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1.
Comparison of two methods for constructing Salmonella enteritidis mutants:Red recombination system and suicide vector system
基于Red同源重组和高效自杀性载体系统构建肠炎沙门氏菌突变株方法的比较
2.
Research on Construction of BAC Library of Guanzhong Milk Goat and Homologous Recombination with Red System;
关中奶山羊BAC文库构建及其利用Red系统同源重组的研究
3.
Knockout of the Crystalline Inclusion Protein Gene cipA and cipB in Photorhabdus luminescens by RED Homologous Recombination
RED同源重组法敲除发光光状杆菌晶体蛋白基因cipA和cipB
4.
Construction of a dsRNA Prokaryotic Expression System Using Red Recombination for Resistance to Tobacco Mosaic Virus
利用Red重组系统构建dsRNA原核表达体系抗烟草花叶病毒的研究
5.
Construction and Identification of 3-Amino-5-hydroxybenzoic Acid(AHBA) Biosynthesis Gene Cluster Targeting Vector in Streptomyces by Red/ET Recombination
Red/ET重组AHBA生物合成基因簇打靶载体的构建与鉴定
6.
High efficient generation of recombinant adenovirus by bacterial intermolecular homologous recombination
细菌内同源重组法快速制备重组腺病毒
7.
The Construction of the Human NGF β Recombinant Adenovirus Vector;
细菌内同源重组构建Ad-hNGFβ腺病毒质粒
8.
V(D)J recombination and DNA non-homologous end joining
V(D)J重组与DNA非同源末端连接
9.
Construction of Recombinant Adenovirus Containing Fusion Suicide Gene CDglyTK by a Simple Method of Homologous Recombination in Bacteria;
细菌内同源重组法构建含融合自杀基因CDglyTK的重组腺病毒
10.
The Construction and Expression of HOXA11 Promoter Reconbinant Plasimid;
同源框基因HOXA11启动子重组质粒的构建与表达
11.
Construction of the Homologous Recombination Plasmid of sigB in Staphylococcus Aureus;
金黄色葡萄球菌sigB同源重组质粒的构建
12.
Study of the Homologous Recombination Methods and Inducible Expression System in Z. Mobilis;
Z. mobilis中同源重组方法及诱导表达体系的研究
13.
How to give full play to the collection of a merged college library;
同址合并院校图书馆馆藏资源重组的实施
14.
Integration and Expression of Δ5 Des Gene in Synechocystis sp.PCC 6803 by Homologous Recombination
用同源重组法将Δ5 Des整合在集胞藻6803中的表达
15.
The Appreciation of the translation of A Red, Red Rose;
A Red,Red Rose译文赏析
16.
( Homologous recombination would presumably be preferred in the case of more slowly-renewing tissues, whose stem cells should not need reseeding.
(更新较缓慢的组织中,似应首选同源重组,因其干细胞不需要种植。
17.
Recombination analysis and homology alignment of full-length genomic sequences of the novel A/H1N1 influenza virus in 2009
2009年新型甲型H1N1流感病毒全基因组序列重组分析及同源性比对
18.
Cloning of Genomic Islands in Klebsiella Pneumoniae by Using Yeast-Based Homologous Recombination System
利用酵母同源重组系统克隆肺炎克雷伯菌基因组岛