BlasTaq™ Probe 2X qPCR MasterMix

Cat. No.
G890
Unit
500 rxn (4 x 1.25 ml)
Price
$139.00

PCR buffet

Cat. No. G890
Name BlasTaq™ Probe 2X qPCR MasterMix
Unit 500 rxn (4 x 1.25 ml)
Category qPCR Mastermixes
Description

BlasTaq™ Probe 2X qPCR MasterMix is designed for TaqMan™ probe-based real-time qPCR analysis of DNA samples. The components in the MasterMix — including dNTPs, BlasTaq™ DNA polymerase, MgCl₂, and other proprietary buffer components — have been optimized to deliver superb sensitivity and performance in under one hour.

BlasTaq™ is a next-generation, strategically engineered DNA polymerase that offers faster extension rates, improved processivity, and enhanced sensitivity compared to wild-type Taq polymerase. It possesses 5’-3’ polymerase activity and 5’-3’ exonuclease activity, which is essential for TaqMan probe hydrolysis during qPCR. It does not have 3’-5’ exonuclease (proofreading) activity, and produces 3’-dA-tailed amplicons, which are compatible with TA cloning if needed.

This MasterMix is suitable for a variety of applications, including SNP genotyping assays, gene expression analysis, microarray validation, and high-throughput screening. ROX reference dye is provided separately, ensuring universal compatibility with most qPCR instruments. Refer to the Rox Machine Compatibility Chart for instrument-specific guidelines.

Product Features:

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Product Component Quantity
BlasTaq™ Probe 2X qPCR MasterMix 500 rxn (4 x 1.25 ml)
ROX Reference Dye 50 µl
ISO 13485:2016 MDSAP Certified

ISO 13485:2016 MDSAP Certified
Our PCR Products are manufactured under a Quality Management System conforming with ISO 13485:2016 as certified by Intertek (a MDSAP recognized auditing organization).

Storage Condition

Store at -20°C. This product is stable for 2 years from the date of shipping if stored and handled properly.

Note

BlasTaq™ Probe 2X qPCR MasterMix comes with a separate vial of ROX Reference Dye which can be added depending on the qPCR machine type, as listed in the table below.

MACHINE TYPE MACHINE
High ROX Machines
  • ABI ® 7000, 7300, 7700, 7900, 7900HT, StepOnePlus™, StepOne™, OpenArray, PRISM™ Sequencing Detection Series
  • Biometra TOptical
  • Fluidigm BioMark™
  • Wafergene SmartChip System
  • TianLong TL998 System
Low ROX Machines
  • ABI® 7500, 7500 Fast, Viia™ 7, QuantStudio, QuantStudio 3/5/6/7
  • BioGene InSyte™
  • Illumina Eco
  • Analytikjena qTower Series
  • Stratagene® Mx3000, Mx3005, Mx4000
No ROX machines
  • BioRad® CFX96, CFX384, Chromo4™, CFX Connect™, Opticon 2, MiniOpticon™
  • Roche LightCycler® (480, 1536, Nano)
  • MJ Research Opticon™, Opticon™ 2, Chromo® 4
  • Eppendorf™ Realplex 4
  • BioGene SynChron™
  • Corbett Rotor-gene® (3000, 6200, 62H0, 6500, 65H0, 6600)
  • Eppendorf Mastercycler® realplex (s, 4 , 4s), Pro (S, 384), Nexus (gradient, eco, flat)
  • Cepheid SmartCyler, GeneXpert
  • Enigma™ ML
  • Idaho LightScanner® (24, 32), RapidCycler®2, R.A.P.I.D (LT, LT Food), RAZOR EX, JBAIDS
  • Qiagen Rotor-Gene™ (Q, 6000)
  • Takara Dice™
  • Thermo Scientific PikoReal
  • DNA-Technology DT96, DTlite, DT-322
  • Bioer LineGene (3310/3320, K FQD-48A, I, II, 9620, 9640, 9660, 9680)
  • Bioneer Exicycler™
Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. G890
Datasheet
  • Yang, S., Tian, M., & Johnson, A. N. (2020). SARS-CoV-2 protein ORF3a is pathogenic inDrosophilaand causes phenotypes associated with COVID-19 post-viral syndrome. SARS-CoV-2 Protein ORF3a Is Pathogenic in Drosophila and Causes Phenotypes Associated with COVID-19 Post-Viral Syndrome. Published. DOI:10.1101/2020.12.20.423533
  • Aydin E, Gunduz MK, Kaymak G, Sezgin AK, Dağgez H, Renders DP, Yakupoğullari Y. Antimycobacterial activity of luteolin in resistant Mycobacterium tuberculosis isolates and cytotoxicity on L929 cells. Microb Pathog. 2025 Mar;200:107287. https://doi.org/10.1016/j.micpath.2025.107287. Epub 2025 Jan 10. PMID: 39800168.

    Gündüz, M. K., Kar, F., & Kaymak, G. Papain HepG2 Hücrelerinde Kaspaz-3 ve Kaspaz-9 Genlerini Düzenleyerek Apoptozu İndükler. Osmangazi Tıp Dergisi, 45(1), 94-100. https://doi.org/10.20515/otd.1181399

    Koldemir Gündüz, M. BGM, a Newly Synthesised Boron Compound, Induces Apoptosis and Reduces Oxidative Stress by Inhibiting Lipogenesis in 3T3-L1 Adipocytes via PPARγ and CTRP3. Biol Trace Elem Res 200, 4807–4816 (2022). https://doi.org/10.1007/s12011-022-03261-z

    Nunes, J. R., O’dwyer, C., Ghorbani, P., Smith, T. K., Chauhan, S., Robert-Gostlin, V., ... & Fullerton, M. D. (2024). Myeloid AMPK signaling restricts fibrosis but is not required for metformin improvements during CDAHFD-induced NASH in mice. Journal of Lipid Research, 65(6), 100564. https://doi.org/10.1016/j.jlr.2024.100564

    Wu, J., Chen, Q., Wang, Y., Wang, R., Chen, Q., Wang, Y., ... & Chen, K. (2024). LINC01977 promotes colorectal cancer growth and metastasis by enhancing aerobic glycolysis via the ERK/c-Myc axis. Journal of Gastrointestinal Oncology, 15(1), 271. https://doi.org/10.21037/jgo-24-52

    Xia, Y., Cheng, H., Bian, W., Wang, W., Zhu, M., & Zhong, J. (2022). Role of an FNIP repeat domain-containing protein encoded by Megavirus baoshan during viral infection. Journal of Virology, 96(14), e00813-22. https://doi.org/10.1128/jvi.00813-22

    Zhao Z, Wang B, Jiang K, Liu M, Wang L. Comparative analysis of transcriptomics and metabolomics provides insights into the mechanisms of VPAHPND invasion and hepatopancreatic damage in Litopenaeus vannamei. Fish Shellfish Immunol. 2024 Nov;154:109920. https://doi.org/10.1016/j.fsi.2024.109920. Epub 2024 Sep 24. PMID: 39321907.

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