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The increasing number of available Lactobacillus genome sequences has allowed understanding of genetic and metabolic potential of this LAB group.
As an update on the previously reported draft genome of P. mendocina strain S5.2, the availability of complete genome sequences has allowed accurate definition of gene coordinates and recognition of paralogous gene families.
The recent rapid growth in the availability of both partial and full genomic sequences has allowed for broad studies of codon usage subject to GC bias across large numbers of species.
The release of their genome sequences has allowed systems level research.
More recently, the availability of complete genomic sequences has allowed recombination to be assessed more accurately [ 23].
The availability of complete genome sequences has allowed for a definitive assessment of the prevalence of two-component proteins.
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The family specific complete sequences have allowed identification of post zygotic mutations between MZD genomes.
In the genomic era, whole genome sequences have allowed comprehensive typing though sequence-based methods, including multilocus sequence and variable number of tandem repeat (VNTR) typing approaches [6], [7].
Whole genome sequences have allowed us to have an overview of the evolution of gene repertoires.
High-throughput genotyping of single-nucleotide polymorphism (SNP) derived from genic sequences have allowed large-scale gene mapping.
These new sequences have allowed the refinement of the serpin phylogenetic tree and show the relatedness of PEDF to other serpins.
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