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1)  Multiplex amplification
复合扩增
1.
Multiplex amplification and haplotype frequencies of four Y specific loci in Han population in Wenzhou;
温州汉族群体4个Y—STR复合扩增及其单倍型多态性研究
2.
Application of multiplex amplification of STRs for monitoring survival of engraftment after bone marrow transplantation;
用荧光标记短串连重复复合扩增技术监测骨髓移植存活
3.
Polymorphism and multiplex amplification of 3 X-chromosomespecific short tandem repeat loci;
3个X染色体短串联重复的复合扩增及其多态性
2)  Multiplex PCR
复合扩增
1.
Development of a 6-locus pentanucleotide STR fluorescent-multiplex PCR for forensic purposes
6个五核苷酸STR基因座荧光复合扩增体系的建立
2.
The establishment of a 8-locus miniSTR fluorescent-multiplex PCR and its application in the analysis of degraded DNA
8个miniSTR基因座复合扩增系统的建立及其应用
3.
Objective In order to increase significantly the discriminatory potential of Y-STR systems available to the forensic community, we have developed a system capable of simultaneously amplifying 9 Y-STR loci by fluorescence-labeled multiplex PCR technique.
目的建立9个Y-STR基因座的复合扩增系统,提高Y-STR的法医学检测效能。
3)  multiplexing PCR
复合扩增
4)  Multiplex STR amplification
复合STR扩增
5)  fluorescent multiplex PCR
荧光复合扩增
1.
A fluorescent multiplex PCR that simultaneously amplifies five X-chromosomal short tandem repeat(X-STR) loci(DXS6803,DXS981,DXS6809,DXS6789 and DXS7132)was set up to study their polymorphic nature and to determine its use in kinship tests for forensic cases.
为了发掘更多多态性高的X染色体短串联重复(X-STR)基因座,以解决法医学实践中的特殊案例,建立了一组荧光复合扩增体系,同时检测DXS6803、DXS981、DXS6809、DXS6789和DXS7132 5个X-STR基因座,并用ABI PRISM 3100作毛细管电泳和GeneMapper ID 3。
2.
A fluorescent multiplex PCR for simultaneously amplifying three X-STR loci was set up.
为研究DXS6803、DXS981和DXS68093个基因座多态性及其在法医学中的应用,建立X染色体基因座(DXS6803、DXS981和DXS6809)的荧光复合扩增体系。
6)  repeated amplification
反复扩增
1.
Rare amount of DNA sample often needs repeated amplification in order to remain enough amount of DNA template for various analysis.
基因操作者经常需要把数量稀少的DNA样品进行反复扩增以供进一步研究之用。
补充资料:分子扩增
分子式:
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性质:又称无性繁殖,克隆繁殖,分子扩增。通常是指用人工方法把所需要的某一供体生物的遗传物质,即DNA大分子提取出来,在离体条件下进行切割后,取其片段,或直接用人工合成的基因(DNA)在体外利用某些工具酶(限制性内切酶等)与作为载体的DNA分子(如质粒等)连接起来,然后再导入某一受体细胞中,让该外来遗传物质在其中进行正常复制和表达的过程。自20世纪70年代始,它是基因工程(gene engineering)、或微生物育种等领域中经常采用的方法。也是重要的克隆技术之一。

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