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We must elucidate the transcriptional and epigenetic profiles and structures of a gene cluster to understand the mechanisms by which imprinted expression is regulated.
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Hence, the cDNA and structure of a gene exhibiting significant homology to insect transferrins were elucidated for S. invicta.
Key players in epigenetic control are histone modifications and DNA methylation which, in concert with chromatin remodeling complexes, nuclear architecture and microRNAs, define the chromatin structure of a gene and its transcriptional activity.
These are changes that affect not the structure of a gene but when, if, and how much of it is activated by chemically altering a gene's promoter region or "on" switch, for example.
The exon and intron structure of a gene were presented as a directed acyclic graph (DAG).
While most loci have only one gene, some have two or more forming the structure of a gene cluster.
Evidence for an error in the structure of a gene can be present in several of the lists.
However, our current knowledge, especially about the influence of the structure of a gene network on its inference, is limited.
The latter can be crucial in identifying additional splice-variants or determining the correct exon intron structure of a gene.
In other words, SNEP detects differences not only in nucleotide sequences and expression levels of a gene, but also in the gross structure of a gene.
If SIM4 failed to reconstruct the exon/intron structure of a gene (i.e., either match ratio or cover ratio <100%), this gene was discarded.
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CEO of Professional Science Editing for Scientists @ prosciediting.com