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Here, we briefly review recent progress on the exploration of the effect of genetic background and we discuss how a deeper characterization of the inheritance, expressivity and genetic interactions hidden behind the phenotypic landscape of natural variation could provide a better understanding of the relationship between genotype and phenotype.
Additionally, identification of several protein families catalyzing phospholipid 'scrambling', i.e. disruption of phospholipid asymmetry through energy-independent bi-directional phospholipid transport, as well as the recent report of the structure of such a scramblase, opens the way to a deeper characterization of their mechanism of action.
In order to provide a deeper characterization of the genotypes, we extended the previously used genetic annotation with significant copy number aberrations computed by GISTIC [34].
There is therefore a dire need for a deeper characterization of CRC biology and for the identification of innovative therapeutic targets.
This prompted to a deeper characterization of DMPs, by extending bidirectionally the sequence of the position (±100 bp) and examining the enrichment of known transcriptional motifs.
Moreover comprehensive analyses would allow a deeper characterization of weakly expressed venom components and a comparative work aiming at retracing the evolutionary history of hymenopteran venoms.
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A deep characterization of all samples was carried out, before and after reaction, by means of N2 adsorption, Transmission Electron Microscopy, chemical analyses, X-ray diffractemperaturerature programmed reduction and X-ray photoelectron spectroscopy, what allowed us to explain the observed stability.
This work is a continuation of a deep characterization of E.coli strains isolated from a cohort of infants and their mothers in Trondheim, Norway.
In this study, we provide a deep characterization of the genomic locations of 5hmC in the human prefrontal cortex in a large sample.
Finally, we present a deep characterization of miRNA involvement in berry and inflorescence development, suggesting a role for miRNA-driven hormonal regulation.
This approach allowed us to compare the subpopulation structures and provide a deep characterization of cell-to-cell variation in gene expression levels across these three pluripotent states.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com