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However, only the midnight blue module shows a strong trend after a Benjimini-Hochberg correction (pFDR light yellow = 0.07, pFDR royal blue = 0.063, pFDR midnight blue = 0.052, pFDR dark red = 0.16).
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The expression profile of the eigengene of the Blue module showed a clear under-expression for the lean animals, while it showed overexpression in the obese individuals.
The blue module showed a significant relationship with the UV-B treatment (Fig. 3D; p = 2.2 × 10-5, Kruskal-Wallis test), which is characterized as a down-regulation response.
On the other hand, the module eigengenes of the yellow, tan, black, and midnight blue modules, showed opposite directions upon differentiation as compared with depolarization.
The red and blue modules showed similarly high correlations with genotype (0.54, P < 0.0005; 0.49, P < 0.001, respectively) but while synaptic genes were included in both, they were more highly enriched in the blue module.
Because only blue module show consistent enrichment of both duplicated new genes and orphan genes, we focused on this module subsequently.
Only the yellow module showed an overlap.
Among three technology modules, a-Si modules showed a maximum increase in UF during monsoon due to its narrow spectral response which is affected more severely by a strong blue shift in APE during this season (Fig. 5). Figure 9 shows a plot between normalized UF (with respect to the highest value of UF) and AM for the present site.
Blue line shows a parabolic fit.
The red module, which is associated with gene expression throughout the striatum, is enriched in the Specificity protein 1 (Sp1) TF; the blue module also showed enrichment in Sp1.
Blue shading shows an absence of colour.
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