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Moderate transcriptome studies (e.g., 2 5 plates) have the potential to sequence more than 50% of the transcriptome.
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Recent years saw a significant increase in full transcriptome studies for bacteria, which provided deep insight into the architecture of bacterial transcriptomes.
Herein, we summarized the recent findings and advances in transcriptome studies of cell culture bioprocesses.
RNA-seq data strongly corroborates prior transcriptome studies by microarray and SAGE.
Our observations in slowly growing cells are in agreement with findings of transcriptome studies in 'average populations' of other species.
In the advent of Next Generation Sequencing (NGS), Whole-genome transcriptional profile has become a great tool in transcriptome studies.
Comprehensive transcriptome studies of cancers often rely on corresponding normal tissue samples to serve as a transcriptional reference.
Transcriptome studies of AD utilizing brain tissue have however generated mostly discordant results.
Technological advances have already brought about a new era for genomics, epigenomics, and transcriptome studies.
Both mutants have few cytological and moderate transcriptome differences compared to fertile at 1.0 mm.
Both am1-489 and am1-praI anthers are cytologIcanthersrmareat 1.0 mm and show moderate transcytologicallyrationormal
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