Searching journal content for articles similar to Argueso et al. 19 (12): 2258.

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  1. ...a method for detecting telomeric sequences in Saccharomyces cerevisiae s from raw Oxford Nanopore Technologies (ONT) sequencing reads, providing a comprehensive view of TL distributions both -wide and at individual chromosome extremities. We analyze the TL distribution in 100 S. cerevisiae strains...
  2. ...RO, Noronha MF, et al. 2009. Genome structure of a Saccharomyces cerevisiae strain widely used in bioethanol production. Genome Res 19: 2258–2270. ↵ Ben-Ari G, Zenvirth D, Sherman A, David L, Klutstein M, Lavi U, Hillel J, Simchen G Ben-Ari G, Zenvirth D, Sherman A, David L, Klutstein M, Lavi U...
  3. ...a principal component analysis (Fig. 3A). By looking at the first two principal components explaining 53.7% of the variation from 24,110 sampled -wide distributed SNPs, we can show that the genomic copies with high genetic variation (“High”) of 40 strains from the teq/EtOH, beer, and wine 1 subpopulations...
  4. ...with gasoline. Using microarray-based comparative genome hybridization (aCGH), we have determined gene copy number variations (CNVs) common to five industrially important fuel ethanol Saccharomyces cerevisiae strains responsible for the production of billions of gallons of fuel ethanol per year from sugarcane...
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