BigDye™ Terminator v1.1 循环测序试剂盒
BigDye™ Terminator v1.1 循环测序试剂盒
Applied Biosystems™

BigDye™ Terminator v1.1 循环测序试剂盒

该 BigDye™ Terminator v1.1 循环测序试剂盒设计用于需要对靠近引物的碱基有极佳识别能力的专业应用,并可通过快速电泳模块进行短 PCR 产物模板测序。 • 提升一系列测序应用结果的质量水平了解更多信息
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货号数量
43374511000 次反应
43374491 mL
4337450100 次反应
43374525000 次反应
货号 4337451
价格(CNY)
159,567.00
Each
添加至购物车
数量:
1000 次反应
价格(CNY)
159,567.00
Each
添加至购物车
该 BigDye™ Terminator v1.1 循环测序试剂盒设计用于需要对靠近引物的碱基有极佳识别能力的专业应用,并可通过快速电泳模块进行短 PCR 产物模板测序。

• 提升一系列测序应用结果的质量水平。
• 对具有挑战性的模板进行测序且测序更加成功。
•获得更长、质量更佳的读段,峰高度更均匀,信号平衡理想。
• 提高生产率并降低成本。

处理棘手的序列
通过 BigDye Terminator v1.1 循环测序试剂盒,您可以获得适用于各种应用(包括从头测序和重测序)的强大且高度灵活的化学法。

获取更均匀的峰高,提高精确度
通过 BigDye Terminator v1.1 试剂盒提供的出色化学法,您可以生成峰高均匀、信号平衡更佳的数据,从而获得更长、更高质量的读段。您还可以获得更精确的碱基分配,从而进行杂合子和突变检测。

易于集成到您的工作流程中
BigDye™ Terminator v.1.1 试剂盒的化学法不需要对新软件或仪器进行重新校准。您只需对您的方案稍加改动即可将试剂盒轻松集成到当前的工作流程中。

仅供科研使用。不适用于诊断用途。
仅供科研使用。不可用于诊断程序。
规格
适用于(应用)标准测序
适用于(设备)310 基因分析仪、3130xl 基因分析仪、3730xl DNA 分析仪、GeneAmp 9700、Veriti 热循环仪、3130 基因分析仪、3730 DNA 分析仪、3500xL 基因分析仪、3500 基因分析仪
产品线BigDye™ Terminator
产品类型测序缓冲液
数量1000 次反应
技术荧光染料 Terminator 测序
模板兼容性BAC DNA、质粒 DNA (≤15Kb)、PCR 扩增子、单链 DNA
产品规格12孔联管, 8孔联管, 96或384孔板
Unit SizeEach
内容与储存
每个试剂盒包含10管 BigDye™ Terminator v1.1 即用型反应液混合物、M13 (-21) 引物、pGEM 对照 DNA 以及1管 12 mL 5X 测序缓冲液(可在 4°C 下储存)。包含足够用于1000次反应的试剂。将试剂盒存储存于 -15°C 到 -25°C 环境下。避免重复冻融循环。

常见问题解答 (FAQ)

What information should I include when submitting data to Genetic Analysis Technical Support?

When contacting Genetic Analysis Support (FAS, FSE, Technical Support), please have (if possible):

Instrument model and serial numbers
Version of the software are you using
Application and/or kit information
Kit lot number
Number of runs on the capillary or array
Polymer type and lot number
Buffer lot number
Hi-Di Formamide lot number or loading solution information
Sample data that can be sent to the support person
Details on:
  -Reaction setup (i.e., how much DNA was used, primer, etc.)
  -How the reactions were cleaned up (alcohol precipitation, columns, etc)
  -What template DNA was used (i.e. plasmid, PCR product)
  -How the template DNA was prepared?

All of this information will help the support person quickly and accurately assess the problem and provide you with recommendations for resolution.

Find additional tips, troubleshooting help, and resources within our Capillary Electrophoresis Applications Support Center.

I have a long homopolymer stretch in my sample that I cannot get through. Do you have any tips for getting through it?

In order to get through homopolymeric regions, you can either use anchored sequencing primers or try using the dRhodamine Terminator Cycle Sequencing Kit since it uses ddTTP instead of ddUTP and has been shown to be less prone to producing stutters, specifically with poly-T regions.

For more information on sequencing through homopolymer stretches, please refer to the DNA Sequencing by Capillary Electrophoresis: Applied Biosystems Chemistry Guide: Second Edition (Cat. No. 4305080, Rev. C). The guide can be found by searching the Thermo Fisher Scientific website with the catalog number 4305080.

Find additional tips, troubleshooting help, and resources within our Capillary Electrophoresis Applications Support Center.

I am trying to sequence GC-rich DNA without success. Do you have any tips for getting through this?

When trying to sequence through GC-rich regions, the following tips may improve your success:

• Set the reaction up at 1X or 0.5X strength. Heavily diluting the BigDye Terminator Ready Reaction mix can reduce the success of the sequecing reaction through long GC stretches.

• Perform a hot start at 98–99°C for 5 minutes.

• Use 5% (w/v) DMSO or freshly made betaine in the reaction.

• Use the dGTP BigDye Terminator Cycle Sequencing Kit. G peaks will appear compressed due to the presence of ddGTP, but sequencing through long GC stretches using the dGTP kit is typically more successful than with the standard BigDye Terminator Cycle Sequencing Kits (containing ddITP). For more information on sequencing GC-rich DNA, please refer to the DNA Sequencing by Capillary Electrophoresis: Applied Biosystems Chemistry Guide: Second Edition (Cat. No. 4305080, Rev. C). The guide can be found by searching the Thermo Fisher Scientific website with the catalog number 4305080.

Find additional tips, troubleshooting help, and resources within our Capillary Electrophoresis Applications Support Center.

I see another sequence running under mine. What can cause this?

Some of the causes of another sequence appearing under the primary sequence are:

• Contamination: There is more than one species of DNA present (e.g., multiple PCR products).

• Primers: Primer is annealing in more than one location on the template, primer dimer, primer degradation or not manufactured properly resulting in N+1 or N-1, carry over from PCR reaction, or primers pairs in a multiplex reaction that are not appropriate for multiplexing (i.e., primers anneal inappropriately).

• Spectral/Matrix: If the raw data signal intensity of the sample is too high or saturated it can exceed the amount of color bleedthrough (or spectral overlap) that the matrix (310) or spectral (3130, 3730, 3500) are removing, resulting in secondary peaks appearing in a very specific pattern (e.g., a red peak always appearing under a green peak). A change in the camera, laser, or optical alignment requires that a new matrix be made or a new spectral calibration be performed.

For more information on more than one sequence or set of peaks in a sequencing run, please refer to the DNA Sequencing by Capillary Electrophoresis: Applied Biosystems Chemistry Guide: Second Edition (Cat. No. 4305080, Rev. C). The guide can be found by searching the Thermo Fisher Scientific website with the catalog number 4305080.

Find additional tips, troubleshooting help, and resources within our Capillary Electrophoresis Applications Support Center.

My data seems top heavy. It starts out strong and then gets weaker. What can cause this?

The cause of this is usually an overabundance of template DNA relative to the amount of BigDye Terminator Ready Reaction mix being used in the reaction. This can drive the reaction to incorporate the labeled ddNTPs closer to the 5’ end of the sequence. To balance the signal, either increase the amount of BigDye Terminator Ready Reaction mix being used in the reaction or decrease the concentration of the template DNA.

For more information on other causes of short reads and how to address each issue, please refer to the DNA Sequencing by Capillary Electrophoresis: Applied Biosystems Chemistry Guide: Second Edition (Cat. No. 4305080, Rev. C). The guide can be found by searching the Thermo Fisher Scientific website with the catalog number 4305080.

Find additional tips, troubleshooting help, and resources within our Capillary Electrophoresis Applications Support Center.