Shannon S Cunningham
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Researcher
Unknown Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Shannon S Cunningham's research focuses on understanding the genetic and molecular mechanisms that influence plant traits, particularly in rice (Oryza). Cunningham's work investigates natural genetic variations that affect important agricultural characteristics such as grain weight, especially under environmental stress like elevated night temperatures. This research involves genome-wide association studies and the analysis of gene expression. Cunningham has also contributed to the development of high-throughput plant phenotyping technologies, including the PlantCV software, which aids in the rapid analysis of plant images for research purposes. The research is supported by collaborations with Argelia Lorence, Karina Medina‐Jiménez, and Rodney S. Harris at Arkansas State University, as well as Cherryl Quiñones at the University of Arkansas at Fayetteville.
Metrics
- h-index: 2
- Publications: 4
- Citations: 13
Selected Publications
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PlantCV v4: Image analysis software for high-throughput plant phenotyping (2025)
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Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions (2024)
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Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice (2023)
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Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice (2022)
Collaboration Network
Top Collaborators
- Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- PlantCV v4: Image analysis software for high-throughput plant phenotyping
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field Infrastructure for Phenomics of High Night Air Temperature Stress Tolerance of Rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Field‐based infrastructure and cyber–physical system for the study of high night air temperature stress in irrigated rice
- Natural variation in LONELY GUY-Like 1 regulates rice grain weight under warmer night conditions
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