MegaFi™ Pro Fidelity 2X PCR MasterMix

Cat. No.
G887
Unit
800 rxn (10.0 ml)
Price
$335.00

PCR buffet

Cat. No. G887
Name MegaFi™ Pro Fidelity 2X PCR MasterMix
Unit 800 rxn (10.0 ml)
Category PCR Polymerase
Description

MegaFi™ Pro Fidelity 2X PCR MasterMix sets a new benchmark for specific, sensitive, robust, and high-fidelity PCR performance in a uniquely-formaulated buffer with gel loading dye. This advanced, strategically engineered enzyme is combined with a monoclonal antibody that inhibits both 5’-3’ polymerase activity and 3'-5’ exonuclease activity at room temperature, enabling precise Hot Start reactions. With exceptional sensitivity, MegaFi™ Pro can amplify even the most challenging templates, outperforming leading competitors. It delivers unparalleled high fidelity with an ultra-low error rate—over 2,000 times lower than Taq polymerase—making it the most accurate enzyme available. Ideal for demanding applications such as Next Generation Sequencing, molecular cloning, and diagnostics, MegaFi™ Pro ensures the highest quality results for your PCR needs.

Product Features:

  • 2000X lower error rates than regular Taq
  • Amplifies difficult templates
  • Blunt ends
  • Contains gel loading dye
  • Included in abm's PCR Buffet Program

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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
  • Ultra high-fidelity PCR 
  • Next Generation Sequencing
  • Accurate CRISPR edit detection
  • Mutagenesis
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. G887
  • Bi, L., Zhang, X., Zou, S., Ji, D., & Zhang, Q. (2022). Detection of prokaryotes on the astomatous ciliated protist Kentrophoros flavus (Ciliophora, Karyorelictea) revealed a consistently associated muribaculaceae-like bacterium. Frontiers in Marine Science, 9, 879388. https://doi.org/10.3389/fmars.2022.879388

    Deng, J., Deng, X., Yao, H., Ji, S., & Dong, L. (2024). Gibberellins Play an Essential Role in the Bud Growth of Petunia hybrida. Current Issues in Molecular Biology, 46(9), 9906-9915. https://doi.org/10.3390/cimb46090590

    Deng, J., Deng, X., Zhang, M., Tang, Z., & Dong, L. (2025). PhSLB1 Regulates Branch Development in Petunia. Journal of the American Society for Horticultural Science, 150(1), 19-27. https://doi.org/10.21273/JASHS05413-24

    Dong, L., Xu, X., Jiang, Z., Yao, H., Tian, W., & Deng, X. (2023). PhCYP724B1 positively regulates shoot branching. https://doi.org/10.21203/rs.3.rs-3165454/v1

    Du J, Yin H, Li J, Zhang W, Ding G, Zhou D, Sun Y, Shen B. Transcription factor B-H2 regulates CYP9J34 expression conveying deltamethrin resistance in Culex pipiens pallens. Pest Manag Sci. 2024 Apr;80(4):1991-2000. https://doi.org/10.1002/ps.7934 E pub 2024 Jan 18. PMID: 38092527.

    Ferreira, P., Kwan, G. T., Haldorson, S., Rummer, J. L., Tashiro, F., Castro, L. F. C., ... & Wilson, J. M. (2022). A multi-tasking stomach: functional coexistence of acid–peptic digestion and defensive body inflation in three distantly related vertebrate lineages. Biology letters, 18(2), 20210583. https://doi.org/10.1098/rsbl.2021.0583

    Jiang, Z., Liu, T., Zhang, Q., Dong, L., & Deng, X. (2023). PhNAL1 Is Involved in Regulating Branch Development of Petunia. Journal of the American Society for Horticultural Science, 148(6), 276-282. https://doi.org/10.3390/horticulturae10090912

    Kim, H. K., Kim, C. J., Jang, D., & Lim, D. H. (2023). MicroRNA miR-274-5p suppresses found-in-neurons associated with melanotic mass formation and developmental growth in Drosophila. Insects, 14(8), 709. https://doi.org/10.3390/insects14080709

    Kolátková, V., Mooney, M., Kelly, K., Hineva, E., Gawryluk, R. M., & Elliott, J. (2023). Eelgrass (Zostera spp.) associated phytomyxids are host‐specific congeneric parasites and predominant eukaryotes in the eelgrass rhizosphere on a global scale. Environmental Microbiology, 25(8), 1522-1537. https://doi.org/10.1111/1462-2920.16376

    Lee, S., Le, Q. T., Yang, S., Hwang, K. Y., & Lee, H. (2023). Arabidopsis ecotype Ct-1, with its altered nitrate sensing ability, exhibits enhanced growth under low nitrate conditions in comparison to Col-0. Plant Science, 336, 111827. https://doi.org/10.1016/j.plantsci.2023.111827

    Liu, C., Yang, P., Wang, X., Xiang, B., E, G., & Huang, Y. (2024). Candidate circRNAs related to skeletal muscle development in Dazu black goats. Animal Biotechnology, 35(1), 2286609. https://doi.org/10.1080/10495398.2023.2286609

    Mera Barrera, M. B., & Pardo Calva, D. F. (2025). Detección del gen blaCTX-M grupo 1 en enterobacterales productores de betalactamasas de espectro extendido en cepas procedentes de la Clínica Santa Ana y Hospital del Río, Cuenca 2024. https://dspace.ucuenca.edu.ec/handle/123456789/46278

    Peng, K., Sun, A., Zhu, J., Gao, J., Li, Y., Shao, G., ... & Lin, Q. (2021). Restoration of the ATG5-dependent autophagy sensitizes DU145 prostate cancer cells to chemotherapeutic drugs. Oncology Letters, 22(3), 638.  https://doi.org/10.3892/ol.2021.12899

    Wu, W., Li, C., Zhang, Q., Wang, Y., Li, X., Yang, Q., & Dong, L. (2024). PhSPEAR1 Participates in Regulating the Branch Development of Petunia. Horticulturae, 10(9), 912. https://doi.org/10.3390/horticulturae10090912

    Wu, X., Alibayov, B., Xiang, X., Lattar, S. M., Sakai, F., Medders, A. A., ... & Vidal, J. E. (2024). Ultrastructural, metabolic and genetic characteristics of determinants facilitating the acquisition of macrolide resistance by Streptococcus pneumoniae. Drug Resistance Updates, 77, 101138. https://doi.org/10.1016/j.drup.2024.101138

    Yang, Y., Cai, Q., Luo, L., Sun, Z., & Li, L. (2024). Genome-Wide Analysis of C-Repeat Binding Factor Gene Family in Capsicum baccatum and Functional Exploration in Low-Temperature Response. Plants, 13(4), 549. https://doi.org/10.3390/plants13040549

    Yang, Y., Cai, Q., Wang, Y., Li, L., & Sun, Z. (2024). Genome-wide exploration of the WD40 gene family in eggplant (Solanum melongena L.) and analysis of its function in fruit color formation. Agronomy, 14(3), 521. https://doi.org/10.3390/agronomy14030521

    Yi, S., Cai, Q., Yang, Y., Shen, H., Sun, Z., & Li, L. (2024). Identification and Functional Characterization of the SaMYB113 Gene in Solanum aculeatissimum. Plants, 13(11), 1570. https://doi.org/10.3390/plants13111570

    Zhang, F., Song, W., Yang, R., Jin, C., Xie, Y., Shen, Y., ... & He, Y. (2024). Semen promotes oocyte development in Sebastes schlegelii elucidating ovarian development dynamics in live-bearing fish. Iscience, 27(3). https://doi.org/10.1016/j.isci.2024.109193

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