Transposable elements as a potent source of diverse cis -regulatory sequences in mammalian genomes is a research paper published in Philosophical Transactions of the Royal Society B Biological Sciences (2020). On theSindex it has a DataRank of 0. It has been cited 250 times.
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National Institutes of Health
Grant: GM131757
National Institutes of Health
Grant: R35
EMBL Interdisciplinary Postdoc (EIPOD) programme under Marie Sklodowska-Curie actions COFUND
Grant: 664726
NIGMS NIH HHS
Grant: R35 GM131757
Howard Hughes Medical Institute
Howard Hughes Medical Institute
FWCI
34.13
Citation Percentile
1.0%
Influential Citations
8
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Evolution of mouse circadian enhancers from transposable elements
Additional file 1 of Evolution of mouse circadian enhancers from transposable elements
Additional file 2 of Evolution of mouse circadian enhancers from transposable elements
Additional file 2 of Evolution of mouse circadian enhancers from transposable elements
Additional file 1 of Origin, evolution, and tissue-specific functions of the porcine repetitive element 1
Additional file 1 of Origin, evolution, and tissue-specific functions of the porcine repetitive element 1
Additional file 1 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 1 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 2 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 2 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 1 of Canine hyper-sociability structural variants associated with altered three-dimensional chromatin state
Additional file 1 of Canine hyper-sociability structural variants associated with altered three-dimensional chromatin state
Additional file 8 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 8 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 7 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 7 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 6 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 6 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 5 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles
Additional file 5 of Chromosome-level genome assembly of Murraya paniculata sheds light on biosynthesis of floral volatiles