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Our in-depth genomic analyses indicate that M. abscessus has a non-conservative genome, suggesting the possibility of on-going transfer of additional genetic material.
However, recent integrative genomic analyses indicate that GWAS loci are enriched in nonconserved regions of the genome [ Gaffney et al., 2012 ; Schaub et al., 2012 ].
Genomic analyses indicate that Trichodesmium lacks inducible inorganic carbon (Ci) uptake systems [18], [19].
Importantly, the comparative genomic analyses indicate that this functional polymorphism is maintained by natural selection.
Additional comparative genomic analyses indicate that the knowledge gained from years of basic Brassicaceae research will serve as a powerful tool for identifying gene targets whose manipulation can be predicted to result in improvements for pennycress.
Experimental data and genomic analyses indicate that L. lactis is able to cope with oxidative stress in a similar way to the aerobic model bacteria Escherichia coli and Bacillus subtilis[ 25– 27].
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Genomic analyses indicated that most of the genomes represented facultative anaerobes, with pathways for fermentation of glucose, lactate, and pyruvate (Figs. 4a and 5).
Moreover, in a case in which genomic analyses indicated changing subclonal dynamics in serial passages, the RT profiles tracked concordantly.
Community genomic analyses indicated that most members in the phylum of Chloroflexi are anaerobic acetogenic microbes, which also have the genomes of complete Wood Ljungdahl pathway and β-oxidation of saturated fatty acids (Hug et al. 2013).
Integrated genomic analyses indicated these miRNAs to be influenced by DNA genomic aberrations and to have an overall influence on the expression levels of their predicted targets.
Comparative genomic analyses indicated that strains TX07-7308 ATCCATCC 25015 contained a cluster of nine ORFs that appeared to constitute a polycistronic operon (F7308_1388-1396).
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