Platinum™ SYBR™ Green qPCR SuperMix-UDG(带 ROX)
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Invitrogen™

Platinum™ SYBR™ Green qPCR SuperMix-UDG(带 ROX)

**********************备选产品:PowerUp SYBR Green 预混液,一种最新的高性能基于 SYBR 染料的预混液,以极具竞争力的价格提供出色的性能。借助 PowerUp SYBR Green了解更多信息
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货号反应次数
11744100100 次反应
11744500500 次反应
货号 11744100
价格(CNY)
2,206.00
Each
添加至购物车
反应次数:
100 次反应
价格(CNY)
2,206.00
Each
添加至购物车
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备选产品:PowerUp SYBR Green 预混液,一种最新的高性能基于 SYBR 染料的预混液,以极具竞争力的价格提供出色的性能。借助 PowerUp SYBR Green 预混液,我们已经充分发挥了 Platinum SYBR Green qPCR SuperMix-UDG 的优点,并为您的基因表达分析添加额外功能。

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适合于 ABI 仪器的 qPCR SuperMixes(带 ROX)是即用型反应混合物,可用于实时扩增 cDNA、基因组 DNA 或质粒 DNA,特异性高。预混液中包含 ROX 参比染料,从而提供了极大的方便性。这些 qPCR SuperMixes 包括:


– Platinum™ Taq DNA 聚合酶:相比其他热启动酶,激活更完全且速度更快,以便进行更灵敏的扩增(图1)

– 尿嘧啶-DNA 糖基化酶 (UDG):与 dUTP(包括在内)一起联用,防止残留污染,以提高特异性
– 在 ABI 仪器上以极优浓度预混 ROX 参比染料


带 ROX 的 qPCR SuperMixes 可以按两种规格提供:

– 带 ROX 的 Platinum™ SYBR™ Green qPCR SuperMix-UDG,可提供灵敏、性价比高的系统,通过 SYBR™ Green I 染料进行实时荧光定量 PCR 检测(图2)
– 带 ROX 的 Platinum™ qPCR SuperMix-UDG,可在荧光引物上(例如 LUX™ 引物)或基于探针的检测系统(例如 TaqMan™)上提供出色的性能


内容物和储存:
带 ROX 的 Platinum™ SYBR™ Green qPCR SuperMix-UDG 包括含 SYBR™ Green I 和 ROX 参比染料的 2X SuperMix,以及 50 mM MgCl2带 ROX 的 Platinum™ qPCR SuperMix-UDG 包括含 ROX 参比染料的 2X SuperMix,以及 50 mM MgCl2。将所有组成部分储存在 -20°C 下。妥善储存时,可保证稳定储存 6 个月。
仅供科研使用。不适用于诊断用途。
规格
兼容性ABI PRISM™ 7000、ABI PRISM™ 7700、ABI PRISM™ 7900HT、ABI PRISM™ 7900HT Fast、ABI 7300 实时 PCR 系统、ABI GeneAmp™ 5700
适用于(设备)7000 系统、7300 系统、7700 系统、7900HT Fast 系统、7900HT 系统
反应次数100 次反应
聚合酶Taq DNA 聚合酶
产品线Platinum™、SYBR™
产品类型实时荧光定量 PCR SYBR 预混液
数量100 reactions
样品类型DNA(基因组)、cDNA
运输条件干冰
足够用于100 次反应
最大浓度2X
检测方法SYBR
适用于(应用)基因表达
高 GC PCR 扩增效果
PCR 方法qPCR
反应速度标准
Unit SizeEach
内容与储存
在冰箱(-5 至 -30°C)中储存。

常见问题解答 (FAQ)

What is the difference in sensitivity between TaqMan chemistry vs. SYBR Green reagent chemistry?

Sensitivity can actually be equivalent when using TaqMan chemistry and SYBR Green reagent chemistry. It might seem that a TaqMan assay with fluorescent signal generated by a sequence-specific probe would always be more sensitive than a SYBR Green reagent assay, but a poorly designed TaqMan assay could theoretically be less specific than a well-designed SYBR Green reagent assay. However, the potential for detection of primer dimers and non-specific products using SYBR Green chemistry is more likely to result in loss of sensitivity when attempting to quantitate lower copy numbers.

For more information on Real-Time PCR chemistries, please refer to the following Application Notes, which you can find on our website through Technical Resources, or by entering the titles in the main Search field: “Real-Time PCR Vs. Traditional PCR”, “Essentials of Real Time PCR”, and “Selection of Reagents for Real-Time PCR”.

Find additional tips, troubleshooting help, and resources within our Real-Time PCR and Digital PCR Applications Support Center.

What are the key differences between a TaqMan MGB probe and a TaqMan TAMRA dye-labeled probe?

The TaqMan MGB probes contain the following features:
1) A fluorescent reporter at the 5' end
2) A nonfluorescent quencher at the 3' end. Because the quencher does not fluoresce, the real-time instruments can measure the reporter dye contributions more precisely.
3) A minor groove binder at the 3' end. The minor groove binder increases the melting temperature (Tm) of probes, allowing the use of shorter probes.

In general, the TaqMan MGB probes exhibit great differences in Tm values between matched and mismatched probes, which provides more accurate allelic discrimination and makes for a more sensitive real-time assay. Mismatches between a probe and allele, or target, reduce the efficiency of probe hybridization in a measurable way, which is especially important in SNP Genotyping assays. Furthermore, AmpliTaq Gold DNA polymerase is more likely to displace the mismatched probe rather than cleave it to release reporter dye. More information about TaqMan MGB probes can be found in the User Bulletin entitled "Primer Express Version 1.5 and TaqMan MGB Probes for Allelic Discrimination." You can find a copy on our website by entering this title in the main search field.

When using SYBR Green chemistry on an Applied Biosystems Real-Time PCR instrument, how do I change settings to reflect that there is no TaqMan probe being used in the reaction?

Refer to the product manual for your instrument and software for specifics, but in general you will want to change the Quencher value to None.

Find additional tips, troubleshooting help, and resources within our Real-Time PCR and Digital PCR Applications Support Center.

How can RNA standards be generated to perform absolute quantitation for RNA targets?

It is generally not possible to use DNA as a standard for absolute quantitation of RNA because there is no control for the efficiency of the reverse transcription step. Therefore, in-vitro transcribed RNA is commonly used to prepare standards for the absolute quantitation of RNA targets. This would involve the cloning of the target of interest into an in-vitro transcription plasmid, performing in-vitro transcription, then purifying the resulting cRNA so that the DNA plasmid cannot serve as a PCR template. Concentration is measured by A260 and converted to the number of copies using the molecular weight of the RNA.

Relative quantitation of gene expression methods require less up-front preparation and provide a fold-change value instead of an absolute quantity result. For many researchers, absolute quantities are not a necessary parameter to measure, and therefore relative quantitation is a much more attractive approach to studying gene expression via real-time PCR. For more information on relative quantitation of gene expression, please refer to our Technical Reference Library in the Technical Resources section of our website.