Martin B. Dickman
Agricultural and Biological Sciences · The Ohio State University
Publications
150
Citations
13,190
Est. group size
—
Recurring co-author estimate
Active years
44
Publishing since 1982
Martin B. Dickman studies how plants and disease-causing fungi interact at the molecular level, focusing on how plant cells regulate programmed cell death, stress responses, and immune defenses to resist infection. His work also examines how fungal pathogens manipulate plant cellular pathways (such as protein quality control and stress signaling) to cause disease. This research aims to understand and potentially improve crop resistance to fungal pathogens and environmental stress.
Publication output was moderate around 2017-2020, dropped to near zero between 2021 and 2023, and has shown a slight uptick with a couple of papers in 2024-2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- A broadly conserved fungal chorismate mutase targets the plant shikimate pathway to regulate salicylic acid production and other secondary metabolites
mBio · 2025
- How the government shutdown is making the air traffic controller shortage worse and leading to flight delays
2025
- Attenuation of phytofungal pathogenicity of Ascomycota by autophagy modulators
Nature Communications · 2024
- Multiple ER‐to‐nucleus stress signaling pathways are activated during <i>Plantago asiatica mosaic virus</i> and <i>Turnip mosaic virus</i> infection in <i>Arabidopsis thaliana</i>
The Plant Journal · 2020
- Cytoprotective Co-chaperone BcBAG1 Is a Component for Fungal Development, Virulence, and Unfolded Protein Response (UPR) of Botrytis cinerea
Frontiers in Microbiology · 2019
- Multiple ER-to-nucleus stress signaling pathways become active during <i>Plantago asiatica mosaic virus</i> and <i>Turnip mosaic virus</i> infection in <i>Arabidopsis thaliana</i>
bioRxiv (Cold Spring Harbor Laboratory) · 2019
- Genome-Wide Investigation of the Role of MicroRNAs in Desiccation Tolerance in the Resurrection Grass Tripogon loliiformis
Plants · 2018
- Reassessing apoptosis in plants
Nature Plants · 2017
- RISC-interacting clearing 3’- 5’ exoribonucleases (RICEs) degrade uridylated cleavage fragments to maintain functional RISC in Arabidopsis thaliana
eLife · 2017
- Publisher Correction: Reassessing apoptosis in plants
Nature Plants · 2017
- Author response: RISC-interacting clearing 3’- 5’ exoribonucleases (RICEs) degrade uridylated cleavage fragments to maintain functional RISC in Arabidopsis thaliana
2017
- Characterization of the Water Economy of Sugarcane Transgenic Genotypes
Journal of Experimental Agriculture International · 2017
- Aspartyl Protease-Mediated Cleavage of BAG6 Is Necessary for Autophagy and Fungal Resistance in Plants
The Plant Cell · 2016
- Arabidopsis B‐cell lymphoma2 (Bcl‐2)‐associated athanogene 7 (<scp>BAG</scp>7)‐mediated heat tolerance requires translocation, sumoylation and binding to <scp>WRKY</scp>29
New Phytologist · 2016
- A plant Bcl-2-associated athanogene is proteolytically activated to confer fungal resistance
Microbial Cell · 2016
- Microbial Cell×2
- Nature Plants×2
- The Plant Cell×1
- New Phytologist×1
- The Plant Journal×1
- Kang He
Agricultural and Biological Sciences · Purdue University West Lafayette
- Stephen O. Opiyo
Agricultural and Biological Sciences · The Ohio State University
- Chao‐Jan Liao
Agricultural and Biological Sciences · Purdue University West Lafayette
- Amit K. Jaiswal
Agricultural and Biological Sciences · Purdue University West Lafayette
- Tesfaye Mengiste
Agricultural and Biological Sciences · Purdue University West Lafayette
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 19, 2026.
Claim or correct this profile