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S. cerevisiae Genomic DNA

<strong>S. cerevisiae Genomic DNA</strong>_x000D_ <strong>Catalog number:</strong> B2016364_x000D_ <strong>Lot number:</strong> Batch Dependent_x000D_ <strong>Expiration Date:</strong> Batch dependent_x000D_ <strong>Amount:</strong> 1L_x000D_ <strong>Molecular Weight or Concentration:</strong> N/A_x000D_ <strong>Supplied as:</strong> Solution_x000D_ <strong>Applications:</strong> a molecular tool for various biochemical applications_x000D_ <strong>Storage:</strong> 2-8°C_x000D_ <strong>Keywords:</strong> S. cerevisiae Genomic DNA_x000D_ <strong>Grade:</strong> Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity &gt;18 MΩ-cm) and are filtered through 0.22 um._x000D_ _x000D_ <strong>References:</strong>_x000D_ 1: Venter JC, Glass JI, Hutchison CA 3rd, Vashee S. Synthetic chromosomes, genomes, viruses, and cells Cell. 2022 Jul 21;185(15):2708-2724._x000D_ 2: Mercado-Sáenz S, López-Díaz B, Burgos-Molina AM, Sendra-Portero F, González-Vidal A, Ruiz-Gómez MJ. Exposure of S. cerevisiae to pulsed magnetic field during chronological aging could induce genomic DNA damage Int J Environ Health Res. 2022 Aug;32(8):1756-1767._x000D_ 3: Wyrick JJ, Roberts SA. Genomic approaches to DNA repair and mutagenesis DNA Repair (Amst). 2015 Dec;36:146-155._x000D_ 4: Wang Z, Lin Y, Dai Z, Wang Q. Modulating DNA Repair Pathways to Diversify Genomic Alterations in Saccharomyces cerevisiae Microbiol Spectr. 2022 Apr 27;10(2):e0232621._x000D_ 5: López-Díaz B, Mercado-Sáenz S, Burgos-Molina AM, González-Vidal A, Sendra-Portero F, Ruiz-Gómez MJ. Genomic DNA damage induced by co-exposure to DNA damaging agents and pulsed magnetic field Int J Radiat Biol. 2023;99(5):853-865._x000D_ 6: Owiti N, Stokdyk K, Kim N. The etiology of uracil residues in the Saccharomyces cerevisiae genomic DNA Curr Genet. 2019 Apr;65(2):393-399._x000D_ 7: Alperovich N, Scott BM, Ross D. Automation protocol for high-efficiency and high-quality genomic DNA extraction from Saccharomyces cerevisiae PLoS One. 2023 Oct 17;18(10):e0292401._x000D_ 8: Heasley LR, Argueso JL. Genomic characterization of a wild diploid isolate of Saccharomyces cerevisiae reveals an extensive and dynamic landscape of structural variation Genetics. 2022 Mar 3;220(3):iyab193._x000D_ 9: Dymond JS. Preparation of genomic DNA from Saccharomyces cerevisiae Methods Enzymol. 2013;529:153-60._x000D_ <a href="https://pubmed.ncbi.nlm.nih.gov/24818928">10: Ball G, Filloux A, Voulhoux R. A method to capture large DNA fragments from genomic DNA Methods Mol Biol. 2014;1149:491-500. </a>_x000D_ _x000D_ <strong>Products Related to S. cerevisiae Genomic DNA can be found at</strong> <a href="https://moleculardepot.com/product-category/DNA/"> DNA</a>

Product Specifications

Short Description

Catalog Number: B2016364 (1L)

Weight

35

Length

8

Width

8

Height

8

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