Terry Spurlock
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Researcher
Also affiliated: Delta Air Lines (United States) (2017); Louisiana State University Agricultural Center (2017); State Street (United States) (2024); University of Georgia (2015); Purdue University West Lafayette (2024); University of Arkansas System (2015–2026); Mississippi Delta Community College (2017); Arkansas Department of Agriculture (2025); Auburn University (2017); Mississippi State University (2017)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Terry Spurlock's research focuses on plant pathology, with a particular emphasis on soybean diseases in the United States and Canada. His work investigates emerging pathogens, such as *Xylaria necrophora*, responsible for taproot decline in soybeans. Spurlock has also studied the characterization and management of fungicide resistance, specifically in *Cercospora* isolates associated with Cercospora leaf blight. His publications include estimates of soybean yield loss due to various diseases and analyses of virulence variations among different pathogen species and soybean accessions.
His research has involved collaborations with several researchers from the University of Arkansas at Fayetteville, including Travis Faske, Burton H. Bluhm, J. C. Rupe, and Pengyin Chen. Spurlock has authored 40 publications, with an h-index of 7 and 756 citations. He has also explored applications of spray coverage from remotely piloted aerial systems.
Metrics
- h-index: 7
- Publications: 40
- Citations: 773
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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Response of the Soybean Seed-Borne Pathogens <i>Diaporthe</i> spp. and <i>Cercospora</i> spp. to Foliar Fungicides in Arkansas (2025)
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Estimated Soybean Yield and Economic Losses Caused by Diseases in the United States and Ontario, Canada, from 2020 to 2024 (2025)
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Sensitivity of Soybean ( <i>Glycine max</i> ) Pathogens <i>Diaporthe aspalathi</i> , <i>D. caulivora</i> , and <i>D. longicolla</i> to Difenoconazole and Fluopyram Fungicides (2024)
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Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean (2023)
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Soybean Yield Loss Estimates Due to Diseases in the United States and Ontario, Canada, from 2015 to 2019 (2021)
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Soybean growth and incidence of soil‐borne fungi as influenced by metribuzin (2020)
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Flumioxazin effects on soybean canopy formation and soil-borne pathogen presence (2020)
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Soybean Yield Loss Estimates Due to Diseases in the United States and Ontario, Canada, from 2010 to 2014 (2017)
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Evaluation of Methods to Quantify Populations of <i>Rhizoctonia</i> in Soil (2015)
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First Report of Neocosmospora Stem Rot of Soybean Caused by <i>Neocosmospora vasinfecta</i> in Arkansas (2015)
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First Report of Aerial Blight of Peanut Caused by <i>Rhizoctonia solani</i> AG1-IA in Arkansas (2013)
Collaboration Network
Top Collaborators
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Response of the Soybean Seed-Borne Pathogens <i>Diaporthe</i> spp. and <i>Cercospora</i> spp. to Foliar Fungicides in Arkansas
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
- Variation in Isolate Virulence and Accession Resistance Associated with <i>Diaporthe aspalathi</i>, <i>D. caulivora</i>, and <i>D. longicolla</i> in Soybean
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