Taylor D. Wadley
Researcher
Formerly Arkansas Affiliated with UAMS through 2022; recent publications list Arkansas Department of Agriculture.
Faculty Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Taylor D. Wadley's research focuses on the application of high-throughput sequencing technologies, particularly Nanopore sequencing, for the characterization of nucleic acid modifications. Wadley has published on the use of Nanopore sequencing for detecting and characterizing phosphorothioate modifications in native DNA sequences. This work contributes to the understanding of molecular biology techniques and their application in genetic studies. Wadley's h-index is 5, with a total of 7 publications and 396 citations. Key collaborators include Visanu Wanchai, En Huang, Intawat Nookaew, and Gunnar Boysen, all affiliated with the University of Arkansas for Medical Sciences, with whom Wadley has co-authored at least one publication.
Metrics
- h-index: 5
- Publications: 7
- Citations: 396
Selected Publications
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Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences (2022)
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Decoding the epitranscriptional landscape from native RNA sequences (2020)
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Macrophage Class A Scavenger Receptors Bind Tumor‐Associated Carbohydrate Antigens and Promote Breast Cancer Growth and Metastases in Mice (2020)
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Rapid Sequencing of Multiple RNA Viruses in Their Native Form (2019)
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Complete Genome and Plasmid Sequences of Escherichia coli Type Strain ATCC 11775 (2019)
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Decoding the Epitranscriptional Landscape from Native RNA Sequences (2018)
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Rapid Sequencing of Multiple RNA Viruses in their Native Form (2018)
Collaboration Network
Top Collaborators
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
- Nanopore Sequencing for Detection and Characterization of Phosphorothioate Modifications in Native DNA Sequences
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