Stephen B. Goodwin
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
Publications
214
Citations
11,522
Est. group size
~10
Recurring co-author estimate
Active years
57
Publishing since 1970
Stephen B. Goodwin studies fungal pathogens that attack major crops, particularly Zymoseptoria tritici (which causes Septoria tritici blotch on wheat) and Phyllachora maydis (which causes tar spot of corn). His work combines genomics, plant disease resistance mapping, and microbiome analysis to understand how these pathogens infect crops, spread globally, and how host plants and associated microbial communities can be leveraged for disease control.
Publication output has grown substantially over the last decade, rising from occasional papers in the late 2010s to a peak of 14 in 2025, indicating an actively expanding research program.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Mapping and Genetic Dissection of Novel Tar Spot Resistance QTL on Maize Chromosome 1
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Development of a CRISPR/Cas9-mediated transformation procedure for the wheat pathogen <i>Zymoseptoria tritici</i>
bioRxiv (Cold Spring Harbor Laboratory) · 2026
- Improved Gene Annotation of the Fungal Wheat Pathogen <i>Zymoseptoria tritici</i> Based on Combined Iso-Seq and RNA-Seq Evidence
Molecular Plant-Microbe Interactions · 2025
- Tar spot susceptibility of corn influences phyllosphere-associated bacterial and fungal microbiomes
Frontiers in Microbiology · 2025
- Real-time quantitative PCR method for assessing wheat cultivars for resistance to Zymoseptoria tritici
Frontiers in Plant Science · 2025
- P1203 Spatial mapping and geographic variation of inflammatory bowel disease in Canada: A population-based study using Statistics Canada data
Journal of Crohn s and Colitis · 2025
- Differences Among Fungal Microbiomes Associated with Tar Spot of Corn in Ecuador, Guatemala, and Indiana, USA
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- Loop-Mediated Isothermal Amplification (LAMP) for the Detection and Quantification of Fungal Phytopathogens
2025
- Real-Time Quantitative PCR Method for Assessing Wheat Cultivars for Resistance to <i>Zymoseptoria tritici</i>
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- Native Bacillus subtilis strains cultivated in a low-cost medium enhance maize growth and suppress seed-borne fungi via defense activation and rhizosphere colonization
SSRN Electronic Journal · 2025
- Genome-Wide Association study in a US soft winter wheat population reveals novel and known sources of resistance to the Septoria tritici blotch pathogen <i>Zymoseptoria tritici</i>
bioRxiv (Cold Spring Harbor Laboratory) · 2025
- Native Bacillus subtilis strains cultivated in a low-cost medium enhance maize growth and suppress seed-borne fungi by defense activation and rhizosphere colonization
Biological Control · 2025
- Improved Gene Annotation of the Fungal Wheat Pathogen Zymoseptoria tritici Based on Combined Iso-Seq and RNA-Seq Evidence
Repository for Publications and Research Data (ETH Zurich) · 2025
- Comparative genomics of the extremophile Cryomyces antarcticus and other psychrophilic Dothideomycetes
Frontiers in Fungal Biology · 2024
- Tar Spot Disease Severity Influences Phyllosphere-Associated Bacterial and Fungal Microbiomes
bioRxiv (Cold Spring Harbor Laboratory) · 2024
- bioRxiv (Cold Spring Harbor Laboratory)×14
- Frontiers in Plant Science×6
- Plant Disease×3
- Figshare×3
- Molecular Plant-Microbe Interactions×2
- Pierce A. Paul
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Darcy E. P. Telenko
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
- C. D. Cruz
Biochemistry, Genetics and Molecular Biology · Purdue University West Lafayette
- L. V. Madden
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Carlos Bolaños‐Carriel
Biochemistry, Genetics and Molecular Biology · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile