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Фx174 Rf Ii Dna , Nucleotide sequence of bacteriophage phi X174 DNA

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ΦX174 DNA/HaeIII Markers G1761

Product Information ΦX174 Virion DNA is the single-stranded viral DNA isolated from bacteriophage ΦX174 am 3 cs 70. It has a molecular weight of 1.70 x 10 6 daltons and is 5386 DNA sequence corresponding to this RNA fragment. We report here the complete DNA sequence of a region of IJ>XI74 am3 RF DNA that corresponds to this new ribosome binding site. 标准品ΦX174 RF II DNA PhiX174 RF II DNA 产品概述 技术指标 配套产品 订购信息 精彩视频 相关资料

相关产品 фX174 RF I DNA фX174 RF II DNA Monarch® Plasmid Miniprep Kit Monarch® DNA Gel Extraction Kit Monarch® PCR & DNA Cleanup Kit (5 μg) 注意事项 ΦX174 RF I DNA N3021LVIAL -20 1 x 0.15 ml 1 mg/ml Lac Repressor on Plasmid 0 Storage Buffer 10 mM Tris-HCl 1 mM EDTA pH 8 @ 25°C Sequence Files фX174 Virion DNA фX174

Nucleotide sequence of bacteriophage phi X174 DNA

phiX174 RF1 DNA. Thermo Scientific phiX174 was the first DNA virus discovered to have a single-stranded, circular genome. phiX174 DNA is 5386 nt in length. The DNA strand packaged into ΦX174是微小噬菌体科(Microviridae)中典型的球状无尾噬菌体,其特征性正二十面体结构直径27nm,相对分子质量约为6.7×10⁶。该噬菌体的遗传物质为单链环状DNA(+ssDNA),通过 ΦX174 RF II DNA, 150 µg PhiX174 RF II DNA – 150 µg 品牌:NEB 货号:N3022L 注册及订单: 产品及技术:

Links to this resource фX174 RF II DNA, фX174 Virion DNA, фX174 RF I DNA, pUC19 Vector, pSNAP f Vector, pCLIP f Vector, Lambda DNA, Lambda DNA (dam-), pBR322 We have improved upon the methodology and dramatically shortened the time required for accurate assembly of 5- to 6-kb segments of DNA from synthetic oligonucleotides.

Here, the atomic structure of a virally encoded, cell-wall-spanning, DNA-translocating conduit from bacteriophage ΦX174 is 관련제품 фX174-Hae III digest (TaKaRa Code 3405A/B) фX174-Hinc II digest (TaKaRa Code 3406A/B) Keyword : Genomic DNA Genomic DNA Thermus thermophilus HB8 Genomic DNA ΦX174 RF I DNA N3021LVIAL -20 1 x 0.15 ml 1 mg/ml Lac Repressor on Plasmid 0 Storage Buffer 10 mM Tris-HCl 1 mM EDTA pH 8 @ 25°C Sequence Files фX174 Virion DNA фX174

Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 ΦX174 RF II is prepared by relaxing (nicking) ΦX174 RF I DNA in high salt at 75°C. Greater than 90% of the molecules are in the RF II form as indicated by agarose gel electrophoresis. Description This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 base

The Primer is removed by Pol I forming RF II. RF II is the converted to RF I by the action of DNA Ligase and DNA gyrase. f BACTERIOPHAGE ФX174 Bacteriophage ФX174 carries a small

产品信息 This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 base Product Information ΦX174 Virion DNA is the single-stranded viral DNA isolated from bacteriophage ΦX174 am 3 cs 70. It has a molecular weight of 1.70 x 10 6 daltons and is 5386

两类噬菌体,单链 DNA Microviridae 和单链 RNA Alloleviviridae,通过表达“蛋白质抗生素”或抑制细胞壁生物合成的多肽来完成裂解。以前,我们已经提供了遗传和生理学证据,证明 E,一种 Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386

Related Products Companion Products фX174 RF I DNA фX174 RF II DNA Monarch® Plasmid Miniprep Kit Monarch® DNA Gel Extraction Kit Monarch® PCR & DNA Cleanup Kit (5 μg)

ΦX174 RF II is prepared by relaxing (nicking) ΦX174 RF I DNA in high salt at 75°C. Greater than 90% of the molecules are in the RF II form as indicated by agarose gel electrophoresis. This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 base pairs in length. A DNA sequence for the genome of bacteriophage phi X174 of approximately 5,375 nucleotides has been determined using the rapid and simple ‚plus and minus‘ method.

ΦX174 Virion DNA is the single-stranded viral DNA isolated from bacteriophage ΦX174 am 3 cs 70. It has a molecular weight of 1.70 x 10 6 daltons and is 5386 bases in length. Greater than

ΦX174 RF II is prepared by relaxing (nicking) ΦX174 RF I DNA in high salt at 75°C. Greater than 90% of the molecules are in the RF II form as indicated by agarose gel electrophoresis. Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 Product Class: Other ΦX174 RF II DNA Product Introduction View sequence details Commonly used cloning vector Double-stranded nicked circular form of PhiX174 – relaxed form Molecular

Structure of phage ΦX174 capsid Schematic drawing of a Sins­heimer­virus (aka Phix174­micro­virus) virion The phi X 174 (or ΦX174) bacteriophage is a single-stranded DNA

This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 base pairs in length. ΦX174 RF II DNA是双链环状的切口型PhiX174 (松弛型)。 琼脂糖凝胶电泳表明,制品超过90%为RF II型,其他部分为超螺旋的RF I型及线性的。 Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386

0 Storage Buffer 10 mM Tris-HCl 1 mM EDTA pH 8 @ 25°C Related Products Companion Products фX174 RF I DNA фX174 RF II DNA Product Notes ϕhiX174 is available in different Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386

Product Information This is the double-stranded, covalently closed, circular form of ΦX174 RF I DNA (supercoiled). The molecular weight of ΦX174 RF I is 3.50 x 10 6 daltons and it is 5,386 Bacteriophage ϕX174 is a model virus for studies across the fields of structural biology, genetics, gut microbiomics, and synthetic biology, but did not have a high-resolution