De novo DNA methylation activity of METHYLTRANSFERASE 1 (MET1) partially restores body methylation in Arabidopsis thaliana is a research paper published in The Plant Journal (2012). On theSindex it has a DataRank of 1.6. It has been cited 64 times, with 38 citing works in its 1-hop citation network.
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Base Score Contribution
0.626
From this paper's citation signal
Citation Network Contribution
0.986
From 35 citing papers with measurable signal
Biotechnology and Biological Sciences Research Council
Biotechnology and Biological Sciences Research Council
FWCI
4.18
Citation Percentile
0.9%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis
Additional file 1 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis
Additional file 2 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis
Additional file 2 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis
Additional file 2 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 2 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 1 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 1 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 2 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 2 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 4 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 4 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 3 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 3 of Genome-wide characterization of DNA methyltransferase family genes implies GhDMT6 improving tolerance of salt and drought on cotton
Additional file 3 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 3 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 1 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 1 of Dynamic DNA methylation turnover in gene bodies is associated with enhanced gene expression plasticity in plants
Additional file 7 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis
Additional file 3 of Persistence of parental age effect on somatic mutation rates across generations in Arabidopsis