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Genes of higher significances showed lower variation in rank ordering by different methods.
GSL genes of higher plants encode essential proteins for callose formation [ 39].
However, the present study found that genes of higher importance showed lower variation in rank ordering.
Many full-length cDNAs derived from the genes of higher eukaryotes are available from many different sources.
We noted that these batch effects were associated more frequently with genes of higher transcript abundance levels.
The amino acid sequence deduced from the nucleotide sequence indicated high similarity to HMT/HTMT genes of higher plants.
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Comparison of the two subnetworks revealed 20 overlapping genes of high priority.
CCM genes of high Ci affinity are known to be regulated at the transcript level [53].
The differential pattern spans all levels of expression – affecting genes of high and low levels of expression.
Ontological analysis reveals that the genes of high variability class may require more sophisticated orchestration of their functions (P4.13-P4.14).
Because the phenotype has likely been subject to a substantial selective pressure, the set of rare alleles is likely to include more genes of high penetrance, and fewer neutral genes, compared to more frequent alleles, all else being equally likely.
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