大肠杆菌载体 E.coli Vector 大肠杆菌宿主菌株 E.coli 细菌广宿主载体 bacateria broad range host vector 链霉菌载体及菌株 Streptomyces 芽孢杆菌载体 Bacillus vector 芽孢杆菌宿主菌株 乳酸菌载体 lactic acid bacteria vector 乳酸菌宿主菌株 lactic acid bacteria strain 细菌基因敲除载体 毕赤酵母载体 毕赤酵母宿主菌株 酿酒酵母载体 酿酒酵母宿主菌株 丝状真菌载体 mold/fungi vector 乳酸克鲁维酵母载体 酵母真菌基因敲除基因编辑载体 植物细胞载体 plant cell vector 农杆菌菌株Agrobacterium tumefaciens strain 植物细胞基因敲除载体 plant cell 哺乳动物细胞载体 哺乳动物细胞荧光载体 荧光素酶报告基因载体 哺乳动物细胞基因敲除基因编辑载体 杂交系统 慢病毒载体 腺病毒载体 逆转录病毒载体 杆状病毒表达载体 基因干扰 RNAi载体 基因/cDNA/ORF 转座子质粒系统 transposon 金黄色葡萄球菌载体 staphylococcus aureus 假单胞菌载体 噬菌体 phage 不动杆菌载体 双岐杆菌载体 藻类表达载体 链球菌载体 厌氧菌载体 基因治疗载体 大肠杆菌基因突变体菌株 细菌荧光质粒 白色念珠菌载体 体外转录载体 谷氨酸棒杆菌载体 酿酒酵母基因突变体菌株 线虫载体 斑马鱼载体 Zebra fish 果蝇,昆虫载体Drosophila 鱼类细胞载体 fish cell 分支杆菌载体 克雷伯菌 枯草芽孢杆菌基因缺失突变株
产品编号 | 产品名称 |
pI001 | 大肠杆菌BW23473 |
CGSC Strain#: 7837
Strain Designation: BW23473 Source of Strain: B.L. Wanner
Sex: F- Chromosomal Markers: Δ(argF-lac)169, ΔuidA3::pir+, recA1, rpoS396(Am), endA9(del-ins)::FRT, rph-1, hsdR514, rob-1, creC510
Strain Comments:
Δ(argF-lac)169-- extends from mmuP through orfs preceding argF, through lac to mhpD, literally Δ(mmuP-mhpD)169. (Peters et al. 2003 JB 185:2017)
Δ(argF-lac)169-- from strain Hfr3000 U169 was initially called ΔlacU169 and described as a lacZY mutation until found to include argF and lacI.
ΔuidA3::pir+-- Allows the replication of plasmids with an R6Kγ origin of replication
recA1-- : Missense mutation, altered isoelectric point. Sequenced: G to A for Nuc. 720 (Gly 160 Asp).
rph-1-- is a 1 bp deletion that results in frameshift over last 15 codons and has polar effect on pyrE leading to suboptimal pyrimidine levels on minimal medium.(Jensen 1993 JBact.175:3401)
creC510-- The constitutive phenotype is due to an R77P amino acid substitution
creC510 was formerly called phoM510
endA9(del-ins)::FRT was formerly called endABT333
ΔuidA3::pir+ was formerly called uidA(Δ MluI)::pir+
Am = amber(UAG) mutation
Const = constitutive
del-ins = deletion-insertion
Haldimann, A., L.L. Daniels, B.L. Wanner 1998. Use of new methods for construction of tightly regulated arabinose and rhamnose promoter fusions in studies of the Escherichia coli phosphate regulon. J.Bacteriol. 180:1277-1286
Lu, F., M.A. Schumacher, D.N. Arvidson, A. Haldimann, B.L. Wanner, H. Zalkin, R.G. Brennan 1998. Structure-based redesign of corepressor specificity of the Escherichia coli purine repressor by substitution of residue 190. Biochemistry 37:971-982
Haldimann, A, BL Wanner 2001. Conditional-replication, integration, excision, and retrieval plasmid-host systems for gene structure-function studies of bacteria. J. Bacteriol. 183(21):6384-93.
Recovery
1.Obtainan LB agar plate with the appropriate antibiotic.
2.Usinga sterile pipette tip, touch the bacteria growing within the punctured area ofthe stab culture. (A sterilized wire loop or sterile toothpick can be used inplace of a sterile pipette tip.)
3.Runthis tip lightly over a section of the plate, as shown in the figure, to createstreak #1.
4.Usinganother sterile pipette tip, pass through streak #1 and spread the bacteriaover a second section of the plate, to create streak #2.
5.Usinga third sterile pipette tip, pass through streak #2 and spread the bacteriaover the last section of the plate, to create streak #3.
6.Growovernight in a 37 PoP Cincubator (unless a different growth temperature is indicated on the plasmiddatasheet).
7.Inthe morning, single colonies should be visible. If the bacterial growth is toodense, re-streak onto a new agar plate to obtain single colonies.