S.O.C. Medium
S.O.C. Medium
Invitrogen™

S.O.C. Medium

S.O.C.培地は、大腸菌の形質転換効率を最大化するために、細菌細胞形質転換の最終段階で使用されます。S.O.C.培地は、10×10 mLボトルの液体培地として、以下の組成で提供されます。2% トリプトン、0.5%詳細を見る
製品番号(カタログ番号)数量
1554403410 x 10 mL/ボトル
製品番号(カタログ番号) 15544034
価格(JPY)
26,700
Each
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数量:
10 x 10 mL/ボトル
S.O.C.培地は、大腸菌の形質転換効率を最大化するために、細菌細胞形質転換の最終段階で使用されます。S.O.C.培地は、10×10 mLボトルの液体培地として、以下の組成で提供されます。2% トリプトン、0.5% 酵母抽出物、10 mM NaCl、2.5 mM KCl、10 mM MgCl 2、10 mM MgSO 4、および 20 mMグルコース。

品質検査
S.O.C.の各ロット培地は、最新の承認済み製品仕様に準拠していることを確認するために試験されています。これは現在、TOP10大腸菌を使用したpH、浸透圧、滅菌性、および形質転換効率の検査で構成されています。
研究用にのみ使用できます。診断用には使用いただけません。
仕様
フォーマットBottle
培地タイプS.O.C.
パッケージングタイプ10 mL/ボトル
調製法すぐに使用可能
数量10 x 10 mL/ボトル
出荷条件室温または氷水またはドライアイスでの出荷が承認されています
製品タイプ回収培地
Escherichia coli
無菌性滅菌済
対象微生物クラスE. coli
Unit SizeEach
組成および保存条件
SOC培地10 mL入りのボトル10本を含みます

よくあるご質問(FAQ)

How do you recommend that I prepare my DNA for successful electroporation of E. coli?

For best results, DNA used in electroporation must have a very low ionic strength and a high resistance. A high-salt DNA sample may be purified by either ethanol precipitation or dialysis.

The following suggested protocols are for ligation reactions of 20ul. The volumes may be adjusted to suit the amount being prepared.

Purifying DNA by Precipitation: Add 5 to 10 ug of tRNA to a 20ul ligation reaction. Adjust the solution to 2.5 M in ammonium acetate using a 7.5 M ammonium acetate stock solution. Mix well. Add two volumes of 100 % ethanol. Centrifuge at 12,000 x g for 15 min at 4C. Remove the supernatant with a micropipet. Wash the pellet with 60ul of 70% ethanol. Centrifuge at 12,000 x g for 15 min at room temperature. Remove the supernatant with a micropipet. Air dry the pellet. Resuspend the DNA in 0.5X TE buffer [5 mM Tris-HCl, 0.5 mM EDTA (pH 7.5)] to a concentration of 10 ng/ul of DNA. Use 1 ul per transformation of 20 ul of cell suspension.

Purifying DNA by Microdialysis: Float a Millipore filter, type VS 0.025 um, on a pool of 0.5X TE buffer (or 10% glycerol) in a small plastic container. Place 20ul of the DNA solution as a drop on top of the filter. Incubate at room temperature for several hours. Withdraw the DNA drop from the filter and place it in a polypropylene microcentrifuge tube. Use 1ul of this DNA for each electrotransformation reaction.

What is the formulation of the SOC medium that is provided with competent cells?

SOC (Super Optimal Catabolite) Medium Preparation (for 1 Liter):

1) To a 2 Liter flask with stir bar add the following:
- Bacto Tryptone 20 g
- Yeast Extract 5 g
- Sodium Chloride (NaCl) 0.58 g
- Potassium Chloride (KCl) 0.186 g
2) Add sterile water to a final volume of 1 Liter.
3) Mix well on magnetic stir plate for 5-10 minutes or until all of the ingredients are well mixed and completely dissolved.
4) Autoclave 30 minutes.
5) Allow to cool to room temperature.
6) Add 10 ml of sterile 2M Magnesium Solution (1M Magnesium sulfate, 1M Magnesium chloride)and mix well.
7) Add 10 ml of sterile 2M Glucose and mix well. (Final Glucose concentration is 20 mM).

Is S.O.C. medium absolutely required when recovering competent bacterial cells during transformation?

Many media can be used to grow transformed cells, including standard LB, SOB or TB broths. However, S.O.C. is the optimal choice for recovery of the cells before plating. The nutrient-rich formula with added glucose is often important for obtaining maximum transformation efficiencies.

When should DMSO, formamide, glycerol and other cosolvents be used in PCR?

Cosolvents may be used when there is a failure of amplification, either because the template contains stable hairpin-loops or the region of amplification is GC-rich. Keep in mind that all of these cosolvents have the effect of lowering enzyme activity, which will decrease amplification yield. For more information see P Landre et al (1995). The use of co-solvents to enhance amplification by the polymerase chain reaction. In: PCR Strategies, edited by MA Innis, DH Gelfand, JJ Sninsky. Academic Press, San Diego, CA, pp. 3-16.

Additionally, when amplifying very long PCR fragments (greater than 5 kb) the use of cosolvents is often recommended to help compensate for the increased melting temperature of these fragments.

Find additional tips, troubleshooting help, and resources within our PCR and cDNA Synthesis Support Center.

引用および参考文献 (1)

引用および参考文献
Abstract
Studies on transformation of Escherichia coli with plasmids.
Authors:Hanahan D,
Journal:J Mol Biol
PubMed ID:6345791
Factors that affect the probability of genetic transformation of Escherichia coli by plasmids have been evaluated. A set of conditions is described under which about one in every 400 plasmid molecules produces a transformed cell. These conditions include cell growth in medium containing elevated levels of Mg2+, and incubation of ... More