Dylan K. Kosma, Ph.D.
Affiliations: | 2009 | Horticulture and Landscape Architecture | Purdue University, West Lafayette, IN, United States |
Area:
Plant PhysiologyGoogle:
"Dylan Kosma"Parents
Sign in to add mentorMatthew A. Jenks | grad student | 2009 | Purdue | |
(Cuticle lipid involvement in plant environmental stress tolerance and fruit development.) | ||||
John Beyer Ohlrogge | post-doc | 2009-2014 | University of Nevada at Reno (Chemistry Tree) |
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Publications
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Li S, Zhang X, Huang H, et al. (2025) Deciphering the core shunt mechanism in Arabidopsis cuticular wax biosynthesis and its role in plant environmental adaptation. Nature Plants |
Kosma DK, Graça J, Molina I. (2024) Update on the Structure and Regulated Biosynthesis of the Apoplastic Polymers Cutin and Suberin. Plant Physiology |
Muthan B, Wang J, Welti R, et al. (2024) Mechanisms of Spirodela polyrhiza tolerance to FGD wastewater-induced heavy-metal stress: Lipidomics, transcriptomics, and functional validation. Journal of Hazardous Materials. 469: 133951 |
Feng T, Wu P, Gao H, et al. (2022) Natural variation in root suberization is associated with local environment in Arabidopsis thaliana. The New Phytologist |
Santos P, Busta L, Yim WC, et al. (2022) Structural diversity, biosynthesis, and function of plant falcarin-type polyacetylenic lipids. Journal of Experimental Botany. 73: 2889-2904 |
Santos P, Busta L, Yim WC, et al. (2022) Structural diversity, biosynthesis, and function of plant falcarin-type polyacetylenic lipids. Journal of Experimental Botany. 73: 2889-2904 |
Santos P, Busta L, Yim WC, et al. (2022) Structural diversity, biosynthesis, and function of plant falcarin-type polyacetylenic lipids. Journal of Experimental Botany. 73: 2889-2904 |
Wu P, Gao H, Liu J, et al. (2021) Insight into the roles of the ER-associated degradation E3 ubiquitin ligase HRD1 in plant cuticular lipid biosynthesis. Plant Physiology and Biochemistry : Ppb. 167: 358-365 |
Zhao H, Kosma DK, Lü S. (2021) Functional Role of Long-Chain Acyl-CoA Synthetases in Plant Development and Stress Responses. Frontiers in Plant Science. 12: 640996 |
Busta L, Schmitz E, Kosma DK, et al. (2021) A co-opted steroid synthesis gene, maintained in sorghum but not maize, is associated with a divergence in leaf wax chemistry. Proceedings of the National Academy of Sciences of the United States of America. 118 |