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Proteomic analysis uncovered a large number (73) of mitoribosomal proteins (MRPs).
MPSS data analysis uncovered a large number of genes that were not previously known to be involved in formation of the mutation trait.
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For instance, the analysis uncovered a CR-responsive group of co-expressed genes encoding histone clusters (Hist2h3c1, Hist2h3c2, Hist1h2bc, Hist2h2aa1and Hist1h1c), as well as a large module that contains genes involved in mRNA processing (e.g., Sfrs18, Sfpq, Prpf4b, Prpf39).
By RNAseq analysis we uncovered a large set of differentially expressed novel genes with protein annotation during the reproductive period in Tripterygion delaisi.
Our transcriptome analysis uncovered a comprehensive set of genes downregulated in all the five tissues of BP and PM.
Our analysis uncovered a previously unappreciated connection between chromosome size and centromere function during meiosis, revealing that crossovers (COs) tend to occur farther away from the centromere on larger chromosomes, which may influence chromosome segregation and aneuploidy events.
Principal component analysis uncovered a subset of genes whose expression differed significantly between genotypes.
Our analysis uncovered a topology in accordance with expansion in the vertebrate lineage.
This analysis uncovered a strong reciprocal relationship between transcriptional strength and axis protein enrichment.
Our analysis uncovered a remarkably dense interaction node centered on genes involved in mitotic progression.
Using stringent criteria, our analysis uncovered a total of 395 novel transcribed units.
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