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1.
Chelex-100快速提取放线菌DNA作为PCR扩增模板   总被引:8,自引:1,他引:7  
旨在建立有效扩增16S rRNA基因序列的放线菌DNA快速提取的方法。采用Chelex-100法提取放线菌DNA,使用PCR扩增16S rRNA基因序列评价提取核酸的质量。结果显示,Chelex-100法能够在10 min之内从放线菌中快速提取DNA,所提取的DNA可以直接用于PCR扩增反应,PCR扩增产物电泳条带清晰,符合理论预期结果。因此,Chelex-100法提取放线菌DNA可以作为16S rRNA基因序列PCR扩增的模板,该方法具有经济、简便、快速的特点,适合于放线菌菌株大规模地筛选和分类鉴定。  相似文献   

2.
目的研发一种基于环介导等温扩增(1oop-mediated isothermal amplification,LAMP)技术原理的组织胞浆菌感染的分子诊断技术。方法以组织胞浆菌为研究对象,针对其种特异性的M抗原基因序列,设计并筛选数套基于LAMP技术的特异性引物,同时优化其反应条件,建立一种针对组织胞浆菌感染的快速分子鉴定技术。结果该LAMP技术在65℃、90min反应条件下,对组织胞浆菌基因组DNA的检测敏感度达到5.3pg/反应(即5.3×10-12 g,约160个基因组DNA拷贝),且与其相近种属真菌无交叉反应。结论我们研发的这种基于LAMP技术原理的组织胞浆菌分子诊断技术具有操作简便、特异性及敏感性高等优点,具有临床推广应用的潜力。  相似文献   

3.
DNA环介导恒温扩增技术快速检测霍乱弧菌   总被引:1,自引:0,他引:1  
霍乱弧菌是一种重要的食源性致病菌,主要引起急性肠道传染病,其快速检测具有重要意义。根据霍乱弧菌的mdh管家基因序列,设计2对特异性检测引物,利用DNA环介导恒温扩增技术(Loop-mediated isothermal amplification,LAMP),经反应体系优化,成功建立了霍乱弧菌的LAMP快速检测方法。该方法最佳反应温度为65℃,60min完成检测,对培养菌的检测限为25CFU/mL,污染食品中霍乱弧菌的检测限为32CFU/g。对33株同种或近源细菌进行LAMP检测,仅霍乱弧菌得到阳性扩增。LAMP方法实践应用结果表明,对1057份虾、蟹、牡蛎、肉类、人腹泻物等样本进行检测,共检出85份阳性,与国际标准(ISO TS21872-1-2007)检测结果的符合率为100%。结果表明,本研究建立的霍乱弧菌LAMP检测方法特异性强、灵敏度高、操作简便,有利于霍乱弧菌疫情的监测。  相似文献   

4.
环介导恒温扩增技术快速检测溶藻弧菌   总被引:8,自引:0,他引:8  
溶藻弧菌是中国南部水产养殖业中弧菌病的最主要病原菌,其快速检测具有重要意义.根据溶藻弧菌外膜蛋白OmpK基因序列,设计一套引物,通过条件优化.成功建立了针对致病性溶藻弧菌的环介导恒温扩增检测技术(loop-mediated isothennal amplification.LAMP).应用LAMP技术,在65℃温育1 h的条件下扩增溶藻弧菌基因组DNA.琼脂糖凝胶电泳得到特异性梯度条带.该研究建立的LAMP法特异性检出致病性溶藻弧菌,其检测下限比PCR法低一个数量级,相当于n(cell)=38/mL的菌液浓度,灵敏度更高.综合分析表明,LAMP技术是快速、简易、实地诊断溶藻弧菌的理想工具.  相似文献   

5.
目的:建立一种快速、简便、特异性高的鸭瘟病毒(DPV)环介导等温扩增(LAMP)检测方法。方法:根据Gen Bank中DPVUI6基因的保守序列设计一套特异性引物,并对反应条件进行优化,建立DPV的LAMP可视化检测方法。结果:建立的LAMP方法对其他鸭常见病原体无扩增反应;可通过肉眼观察颜色直接判定结果;敏感性可达0.1fg,是常规PCR方法的100倍;扩增反应只须在常规水浴锅中进行,可在1 h内完成。结论:建立的DPV LAMP方法简便、快速、灵敏、特异,可用于DPV感染的快速检测。  相似文献   

6.
转基因植物快速检测方法的研究   总被引:16,自引:0,他引:16  
本试验对转基因植物检测中的DNA提取和PCR扩增程序作了改进。经试验,本研究建立的DNA快速提取法与目前广泛使用的CTAB法相比更为简便,快速和经济,提取的DNA质量主扩增效果无明显差异,可用于多种转基因植物,多种植物组织的DNA提取,利用复合PCR法可在同一反应管中同步检测35N,NOS及CP4-EPSPS基因,明显提高了检测效率。应用本试验建立的DNA快速提取-复合PCR扩增-银染检测技术可在6小时内得出结果,达到了快速,简便,灵敏,可靠的检测目的。  相似文献   

7.
由家蚕核型多角体病毒(Bombyx mori nucleopoyhedrosis virus,BmNPV)侵染家蚕Bombyx mori引起的家蚕核型多角体病(血液型脓病)在养蚕生产中发生较为普遍,对蚕业生产造成重大的经济损失。本研究建立了快捷有效的环介导等温扩增技术(loop-mediated isothermal amplification,LAMP)用于快速检测BmNPV,为蚕业生产提供了一个有效检测BmNPV和进行早期诊断的技术。该方法是针对BmNPV的pe38基因的6个区段设计的6条引物用于扩增检测,整个反应在恒温条件63℃下进行25 min,扩增产物用电泳法和可视法检测(用SYBR Green I染色)。结果显示,LAMP检测方法的灵敏度是常规PCR方法的100倍,能检测的范围为21个拷贝。另外,用4.86×108OBs/mL感染4龄起蚕,提取血淋巴DNA为模板,PCR在感染36 h后检出病毒DNA,LAMP法能检测感染12h后的样品。  相似文献   

8.
应用环介导等温扩增(loop-mediated isothermal amplification,LAMP)技术建立了对肉中金黄色葡萄球菌检测的方法。实验中,使用了最新的Bst 20 WarmStart DNA聚合酶完成LAMP扩增反应,并针对金黄色葡萄球菌所特有的保守性耐热核酸酶基因(nuc)设计得到了一套LAMP扩增引物。对LAMP法和PCR法的检测灵敏度进行了比较,同时对人工污染肉中的金黄色葡萄球菌进行检测。结果表明:所建立的LAMP法能够特异性的检测金黄色葡萄球菌,并且检测金黄色葡萄球菌纯菌的灵敏度为201×100CFU/mL,是普通PCR检测灵敏度的100倍。在检测肉中金黄色葡萄球菌时,检测限为201×101CFU/mL。因此,本实验所建立的LAMP法检测肉中金黄色葡萄球菌的方法,具有灵敏、快速以及简便等的优点,是一种具有很好的发展前景的检测手段。  相似文献   

9.
白斑综合症病毒实时荧光LAMP检测方法的建立及应用   总被引:1,自引:0,他引:1  
研究利用ESE-Quant tube scanner检测平台, 建立了一套基于环介导等温扩增技术(Loop-Mediated Isothermal Amplification, LAMP)的实时荧光检测方法, 用于白斑综合征病毒(White Spot Syndrome Virus, WSSV)的检测; 并在此基础上, 与巢式PCR、Real-time PCR和其他已发表的4种LAMP方法在检测灵敏度、实际应用方面进行比较. 结果显示, 研究建立的实时荧光LAMP检测方法在63℃恒温反应30min可检测到最低为105倍稀释的基因组DNA模板, 与Real-time PCR检测方法的灵敏度相当, 高于巢式PCR和其他已发表的4种LAMP方法的检测灵敏度; 而且特异性较好, 与传染性皮下及造血组织坏死病毒等5种常见对虾病原DNA均无交叉反应. 通过构建质粒进一步进行灵敏度测试显示, 本研究建立的实时荧光LAMP检测方法最低检测限度为24个拷贝质粒DNA, 检出时间亦为30min. 通过对66份待检样品的检测结果显示, 实时荧光LAMP检测方法的检出阳性率为7.57%, 准确率为100%, 高于其他WSSV的检测方法. 因此, 研究建立的WSSV实时荧光LAMP检测方法, 操作简单, 反应速度快, 特异性好, 灵敏度高, 成本低廉, 可以直观、实时地观察反应的进行情况, 适合对虾养殖现场及诊断实验室的WSSV快速检测.    相似文献   

10.
环介导等温扩增技术的应用进展   总被引:1,自引:0,他引:1  
环介导等温扩增(loop-mediated isothermal amplification,LAMP)是一种新式核酸扩增技术,它依靠一种具有链置换活性的DNA聚合酶与2对特殊设计的引物,在等温条件下即可高效快速地完成扩增反应。相较于传统扩增检测方法,LAMP技术具有特异性强、灵敏度高、操作简单快速等优点,更能在现场快速检测和基层应用中广泛推广,目前LAMP技术已广泛应用于植物病害检测、动物病害检测、食品安全检测等领域。基于此,简要介绍了LAMP技术的基本原理、反应产物的检测方法,重点阐述了LAMP技术的改进与发展,综述了近年来其在科研生产中的应用进展,并对其发展前景进行了展望,以期为LAMP技术的进一步发展提供合理的研究方向。  相似文献   

11.
中药乌梢蛇的薄层层析鉴别   总被引:1,自引:1,他引:0  
熊学敏  曹珏 《蛇志》1999,11(1):14-15
目的探讨中药乌梢蛇的薄层层析鉴别。方法用薄层层析和紫外分析方法,对中药乌梢蛇的色谱进行分析,以丙酮∶乙醇∶氨水和正丁醇∶乙醇∶氨水2个系统中分别展开后,置紫外254nm下检视。结果能见到清晰、分离效果很好的4个斑点。结论该方法具有对乌梢蛇定性鉴别意义,可作为该药的有效鉴别手段及内在质量控制指标之一。  相似文献   

12.
目的:建立一种基于环介导等温核酸扩增技术(Loop-mediated Isothermal Amplification,LAMP)的恶性疟原虫高灵敏可视化闭管检测方法。方法:针对恶性疟原虫核糖体DNA的序列保守区设计LAMP引物,通过优化LAMP体系中的Mg2+、甜菜碱浓度和反应温度等因素,建立环介导等温扩增法;并结合蜡封反应管对产物进行检测,检测结果可直接通过肉眼观察SYBR Green I荧光显色进行判定。结果:本方法可检测到70个拷贝/管的恶性疟原虫核酸片段,并具有高特异性,可区分检测常见的血液病毒。该法具有如下优点:1、整个反应恒温进行,无需热循环仪;2、闭管检测,极大降低了扩增产物交叉污染的风险;3、检测速度快,整个检测过程只需30 min。结论:该法的建立为恶性疟原虫的现场快速筛检提供了一种简便、高灵敏、高特异的工具。  相似文献   

13.
The aim of this study was to develop a method for the rapid detection of Gardnerella vaginalis, which is proposed to play a key role in the pathogenesis of bacterial vaginosis. Specific loop‐mediated isothermal amplification (LAMP) primers were designed and used to detect target DNA within 45 min under isothermal conditions. Comparative screening indicated that the LAMP assay is superior to PCR in terms of rapidity, and is equivalent in sensitivity and specificity. This LAMP assay can be used for rapid screening and detection of G. vaginalis in vaginal samples; the limit of detection is 10 fg DNA.
  相似文献   

14.
Aims: The study describes the development of simple and rapid DNA extraction method in combination with loop‐mediated isothermal amplification (LAMP) to detect enterotoxigenic Staphylococcus aureus in food samples. Methods and Results: In this study, isolation of genomic DNA of enterotoxigenic Staph. aureus from spiked milk, milk burfi, khoa, sugarcane juice and boiled rice was carried out by boiling the isolated sample pellets for 10 min with 1% Triton X‐100. The isolated DNA was evaluated by polymerase chain reaction (PCR) and LAMP method. The LAMP was found to be 100 times more sensitive than PCR. The LAMP assay was very specific for Staph. aureus, and the presence of other contaminating bacterial DNAs and food matrix did not interfere or inhibit the LAMP assay. Conclusions: The template DNA extraction method developed in this study for food samples is simple, rapid and cost‐effective. LAMP was found to be less sensitive to matrix effect of food, compared to PCR. Significance and Impact of the Study: The method is suitable for direct detection of Staph. aureus without any enrichment in contaminated food samples and hence finds its application in food safety analysis, in permutation with LAMP.  相似文献   

15.
Loop-mediated isothermal amplification (LAMP) is a novel DNA amplification method that amplifies a target sequence specifically under isothermal conditions. The product of LAMP is detected by the turbidity of the reaction mixture without electrophoresis. The objective of this study was to develop a rapid sexing method for bovine preimplantation embryos using LAMP. The first experiment was conducted to optimize the DNA extraction method for LAMP-based embryo sexing. The DNA of single blastomeres was extracted using three methods: heat, NaOH, and proteinase K-Tween 20 (PK-TW) treatments. Sexing was performed with two LAMP reactions, male-specific and male-female common reaction, after DNA extraction. The rates of correct determination of sex were 88.9-94.4%, with no difference among methods. The sensitivity and accuracy of LAMP-based embryo sexing were evaluated in the next experiment. The proportion of samples in which the sex was correctly determined was 75-100% for one to five biopsied cells. Lastly, in vivo-derived embryos were examined to verify the usefulness of LAMP-based embryo sexing, and some of these fresh, sexed embryos were transferred into recipient animals. The time needed for sexing was <1 h. The pregnancy rate was 57.4% and all calves born were of the predicted sex (12 male and 21 female). Therefore, LAMP-based embryo sexing accurately determined gender and is suitable for field application.  相似文献   

16.

Background

Buruli ulcer (BU) caused by Mycobacterium ulcerans (M. ulcerans) has emerged as an important public health problem in several rural communities in sub-Saharan Africa. Early diagnosis and prompt treatment are important in preventing disfiguring complications associated with late stages of the disease progression. Presently there is no simple and rapid test that is appropriate for early diagnosis and use in the low-resource settings where M. ulcerans is most prevalent.

Methodology

We compared conventional and pocket warmer loop mediated isothermal amplification (LAMP) methods (using a heat block and a pocket warmer respectively as heat source for amplification reaction) for the detection of M. ulcerans in clinical specimens. The effect of purified and crude DNA preparations on the detection rate of the LAMP assays were also investigated and compared with that of IS2404 PCR, a reference assay for the detection of M. ulcerans. Thirty clinical specimens from suspected BU cases were examined by LAMP and IS2404 PCR.

Principal Findings

The lower detection limit of both LAMP methods at 60°C was 300 copies of IS2404 and 30 copies of IS2404 for the conventional LAMP at 65°C. When purified DNA extracts were used, both the conventional LAMP and IS2404 PCR concordantly detected 21 positive cases, while the pocket warmer LAMP detected 19 cases. Nine of 30 samples were positive by both the LAMP assays as well as IS2404 PCR when crude extracts of clinical specimens were used.

Conclusion/Significance

The LAMP method can be used as a simple and rapid test for the detection of M. ulcerans in clinical specimens. However, obtaining purified DNA, as well as generating isothermal conditions, remains a major challenge for the use of the LAMP method under field conditions. With further improvement in DNA extraction and amplification conditions, the pwLAMP could be used as a point of care diagnostic test for BU  相似文献   

17.
We developed a technique for detecting the heat-labile I (LTI) and heat-stable I (STI) genes of enterotoxigenic Escherichia coli (ETEC) using a novel DNA amplification procedure designated Loop-Mediated Isothermal Amplification (LAMP). The detection limit of accelerated LAMP utilizing loop primers was 4 CFU/test for LTI and was 40 CFU/test for STI, which are 10-fold higher than those of conventional PCR assay (detection limit, 40 CFU/test and 400 CFU/test, respectively). No DNA amplification was observed in LT and ST non-producing E. coli or other bacterial strains; thus, high specificity was verified. The specificity of LAMP assay was also confirmed by digestion of LAMP products using restriction enzymes and DNA sequence analysis. In the accelerated LAMP assay, DNA amplification was detected within 35 min, and thus LAMP is superior to conventional PCR in terms of rapidity. It was confirmed that increased concentrations of primers and Bst DNA polymerase could further facilitate the reaction. Furthermore, with the high amplification efficiency of the LAMP assay, amplification can be visually observed by the turbidity caused by magnesium pyrophosphate, a byproduct of the reaction. Detection of LTI and STI in ETEC by LAMP is thus an extremely rapid procedure with high sensitivity and specificity that requires no specialized equipment. This assay is expected to become a valuable tool for rapid diagnosis in ETEC infection.  相似文献   

18.
快速检测HBV DNA的环状介导等温DNA扩增法   总被引:7,自引:2,他引:5  
环状介导等温DNA扩增(LAMP)技术是一种新的核酸扩增方法,它能够高特异性、高效、快速地进行核酸的扩增。利用LAMP法检测乙型肝炎病毒(HBV),能够在等温条件下于1h内将少量的基因拷贝数扩增至10^9,在对65份临床标本的检测中显示了较高的特异性。与现有的PCR技术相比,LAMP法更加简便快速,且在等温条件下进行,不需要复杂的仪器设备,为临床检测乙肝病毒提供了一个快速筒便的新方法。  相似文献   

19.

Background

There is an increasing need for quantitative technologies suitable for molecular detection in a variety of settings for applications including food traceability and monitoring of genetically modified (GM) crops and their products through the food processing chain. Conventional molecular diagnostics utilising real-time polymerase chain reaction (RT-PCR) and fluorescence-based determination of amplification require temperature cycling and relatively complex optics. In contrast, isothermal amplification coupled to a bioluminescent output produced in real-time (BART) occurs at a constant temperature and only requires a simple light detection and integration device.

Results

Loop mediated isothermal amplification (LAMP) shows robustness to sample-derived inhibitors. Here we show the applicability of coupled LAMP and BART reactions (LAMP-BART) for determination of genetically modified (GM) maize target DNA at low levels of contamination (0.1-5.0% GM) using certified reference material, and compare this to RT-PCR. Results show that conventional DNA extraction methods developed for PCR may not be optimal for LAMP-BART quantification. Additionally, we demonstrate that LAMP is more tolerant to plant sample-derived inhibitors, and show this can be exploited to develop rapid extraction techniques suitable for simple field-based qualitative tests for GM status determination. We also assess the effect of total DNA assay load on LAMP-BART quantitation.

Conclusions

LAMP-BART is an effective and sensitive technique for GM detection with significant potential for quantification even at low levels of contamination and in samples derived from crops such as maize with a large genome size. The resilience of LAMP-BART to acidic polysaccharides makes it well suited to rapid sample preparation techniques and hence to both high throughput laboratory settings and to portable GM detection applications. The impact of the plant sample matrix and genome loading within a reaction must be controlled to ensure quantification at low target concentrations.  相似文献   

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