BlasTaq™ 2X PCR MasterMix

Cat. No.
G895
Unit
800 rxn (10.0 ml)
Price
$283.00

PCR buffet

Cat. No. G895
Name BlasTaq™ 2X PCR MasterMix
Unit 800 rxn (10.0 ml)
Category PCR Polymerase
Description

Blast through a routine 2 hour PCR run in only 20 minutes!

BlasTaq™ 2X PCR MasterMix is a ready-to-use MasterMix containing abm’s BlasTaq™ DNA Polymerase in a uniquely-formulated buffer with gel loading dye. BlasTaq™ DNA Polymerase is a strategically-engineered, next generation Taq Polymerase that has rapid extension rates and robust performance. With specialized reaction conditions, this polymerase provides increased processivity, yields, and sensitivity, while shortening reaction times by up to 70%, compared to wild-type Taq DNA polymerase. BlasTaq™ has 5’-3’ polymerase and 5’-3’ exonuclease activities, lacks 3’-5’ exonuclease activity, and produces 3’-dA-tailed amplicons. PCR products made with BlasTaq™ can be used with TA cloning vectors.

Product Features:

  • 6 kb/min extension speed
  • 40-70% less time needed than reguar Taq
  • Superior senstivitiy
  • Available as a standalone enzyme (Cat. No. G894)
  • Included in abm's PCR Buffet Program

Request Free Sample

Product Component Quantity
BlasTaq™ 2X PCR MasterMix1 800 rxn (10.0 ml)

1 MasterMix contains 1.5 mM Mg2+

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).

Application
  • Routine PCR
  • Super-fast PCR 
Concentration 2X
Storage Condition

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

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. G895
  • 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
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    Gabrielli, S., Brustenga, L., Morganti, G., Ciuca, L., Barlozzari, G., Rigamonti, G., ... & Veronesi, F. (2024). Genetic variability of Dirofilaria repens isolates from humans and dogs in Italy. Veterinary Parasitology, 326, 110096. https://doi.org/10.1016/j.vetpar.2023.110096

    Hassan, E. R., Alhatami, A. O., Abdulwahab, H. M., & Schneider, B. S. (2022). Characterization of plasmid-mediated quinolone resistance genes and extended-spectrum beta-lactamases in non-typhoidal Salmonella enterica isolated from broiler chickens. Veterinary World, 15(6), 1515. https://doi.org/10.14202/vetworld.2022.1515-1522

    Huang, X., Yao, J., Liu, L., Chen, J., Mei, L., Huangfu, J., ... & Yang, A. (2023). S-acylation of p62 promotes p62 droplet recruitment into autophagosomes in mammalian autophagy. Molecular Cell, 83(19), 3485-3501. https://doi.org/10.1016/j.molcel.2023.09.004

    Kaymaz, S., Aydın, D., Uğur, K., Çobankara, V., & Tan, S. (2023). Expression Levels and Clinical Values of miR-195, miR-424, miR-10b, miR-103a-3p, and miR-542-3p in Vasculo-Behçet’s Disease. Mediterranean Journal of Rheumatology, 35(2), 255. https://doi.org/10.31138/mjr.030623.elc

    Li, M. X., Wu, G., & Yang, Z. L. (2021). Four new species of Hemileccinum (Xerocomoideae, Boletaceae) from southwestern China. Journal of Fungi, 7(10), 823. https://doi.org/10.3390/jof7100823

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    Santillán-Mendoza, R., Estrella-Maldonado, H., Marín-Oluarte, L., Matilde-Hernández, C., Rodríguez-Alvarado, G., Fernández-Pavía, S. P., & Flores-de la Rosa, F. R. (2024). Phylogenetic and Pathogenic Evidence Reveals Novel Host–Pathogen Interactions between Species of Lasiodiplodia and Citrus latifolia Dieback Disease in Southern Mexico. Journal of Fungi, 10(7), 484. https://doi.org/10.3390/jof10070484

    Tang, W., Yan, H., Chen, X., Pu, Y., Qi, X., Dong, L., & Su, C. (2024). hUCMSC-derived extracellular vesicles relieve cisplatin-induced granulosa cell apoptosis in mice by transferring anti-apoptotic miRNAs. Journal of Biomedical Research, 39(1), 36. https://doi.org/10.7555/JBR.37.20230310

    Wu, X. Q., Ying, F., Chung, K. P. S., Leung, C. O. N., Leung, R. W. H., So, K. K. H., ... & Lee, T. K. W. (2025). Intestinal Akkermansia muciniphila complements the efficacy of PD1 therapy in MAFLD-related hepatocellular carcinoma. Cell Reports Medicine, 6(1). https://doi.org/10.1016/j.xcrm.2024.101900

    Zhang, H., Wu, K., Zhao, Y., Song, G., Su, Y., & Shan, B. (2022). The value and application of different assays in carbapenemase detection. Archives of Clinical Psychiatry, 49(5). https://archivespsy.com/menu-script/index.php/ACF/article/view/1804

    Никитина, Е. В., Юсупов, З. О., Савина, Н. В., Кильчевский, А. В., & Кубрак, С. В. (2024). Молекулярно-генетический анализ видов семейства Lamiaceae в Узбекистане с использованием ДНК маркеров. Проблемы ботаники Южной Сибири и Монголии, 23(2), 284-290. https://doi.org/10.14258/pbssm.2024106

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