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dna fingerprinting technique
相关语句
  dna指纹技术
    DNA fingerprinting technique of Mycobacterium tuberculosis and its usage
    结核分枝杆菌DNA指纹技术及其应用研究
短句来源
    TE-AFLP (Three endonuclease amplified fragment length polymorphism), developed in 2000 on the base of AFLP by van der Wurffand co-workers (Holland scientists), is a new DNA fingerprinting technique.
    TE-AFLP(Three endonuclease amplified fragment length polymorphism)是由荷兰科学家 van der Wurff等于 2000年在AFLP基础上发展的一种新的DNA指纹技术
短句来源
    Objective To explore methodology of DNA fingerprinting technique and its application in identification of strains of M. tuberculosis.
    目的探讨结核分支杆菌DNA指纹技术的方法学及其在结核分支杆菌菌株鉴定中的应用。
短句来源
    Conclusions Identification of M. tuberculosis strains is feasible by DNA fingerprinting technique.
    结论应用DNA指纹技术进行结核分支杆菌株水平的鉴定是完全可行的
短句来源
    AFLP is a newly - developed DNA Fingerprinting technique which has the characteristics of good replication and specificity and shows the minute changes of biological genomes. It is widely applied in such fields as the study of biological genetic diversity, strains analysis, the establishment of hi - density heredity mapping, typing and identification of microorganism, the changes of ecological niche, resistance breeding, selective breeding of animals, inbred line, the diagnosis of illness etc.
    AFLP是新近发展起来的一种DNA指纹技术,该方法重复性好、特异性高、能反映生物基因组的细微变化,在生物遗传多样性研究、品系分析、高密度遗传图谱的构建、微生物分型与鉴定、生态位变化、抗性育种、动物近交系选育、疾病诊断等方面应用广泛。
短句来源
  dna指纹分析技术
    Amplified Fragment Length Polymorphism (AFLP) is considered as the most powerful DNA fingerprinting technique for its high reliability and powerful approach in detecting polymorphism loci.
    扩增片段长度多态性 (AFLP)可靠性强 ,多态检出率高 ,因而被认为是最有效的DNA指纹分析技术
短句来源
    This technique is considered as the most powerful DNA fingerprinting technique for its high reliability and powerful approach in detecting polymorphism loci.
    该技术可靠性强,多态性检出率高,因而被认为是最有效的DNA指纹分析技术.
短句来源
  DNA指纹技术
    DNA fingerprinting technique of Mycobacterium tuberculosis and its usage
    结核分枝杆菌DNA指纹技术及其应用研究
短句来源
    TE-AFLP (Three endonuclease amplified fragment length polymorphism), developed in 2000 on the base of AFLP by van der Wurffand co-workers (Holland scientists), is a new DNA fingerprinting technique.
    TE-AFLP(Three endonuclease amplified fragment length polymorphism)是由荷兰科学家 van der Wurff等于 2000年在AFLP基础上发展的一种新的DNA指纹技术
短句来源
    Objective To explore methodology of DNA fingerprinting technique and its application in identification of strains of M. tuberculosis.
    目的探讨结核分支杆菌DNA指纹技术的方法学及其在结核分支杆菌菌株鉴定中的应用。
短句来源
    Conclusions Identification of M. tuberculosis strains is feasible by DNA fingerprinting technique.
    结论应用DNA指纹技术进行结核分支杆菌株水平的鉴定是完全可行的
短句来源
    AFLP is a newly - developed DNA Fingerprinting technique which has the characteristics of good replication and specificity and shows the minute changes of biological genomes. It is widely applied in such fields as the study of biological genetic diversity, strains analysis, the establishment of hi - density heredity mapping, typing and identification of microorganism, the changes of ecological niche, resistance breeding, selective breeding of animals, inbred line, the diagnosis of illness etc.
    AFLP是新近发展起来的一种DNA指纹技术,该方法重复性好、特异性高、能反映生物基因组的细微变化,在生物遗传多样性研究、品系分析、高密度遗传图谱的构建、微生物分型与鉴定、生态位变化、抗性育种、动物近交系选育、疾病诊断等方面应用广泛。
短句来源
  “dna fingerprinting technique”译为未确定词的双语例句
    A PCR technique using the ammonia monooxygenase gene (amoA) combined with the new DNA fingerprinting technique, denaturing gradient gel electrophoresis (DGGE), were used to analyze the composition of ammonia oxidizing bacteria in soils.
    采用氨氧化菌功能基因amoA(氨单加氧酶ammoniamonooxygenase)特异PCR结合DGGE的方法对土壤氨氧化菌区系进行分析。
短句来源
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  dna fingerprinting technique
In this report, we have used the DNA fingerprinting technique of randomly amplified polymorphic DNA (RAPD) analysis to study genomic alterations within primary human astrocytic tumors (gliomas) in a locus non-specific manner.
      
A nonisotopic ribosomal DNA fingerprinting technique was developed for the characterization of Listeria monocytogenes.
      
However, a panel of random genomicStaphylococcus epidermidis DNA clones provided almost the same level of discrimination as the DNA fingerprinting technique and also provided a clearer profile.
      
Here we report the successful conversion of this gel electrophoresis-based DNA fingerprinting technique into a DNA microarray hybridization technique (DNA Microarray MS-AFLP).
      
We previously developed a PCR-based DNA fingerprinting technique named the Methylation Sensitive (MS)-AFLP method, which permits comparative genome-wide scanning of methylation status with a manageable number of fingerprinting experiments.
      
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Objective To explore methodology of DNA fingerprinting technique and its application in identification of strains of M. tuberculosis. Methods This research was based on different copy numbers and location of chromosome DNA IS6110 in M. tuberculosis genome. After DNA of M. tuberculosis were cut by endonuclease PvuII, the products were transferred to nylon membrane, then detected and hybridized by enhanced chemiluminescent(ECL)labeling techniques. Results Fifty clinical isolates from...

Objective To explore methodology of DNA fingerprinting technique and its application in identification of strains of M. tuberculosis. Methods This research was based on different copy numbers and location of chromosome DNA IS6110 in M. tuberculosis genome. After DNA of M. tuberculosis were cut by endonuclease PvuII, the products were transferred to nylon membrane, then detected and hybridized by enhanced chemiluminescent(ECL)labeling techniques. Results Fifty clinical isolates from different TB patients had unidentical DNA fingerprinting patterns. DNA fingerprinting patterns showed a great difference from sputum and pus specimens of the same patient. H 37 R v ofloxacin resistant and sensitive strains had an identical DNA fingerprinting pattern. Conclusions Identification of M. tuberculosis strains is feasible by DNA fingerprinting technique.

目的探讨结核分支杆菌DNA指纹技术的方法学及其在结核分支杆菌菌株鉴定中的应用。方法以结核分支杆菌染色体DNA插入序列IS6110为基础,根据不同来源的结核分支杆菌菌株DNA相异的IS6110拷贝数和相对分子质量,应用增强化学发光标记技术对结核分支杆菌DNA酶切产物进行杂交和检测。结果不同来源的50例结核患者临床分离株具有相异的DNA指纹图谱。同一患者痰和膝关节脓培养阳性的结核分支杆菌菌株DNA指纹图谱有较大的差异。人工诱导的结核分支杆菌H37Rv氧氟沙星耐药株和敏感株有一致的DNA指纹图谱。结论应用DNA指纹技术进行结核分支杆菌株水平的鉴定是完全可行的

DNA fingerprinting technology is a very important tool which has widely been used to identify different biological groups at molecular level.In this paper the concept,development,classification and using scales of DNA fingerprinting technology are reviewed.The confusion of one name expressed different techniques and one technique with more than one name has been made to be in order and clearer.The achievement made in fungal classification and other field by using DNA fingerprinting...

DNA fingerprinting technology is a very important tool which has widely been used to identify different biological groups at molecular level.In this paper the concept,development,classification and using scales of DNA fingerprinting technology are reviewed.The confusion of one name expressed different techniques and one technique with more than one name has been made to be in order and clearer.The achievement made in fungal classification and other field by using DNA fingerprinting techniques and its relative techiques are simply stated.

DNA指纹技术是从分子水平区别不同类群生物之间差异的重要手段 ,该技术发展迅速 ,使用广泛。本文对DNA指纹技术的概念、分类及其应用进行了评述。对同一名称可能指不同技术 ,或同一技术有不同名称的混乱状况进行了归并或说明。简述了DNA指纹技术以及相关技术进展和该技术在真菌系统分类及其他相关领域取得的成就

TE-AFLP (Three endonuclease amplified fragment length polymorphism), developed in 2000 on the base of AFLP by van der Wurffand co-workers (Holland scientists), is a new DNA fingerprinting technique. It is more economic, rapider and much simpler and easier to manipulate than conventional AFLP This paper described briefly its principle, working procedure, application and prospects.

TE-AFLP(Three endonuclease amplified fragment length polymorphism)是由荷兰科学家 van der Wurff等于 2000年在AFLP基础上发展的一种新的DNA指纹技术。它比常规的AFLP更经济、更快、操作更简单方便,同时更适合于基因组大而复杂的生物。本文介绍和评述TE-AFLP的基本原理、反应程序、操作注意事项和应用前景以及该方法本身优缺点。

 
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