Adaptive laboratory evolution in S. cerevisiae highlights role of transcription factors in fungal xenobiotic resistance is a research paper published in Communications Biology (2022). On theSindex it has a DataRank of 0.652. It has been cited 24 times, with 14 citing works in its 1-hop citation network.
Scored on demand from live citation data
Linked data & code
DataRank reads this dataset's downstream impact straight off the citation graph — no black box, no proprietary weighting. How is this computed?
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Base Score Contribution
0.483
From this paper's citation signal
Citation Network Contribution
0.169
From 9 citing papers with measurable signal
Ranked by each citer's contribution to N(p) — log1p(Cq) divided by its reference count — out of 14 citers.
U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences
Grant: GM008666
U.S. Department of Health & Human Services | National Institutes of Health
Grant: GM127364
Bill and Melinda Gates Foundation (Bill & Melinda Gates Foundation)
Grant: OPP1141300
Bill & Melinda Gates Foundation - Grand Challenges Explorations Initiative
Grant: OPP1171497
U.S. Department of Health & Human Services | National Institutes of Health (NIH)
Grant: R01AI120958-01A1
Bill and Melinda Gates Foundation (Bill & Melinda Gates Foundation)
Grant: OPP1107194
Bill and Melinda Gates Foundation (Bill & Melinda Gates Foundation)
Grant: OPP1054480
NIGMS NIH HHS
Grant: R01 GM127364
NIAID NIH HHS
Grant: R01 AI120958
U.S. Department of Health & Human Services | National Institutes of Health
Grant: GM085764
NIGMS NIH HHS
Grant: T32 GM008666
NIGMS NIH HHS
Grant: P50 GM085764
Bill and Melinda Gates Foundation
U.S. Department of Health & Human Services | National Institutes of Health
MeSH Terms
Additional file 1 of Unravel the regulatory mechanism of Yrr1p phosphorylation in response to vanillin stress in Saccharomyces cerevisiae
Additional file 1 of Unravel the regulatory mechanism of Yrr1p phosphorylation in response to vanillin stress in Saccharomyces cerevisiae
Additional file 1 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 1 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 3 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 2 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 4 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 2 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 3 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution
Additional file 4 of Engineering Bacillus subtilis J46 for efficient utilization of galactose through adaptive laboratory evolution