Juanita Gil
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Postdoctoral Research Scientist
Also affiliated: Universidad de Los Andes (2018–2021); Michigan United (2025); ORCID (2020); Universidad de Los Andes (2020); Centro de Investigación de la Caña de Azúcar de Colombia (2020); International Center for Tropical Agriculture (2017–2018); Michigan State University (2025–2026)
Postdoc Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Juanita Gil's research focuses on the application of genomic sequencing and computational analysis to understand plant biology and disease. Her work includes the development of algorithms for efficient de novo genome assembly from long DNA sequencing reads, contributing to advancements in bioinformatics. Gil has also investigated genetic variation and population structure in plant pathogens and crops, with publications detailing genomic resources for lima bean domestication and crop improvement traits, as well as the genome of the causal agent of hop halo blight. Her research extends to mutation calling for TILLING experiments and the characterization of bacterial pathogens affecting crops. Gil has published 18 papers, accumulating 385 citations and an h-index of 8. She collaborates with researchers at the University of Arkansas at Fayetteville and the University of Arkansas at Monticello.
Metrics
- h-index: 8
- Publications: 18
- Citations: 392
Selected Publications
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Population Genomic Analyses Reveal Geographic Structure in <scp> <i>Rhizoctonia solani</i> AG1 </scp> ‐ <scp>IA</scp> Isolates Associated With Agronomic Crops (2026)
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New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads (2023)
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New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads (2022)
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Genome Sequence Resource of <i>Burkholderia glumae</i> UAPB13 (2021)
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Comprehensive genomic resources related to domestication and crop improvement traits in Lima bean (2021)
Collaboration Network
Top Collaborators
- Comprehensive genomic resources related to domestication and crop improvement traits in Lima bean
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de novo genome assembly from long DNA sequencing reads
- New algorithms for accurate and efficient de-novo genome assembly from long DNA sequencing reads
- Comprehensive genomic resources related to domestication and crop improvement traits in Lima bean
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