Michael Kolomiets

Affiliations: 
Plant Pathology and Microbiology Texas A & M University, College Station, TX, United States 
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"Michael Kolomiets"
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Huang PC, Grunseich JM, Berg-Falloure KM, et al. (2023) Maize OPR2 and LOX10 Mediate Defense against Fall Armyworm and Western Corn Rootworm by Tissue-Specific Regulation of Jasmonic Acid and Ketol Metabolism. Genes. 14
Yuan P, Borrego E, Park YS, et al. (2023) 9,10-KODA, an α-ketol produced by the tonoplast-localized 9-lipoxygenase ZmLOX5, plays a signaling role in maize defense against insect herbivory. Molecular Plant
Berg-Falloure KM, Kolomiets MV. (2023) Ketols Emerge as Potent Oxylipin Signals Regulating Diverse Physiological Processes in Plants. Plants (Basel, Switzerland). 12
Higgins S, Joshi R, Juarez I, et al. (2023) Non-invasive identification of combined salinity stress and stalk rot disease caused by Colletotrichum graminicola in maize using Raman spectroscopy. Scientific Reports. 13: 7661
Huang PC, Tate M, Berg-Falloure KM, et al. (2023) A non-JA producing oxophytodienoate reductase functions in salicylic acid-mediated antagonism with jasmonic acid during pathogen attack. Molecular Plant Pathology
Tolley JP, Gorman Z, Lei J, et al. (2022) Overexpression of maize ZmLOX6 in Arabidopsis thaliana enhances damage-induced pentyl leaf volatile (C5) emissions that affect plant growth and interaction with aphids. Journal of Experimental Botany
Bernal JS, Helms AM, Fontes-Puebla AA, et al. (2022) Root volatile profiles and herbivore preference are mediated by maize domestication, geographic spread, and modern breeding. Planta. 257: 24
Helliwell EE, Lafayette P, Kronmiller BN, et al. (2022) Transgenic Soybeans Expressing Phosphatidylinositol-3-Phosphate-Binding Proteins Show Enhanced Resistance Against the Oomycete Pathogen . Frontiers in Microbiology. 13: 923281
Saado I, Chia KS, Betz R, et al. (2022) Effector-mediated relocalization of a maize lipoxygenase protein triggers susceptibility to Ustilago maydis. The Plant Cell
MacIntyre AM, Meline V, Gorman Z, et al. (2022) Trehalose increases tomato drought tolerance, induces defenses, and increases resistance to bacterial wilt disease. Plos One. 17: e0266254
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