪酸链长度变化范围为7-11 C,暗示MBT同系物脂肪酸链长度变化范围与分枝杆菌不同生活方式、环境之间可能存在关联。【结论】作为获取铁元素的关键系统,具有独特结构的脓肿分枝杆菌MBT-cMBT在致病、耐药等方面的作用及起源、演化规律值得深入研究。  相似文献   

4.
[目的] 研究克雷伯氏菌与多复制子抗性质粒间的关系,分析细菌携带多复制子质粒对抗生素环境的响应机制。[方法] 以2018-2020年分离的56株不同来源克雷伯氏菌(Klebsiella sp.)分离株为研究对象,利用微量肉汤稀释法评估其多重耐药表型,对分离菌株进行全基因组测序(WGS),通过细菌全基因组关联分析(BGWAS)技术和比较基因组学方法深入解析多复制子抗性质粒形成的机制。[结果] 耐药表型分析发现野生动物来源的菌株具有更广的耐药谱系,总体Klebsiella sp.对氨苄西林表现出很高的耐药率(80.36%),尤其是马来穿山甲来源菌株对头孢类抗生素高度耐受,同时对氯霉素、左氧氟沙星和复方新诺明等药物耐受,基因组分析发现这些菌株携带了抗性质粒和更多的抗生素抗性基因。进一步对69个质粒序列分析,发现有28个质粒为多复制子质粒,主要携带blaCTX-M-15blaCTX-M-14blaCTX-M-55blaOXA-1blaTEM-1等β-内酰胺酶基因。细菌携带质粒类型分析认为Klebsiella pneumoniae可能是多复制子质粒的重要宿主,质粒骨架与结构分析发现多复制子质粒多由2个或2个以上单个质粒融合而成,携带此类质粒的菌株不仅获得了更广的耐药表型,而且在全球传播扩散分布逐年增加,因此产生对抗生素环境更强的适应性。[结论] 多重耐药性细菌呈现的表型与携带的多复制子质粒有关,相比较下多复制子质粒比非多复制子质粒有更强的抗性基因携带能力,或许是细菌在强大的抗生素压力下产生的重要响应机制。本研究对于未来探索细菌抗性基因的传播扩散机制具有重要意义。  相似文献   

5.
孙明珠  潘珊珊  王迪  宫正  谢明杰 《微生物学报》2020,60(11):2582-2592
[目的] 研究染料木素对耐甲氧西林金黄色葡萄球菌(MRSA)外排蛋白的影响。[方法] 通过联合药敏实验检测染料木素影响MRSA对环丙沙星的敏感性;利用等重同位素多标签相对定量蛋白质组学(iTRAQ)技术,检测染料木素作用MRSA41577后菌体蛋白表达量的变化;通过生物信息学方法对差异显著的蛋白进行系统分析;通过qPCR和尼罗红外排实验,探讨耐药相关的蛋白介导细菌耐药的作用机制。[结果] 联合药敏实验结果显示,染料木素能增强MRSA对环丙沙星的敏感性;通过iTRAQ技术检测到差异显著蛋白共有129个,包括60个表达上调的蛋白和69个表达下调的蛋白;生物信息学分析结果显示,与细菌耐药相关的蛋白约有14个,其中,通过主动外排系统介导细菌耐药的蛋白主要有PstB、PstS等;qPCR结果显示,与对照组相比,PstB、PstS的基因表达量分别下降了51.6%和78.6%;尼罗红外排实验结果显示,染料木素与尼罗红之间存在竞争关系,为MRSA41577的竞争性抑制剂。[结论] 染料木素可通过降低MRSA41577外排基因pstBpstS的mRNA表达量,进而影响PstB、PstS外排蛋白的表达来逆转细菌耐药;此外,染料木素还是MRSA41577的竞争性外排抑制剂,可通过与底物竞争外排的方式,使抗菌药物留在菌体内发挥抗菌作用。  相似文献   

6.
目的 男性型脱发(male pattern baldness,MPB),又称为雄激素性脱发(AGA),是一种常见的男性脱发类型,大约80%的表型差异可以用遗传因素解释。目前的MPB遗传推断研究主要基于欧洲人群,东亚人群相关研究较少。本研究在中国人群中对欧洲人群MPB关联位点进行验证分析,并建立遗传推断模型。方法 本研究调查了486个与欧洲人群MPB相关单核苷酸多态性(SNP)位点在312名中国汉族男性中的关联性,分别使用逐步回归和Lasso回归方法对关联出的位点进行筛选。使用逻辑回归算法构建预测模型,通过十折交叉验证的方法评估。之后进一步比较了逻辑回归、k近邻分类器、随机森林、支持向量机4种常用分类器模型对MPB的预测准确性。结果 有174个SNP位点与中国汉族男性的MPB显著相关(P<0.05)。通过不同的筛选方法,分别得到了22个SNP和25个SNP的位点集合。基于上述位点集合建立了22-SNP和 25-SNP两种逻辑回归预测模型。以AUC(ROC曲线下方的面积大小,area under curve)来衡量,两种模型对MPB预测的准确性分别为0.85和0.84;经十折交叉验证后预测准确性分别下降至0.81和0.77。当加入年龄作为预测因子后,两种模型的AUC均达到最大值0.89。从运行结果来看,逻辑回归预测模型较本研究中的其他分类器模型具有明显优势。结论 总体而言,虽然预测模型的准确性尚未达到临床期望水平,但SNP在MPB的遗传预测方面仍具备很大的潜力,可以为MPB的早期诊断、临床干预和法庭科学应用提供参考。  相似文献   

7.
朱晨 《微生物学报》2021,61(8):2530-2544
[目的] 研究TetR家族转录因子Ms0606对耻垢分枝杆菌耐药性的调控作用。[方法] 首先,通过测定生长曲线检测Ms0606在分枝杆菌耐药性中的调控作用;通过凝胶迁移阻滞实验和DNase I足迹法鉴定转录因子Ms0606识别的保守序列,进而探究其潜在的靶基因;其次,利用逆转录-qPCR和β-半乳糖苷酶活性实验检测Ms0606对靶基因Ms0608的调控作用,进一步探讨Ms0606调控分枝杆菌耐药性的分子机制。[结果] 与野生型菌株相比,Ms0606超表达菌株对异烟肼表现为敏感,Ms0606敲除菌株对异烟肼表现为抗性;Ms0606可以识别其自身操纵子上游区域内保守的22 bp回文序列,利用回文序列搜索耻垢分枝杆菌的基因组,发现Ms0606可能调控5个潜在靶基因;逆转录-qPCR和β-半乳糖苷酶活性实验显示Ms0606作为抑制子负调控Ms0608的表达,这可能会影响分枝杆菌对药物的耐药性。[结论] 鉴定了一种新的由Ms0606编码的耻垢分枝杆菌的TetR家族转录调控因子,该因子可调节分枝杆菌对异烟肼的敏感性,并进一步探讨其对靶基因的调控功能及对分枝杆菌耐药性的调控机制。  相似文献   

8.
顾德林  施慧慧  石彩芳  沈甜 《生物磁学》2011,(23):4488-4489
目的:了解复治肺结核患者的结核分枝杆菌L型培养情况,探讨结核分枝杆菌L型阳性与耐多药的关系。方法:选择180例肺结核患者的痰标本进行结核分枝杆菌培养和结核分枝杆菌L型培养,同时对110例复治组中培养阳性的标本行耐药监测。结果:复治组的L型阳性率为43.6%,初治组的L型阳性率为15.7%,复治组显著高于初治组(P〈0.01);菌阳复治组的L型阳性率50%,菌阴复治组的L型阳性率39.4%,菌阳组明显高于菌阴组(P〈0.05);L型菌阳性患者的耐药率显著高于L型菌阴性组(P〈0.05)。结论:结核分枝杆菌L型阳性是引起结核病复发、耐药的重要原因;MDR-TB与结核分枝杆菌L型感染有关。  相似文献   

9.
结核分枝杆菌可视化抗体检测蛋白芯片的制备   总被引:1,自引:0,他引:1  
目的:利用克隆表达的7种结核分枝杆菌优势表位抗原,建立可视化抗体检测蛋白芯片,用于结核病辅助诊断。方法:将7种结核分枝杆菌优势表位抗原,即38kD、ESAT-6、CFP10、MPT64、Mtb8、Mtb8.4和Mtb16.3点于修饰的基片上,制备可检测7种结核抗体的多靶点蛋白微阵列,建立免疫金银染色检测系统;使用该芯片对48例临床结核病患者血液样品进行检测,并与“金标准”痰涂片(48例)和痰培养(其中的29例)检测结果进行比较,分析其敏感性;对30名献血员血液样品进行检测,分析其特异性。结果:可视化抗体检测蛋白芯片的敏感性分别为98.5%和96.6%,而痰涂片和痰培养检测方法的敏感性分别为35.4%和48.3%;可视化抗体检测蛋白芯片的特异性为93.3%。结论:建立的结核分枝杆菌可视化抗体检测蛋白芯片检测敏感性显著高于痰涂片和痰培养方法,可用于结核病的临床辅助诊断,提高痰涂片和痰培养假阴性的检出率。  相似文献   

10.
结核病耐药率的攀升是目前全球结核病防控面临的重大挑战。结核分枝杆菌主要通过其基因组中耐药相关基因发生点突变而获得耐药性。由于耐药相关基因通常具有重要的生理功能,其突变往往会导致结核分枝杆菌自身适应性下降,即产生“适应性代价”。然而,耐药结核分枝杆菌可通过进一步积累其他特定突变来回复其适应性,这种能使其适应性上升的突变称为“补偿性突变”。耐药结核分枝杆菌的补偿性进化被认为是耐药结核病广泛传播与流行的生物学基础。近年来,在结核病分子流行病学和基础研究领域,针对耐药结核分枝杆菌的补偿性进化开展了大量研究。本文从结核分枝杆菌的耐药分子机制、耐药突变的适应性代价与补偿性进化,以及补偿性进化如何影响耐药结核病传播等方面,综述耐药结核分枝杆菌补偿性进化的研究进展。  相似文献   

11.
The backbone and side chain resonance assignments of an engineered intein based on Mycobacterium tuberculosis RecA have been determined based on triple-resonance experiments with the uniformly [13C,15N]-labeled protein.  相似文献   

12.
【目的】探讨异烟肼(isoniazid,INH)、链霉素(streptomycin,SM)单耐药结核分枝杆菌(Mycobacterium tuberculosis,MTB)与INH/SM多耐药MTB蛋白质组差异。【方法】应用i TRAQ结合Nano LC-MS/MS定量蛋白质组学技术,分析临床分离INH、SM或INH/SM耐药MTB与H37Rv标准株间均表达差异蛋白;并以INH/SM耐药MTB与H37Rv比值为对照,相对定量分析单耐药与多耐药MTB蛋白表达差异倍数;运用DAVID 6.7分析差异蛋白生物功能;STITCH 5.0分析差异蛋白与INH和SM相互作用。【结果】与H37Rv标准株比较,58个蛋白在INH、SM耐药与INH/SM耐药MTB间均有表达差异,共同差异蛋白生物功能主要为氧化还原酶活性和转移酶活性;主要参与丙酸代谢信号通路。共同差异蛋白中,与INH/SM耐药MTB比较,Rv2986c和Rv1908c在INH、SM耐药MTB均表达上调1.25倍;Rv3133c和Rv0577则均表达下调0.7倍;生物信息学预测发现以上4种蛋白可直接或间接与INH、SM进行相互作用。【结论】INH、SM单耐药和INH/SM多耐药MTB蛋白表达谱有较大差异,蛋白Rv2986c、Rv1908c、Rv3133c和Rv0577表达水平及相互作用可能与INH和SM耐药有关。  相似文献   

13.
用多聚酶链反应(PCR)方法扩增人型、牛型结核杆菌基因组 DNA,获得特异的158 bpDNA 片段,而从另外十三种分枝杆菌未见到特异的扩增产物.回收158 bpDNA 片段作探针,它除与人型、牛型结核杆菌有特异的杂交信号外,与金黄色葡萄球菌、绿脓杆菌及一些分枝杆菌皆没有杂交反应.结果表明,PCR 可用于检测结核杆菌基因组 DNA,扩增产物158 bp DNA 片段可作为探针用于检测人型、牛型结核杆菌并鉴别结核杆菌与其它分枝杆菌.  相似文献   

14.
【目的】创伤弧菌是致死率最高的弧菌物种,但目前尚无在全基因组层面挖掘毒力相关因子的研究。本研究以创伤弧菌分离来源(临床和环境)作为不同表型,通过与260株基因组序列进行关联分析,挖掘毒力相关因子,从而进一步了解创伤弧菌致病因素。【方法】对139株创伤弧菌分离株进行高通量测序,获取其全基因组序列;与公共数据库已公开发表的121株基因组整合,使用pyseer软件进行全基因组关联分析,对与不同分离来源显著相关的基因进行注释和解读。【结果】共发现11个基因与临床分离株显著相关,其中9个是本研究新发现的创伤弧菌潜在毒力相关因子。【结论】本研究使用群体基因组学和统计遗传学方法,在全基因组范围扫描挖掘了创伤弧菌毒力相关因子,为深入揭示该物种致病机制、设计新的疫苗和治疗靶点提供了重要依据。  相似文献   

15.
We report here the backbone assignment of Rv1567c, an integral membrane protein from Mycobacterium tuberculosis. The backbone resonance assignments were determined based on triple-resonance experiments with uniformly [13C,15N]-labeled protein in LMPG detergent micelles.  相似文献   

16.
Intramuscular fat content (IFC) is an essential quantitative trait of meat, affecting multiple meat quality indicators. A certain amount of IFC could not only improve the sensory score of pork but also increase the flavour, tenderness, juiciness and shelf-life. To dissect the genetic determinants of IFC, two methods, including genome-wide efficient mixed-model analysis (GEMMA) and linkage disequilibrium adjusted kinships (LDAKs), were used to carry out genome-wide association studies for IFC in Suhuai pig population. A total of 14 and 18 significant single nucleotide polymorphisms (SNPs) were identified by GEMMA and LDAK, respectively. The results of these two methods were highly consistent and all 14 significant SNPs in GEMMA were detected by LDAK. Seven of the 18 SNPs reached the genome-wide significance level (P < 9.85E−07) while 11 cases reached the suggestive significance level (P < 1.77E−05). These significant SNPs were mainly distributed on Sus scrofa chromosome (SSC) 5, 3, and 7. Moreover, one locus resides in a 2.27 Mb (71.37–73.64 Mb) region on SSC5 harbouring 13 significant SNPs associated with IFC, and the lead SNP (rs81302978) also locates in this region. Linkage disequilibrium (LD) analysis showed that there were four pairs of complete LD (r2 = 1) among these 13 SNPs, and the remaining 9 SNPs with incomplete LD (r2 ≠ 1) were selected for subsequent analyses of IFC. Association analyses showed that 7 out of 9 SNPs were significantly associated with IFC (P < 0.05) in 330 Suhuai pigs, and the other 2 SNPs tended to reach a significant association level with IFC (P < 0.1). The phenotypic variance explained (PVE) range of these 9 SNPs was 0.92–3.55%. Meanwhile, the lead SNP was also significantly associated (rs81302978) with IFC (P < 0.05) in 378 commercial hybrid pigs (Pietrain × Duroc) × (Landrace × Yorkshire) (PDLY), and the PVE was 1.38%. Besides, two lipid metabolism-relevant candidate genes, the leucine rich repeat kinase 2 (LRRK2) and PDZ domain containing ring finger 4 (PDZRN4) were identified in the 2.27 Mb region on SSC5. In conclusion, our results may provide a set of markers useful for genetic improvement of IFC in pigs and will advance the genome selection process of IFC on pig breeding programmes.  相似文献   

17.
d-ribose is an essential component of multiple important biological molecules and must first be phosphorylated by ribokinase before entering metabolic pathways. However, the function and regulation of ribokinases in Mycobacterium tuberculosis, the causative agent of tuberculosis, and its related species are largely unknown. In this study, we have characterized the activities of two putative ribokinases, Rv2436 and Ms4585, from M. tuberculosis and Mycobacterium smegmatis, respectively. The mycobacterial topoisomerase I (TopA) was found to physically interact with its ribokinase both in vitro and in vivo. By creating two ribokinase mutants that showed defective interactions with TopA, we further showed that the interaction between ribokinase and TopA had opposite effects on their respective function. While the interaction between the two proteins inhibited the ability of TopA to relax supercoiled DNA, it stimulated ribokinase activity. A cross-regulation assay revealed that the interaction between the two proteins was conserved in the two mycobacterial species. Thus, we uncovered an interplay between ribokinase and topoisomerase I in mycobacteria, which implies the existence of a novel regulatory strategy for efficient utilization of d-ribose in M. tuberculosis that may be useful in stressful environments with restricted access to nutrients.  相似文献   

18.
Mycobacterium tuberculosis and Mycobacterium bovis are responsible for tuberculosis in humans and animals, respectively. Both species are closely related and belong to the Mycobacterium tuberculosis complex (MTC). M. tuberculosis is the most ancient species from which M. bovis and other members of the MTC evolved. The genome of M. bovis is over >99.95% identical to that of M. tuberculosis but with seven deletions ranging in size from 1 to 12.7 kb. In addition, 1200 single nucleotide mutations in coding regions distinguish M. bovis from M. tuberculosis. In the present study, we assessed 75 M. tuberculosis genomes and 23 M. bovis genomes to identify non‐synonymous mutations in 202 coding sequences of regulatory genes between both species. We identified species‐specific variants in 20 regulatory proteins and confirmed differential expression of hypoxia‐related genes between M. bovis and M. tuberculosis.  相似文献   

19.
《Genomics》2021,113(3):1262-1271
Sclerotinia stem rot (SSR) is a disease of soybean [Glycine max (L.) Merr] that causes severe yield losses. We studied 185 representative soybean accessions to evaluate partial SSR resistance and sequenced these by the specific-locus amplified fragment sequencing method. In total, 22,048 single-nucleotide polymorphisms (SNPs), with minor allele frequencies (MAF) ≥5% and missing data <3%, were developed and applied to genome-wide association study of SSR responsiveness and assess linkage disequilibrium (LD) level for candidate gene selection. We identified 18 association signals related to SSR partial resistance. Among them, six overlapped the regions of previous quantitative trait loci, and twelve were novel. We identified 243 candidate genes located in the 200 kb genomic region of these peak SNPs. Based on quantitative real-time polymerase chain reaction and haplotype analysis, Glyma.03G196000 and Glyma.20G095100, encoding pentatricopeptide repeat proteins, might be important factors in the resistance response of soybean to SSR.  相似文献   

20.

Background  

The ability of Mycobacterium tuberculosis to survive and replicate in macrophages is crucial for the mycobacterium's ability to infect the host and cause tuberculosis. To identify Mycobacterium tuberculosis genes involved in survival in macrophages, a library of non-pathogenic Mycobacterium smegmatis bacteria, each carrying an individual integrated cosmid containing M. tuberculosis H37Rv genomic DNA, was passed through THP-1 human macrophages three times.  相似文献   

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