Minnow is a read level simulator for droplet based single cell RNA-seq data. Long Description (required)
Analysis pipelines usually validate their results by using marker genes and simulated data from gene-count-level simulators. The impact of using different read-alignment or UMI deduplication methods has not been investigated. Assessments usually start by assuming a count matrix where the effects for resolving UMI counts from raw read data are ignored. Minnow differs in the respect by modeling Unique Molecule Identifiers selection. Minnow is a read level simulator for droplet based single cell RNA-seq data. Minnow simulates reads by either sampling sequences from the de-Buijin graph of the reference transcriptome or by sampling sequences from the reference transcriptome itself. https://github.com/COMBINE-lab/minnow u241918@bcm.edu
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Summary of Proposed Changes Step 2: Review list of proposed attribute addition(s) and subtraction(s).
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Summary of Proposed Changes Current Citations/Applications
[Pubmed ID: 31510649 ],
Sarkar H, Srivastava A, Patro R ,
Minnow: a principled framework for rapid simulation of dscRNA-seq data at the read level. ,
Bioinformatics ,
07-15-2019 ,
https://www.ncbi.nlm.nih.gov/pubmed/?term=31510649, Primary Citation
[Pubmed ID: 33471073 ],
Van Buren S, Sarkar H, Srivastava A, Rashid NU, Patro R, Love MI ,
Compression of quantification uncertainty for scRNA-seq counts. ,
Bioinformatics ,
07-19-2021 ,
https://www.ncbi.nlm.nih.gov/pubmed/?term=33471073, , Application
[Pubmed ID: 37645841 ],
Tiberi S, Meili J, Cai P, Soneson C, He D, Sarkar H, Avalos-Pacheco A, Patro R, Robinson MD ,
DifferentialRegulation: a Bayesian hierarchical approach to identify differentially regulated genes. ,
bioRxiv ,
08-17-2023 ,
https://www.ncbi.nlm.nih.gov/pubmed/?term=37645841, , Application