Searching journal content for articles similar to Swanson et al. 7 (5): 513.

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  1. ...that dynamically shape the transcriptome by producing diverse RNA isoforms remain incompletely understood. Here, through longitudinal transcriptomic profiling of cardiomyogenesis, we delineate pervasive RNA isoform switching across the developmental trajectory of cardiac differentiation. We show that the changes...
  2. ...in insufficient read coverage, thereby limiting our ability to perform mutation calling for specific genes. Here, we developed a single-cell Rapid Capture Hybridization sequencing (scRaCH-seq) method that demonstrates high specificity and efficiency in capturing targeted transcripts using long-read sequencing...
  3. ...and regulation. One is the large degree of redundancy between tethering mechanisms and the diversity in peripheral proteins which can interact with chromatin, many of which are differentially expressed between different tissues and stages of development. Added to this is the variability of LADs themselves...
  4. ...strains in both trees, suggesting multiple independent hybridization events (Fig. 1). However, our findings based on phylogenetic groupings should be interpreted with caution because of frequent recombination between parental subs and differential LOH in hybrid s. It has been intensely debated whether S...
  5. ...of Genetics, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27514, USA Corresponding author: rob@cs.umd.eduAbstractIdentifying differentially expressed transcripts poses a crucial yet challenging problem in transcriptomics. Substantial uncertainty is associated with the abundance...
  6. ...of Multidisciplinary Biomedical Research, Tsinghua University, Beijing 102206, China Corresponding authors: situssog@gmail.com, j.wolf@biologie.uni-muenchen.deAbstractHybridization is thought to reactivate transposable elements (TEs) that were efficiently suppressed in the s of the parental hosts. Here, we provide...
  7. ..., University of Washington, Seattle, Washington 98195, USA; 6New York Genome Center, New York, New York 10013, USA; 7Department of Systems Biology, Columbia University, New York, New York 10032, USA Corresponding authors: philipp.rentzsch@scilifelab.se, tuuli.lappalainen@scilifelab.seAbstractDifferential...
  8. ...Ancestral aneuploidy and stable chromosomal duplication resulting in differential structure and gene expression control in trypanosomatid parasites João L. Reis-Cunha1,5, Samuel A. Pimenta-Carvalho2,5, Laila V. Almeida2, Anderson Coqueiro-dos-Santos2, Catarina A. Marques3, Jennifer A. Black3...
  9. ...and developmental stages, and identify differentially regulated mRNA decay throughout embryonic development. We identify transcript features that are correlated with mRNA stability and find that mRNA decay rates are associated with distinct peaks in gene expression over time. Moreover, we provide evidence that...
  10. ...development and places H3K27me3 as a key feature in the coregulation of distant genes.Gene expression regulation underlying eukaryotic cell differentiation depends largely on covalent modifications of nuclear chromatin, including histone modifications (Ahmad et al. 2010). It has been shown that histone...
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