The genetic and epigenetic landscape of the Arabidopsis centromeres is a research paper published in Science (2021). On theSindex it has a DataRank of 0. It has been cited 476 times.
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Biotechnology and Biological Sciences Research Council
Grant: BB/N007557/1
Biotechnology and Biological Sciences Research Council
Grant: BB/T004282/1
Austrian Science Fund FWF
Grant: P 30802
The role of chromatin in alternating generations
Austrian Science Fund FWF
Grant: TAI 304
A novel code to interpret genetic information
Austrian Science Fund FWF
Grant: P 32054
The role of histone variants in chromatin organization
Austrian Science Fund FWF
Grant: P 26887
Impact of a new histone H2A variant on chromatin structure and dynamics
Austrian Science Fund FWF
Grant: P 28320
Evolution of the chromatin organization in plants
NIH HHS
Grant: S10 OD028632
Biotechnology and Biological Sciences Research Council
Grant: BB/S006842/1
HEI10: a master switch for recombination in plants
Biotechnology and Biological Sciences Research Council
Grant: BB/V003984/1
Assembling and recombining the Arabidopsis centromeres
NCI NIH HHS
Grant: P30 CA045508
European Research Council
Grant: 681987
Synthesizing Meiotic Crossover Hotspots in Arabidopsis
Biotechnology and Biological Sciences Research Council
Grant: BB/S020012/1
18-BTT: High-throughput fluorescent crossover reporters to dissect control of tomato meiotic recombination
NIGMS NIH HHS
Grant: R01 GM067014
National Science Foundation
Grant: 1350041
CAREER: Algorithms for single molecule sequence analysis
National Institutes of Health
Grant: 1S10OD028632-01
Graphical Processing Units and a Large-Memory Compute Node for Applications in Genomics, Neuroscience, and Structural Biology
European Commission
Grant: 765212
Meiotic Control of Recombination in Crops
National Science Foundation
Grant: 1732253
Research PGR: Structural variant landscapes in tomato genomes and their role in natural variation, domestication and crop improvement
FWCI
76.62
Citation Percentile
1.0%
Influential Citations
35
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Automated assembly scaffolding using RagTag elevates a new tomato system for high-throughput genome editing
Additional file 1 of Automated assembly scaffolding using RagTag elevates a new tomato system for high-throughput genome editing
Additional file 6 of Automated assembly scaffolding using RagTag elevates a new tomato system for high-throughput genome editing
Additional file 6 of Automated assembly scaffolding using RagTag elevates a new tomato system for high-throughput genome editing
Additional file 1 of HiCAT: a tool for automatic annotation of centromere structure
Additional file 1 of HiCAT: a tool for automatic annotation of centromere structure
Additional file 10 of HiCAT: a tool for automatic annotation of centromere structure
Additional file 10 of HiCAT: a tool for automatic annotation of centromere structure
Additional file 1 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 1 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 1 of Near telomere-to-telomere genome assemblies of two Chlorella species unveil the composition and evolution of centromeres in green algae
Additional file 1 of Near telomere-to-telomere genome assemblies of two Chlorella species unveil the composition and evolution of centromeres in green algae
Additional file 6 of Network analysis uncovers the master role of WRKY transcription factors in Arabidopsis thaliana response to N-acyl homoserine lactones
Additional file 6 of Network analysis uncovers the master role of WRKY transcription factors in Arabidopsis thaliana response to N-acyl homoserine lactones
Additional file 3 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 3 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 4 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 4 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 5 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis
Additional file 5 of Structural variation and DNA methylation shape the centromere-proximal meiotic crossover landscape in Arabidopsis