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Quantitative PCR analysis of the host-derived viral genes presented here indicated that these they are not only present in the viral fraction of aquatic samples, but also highly abundant.
We did not encounter such patterns in any of the genes presented here, though it is the case that Pap3 and the yellows belong to families known to have high duplication rates.
Despite the concerns with MLSA due to the difficulties in choosing genes to be compared, the information derived from the common set of genes presented here can complement and extend the utility of the 16S rRNA sequences for resolving issues pertaining to the genetics and evolution of bacterial genomes.
Thus the lists of genes presented here may underestimate the downstream transcriptional targets of Nox4 signaling.
The seven genes presented here are the ones whose expression level was significantly increased in sgn3 (p < 0.15).
The detailed delineation of the Synaptotagmin genes presented here, will allow easier identification of Synaptotagmins in future.
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Nevertheless, the genomic structure, the intronic primer sequences, and polymorphisms of the hMAD2 gene presented here will facilitate future studies to determine the full spectrum and frequency of the genetic events that can affect expression of the hMAD2 gene in human tumors.
The detailed genetic map and physical location of the Rlm2 gene presented here should aid in the marker-assisted breeding of the gene into modern B. napus varieties.
The detailed analysis of a single gene presented here shows that, at the bivalent α globin locus, changes in the levels of basal gene expression are reflected by changes in the H3K4me3 mark.
Sequence analyses of the ookinete surface antigen gene, presented here and elsewhere (18), and of the cysteine protease gene all confirmed the occurrence of two different sequences in nuclear genes of parasites grouped as variant type and Nigerian I/CDC or classic type based on their SSUrRNA gene sequence.
Insights acquired through expression profiling of single genes as presented here are necessarily incomplete.
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Justyna Jupowicz-Kozak
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