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A lipid transfer protein has antifungal and antioxidant activity and suppresses Fusarium head blight disease and DON accumulation in transgenic wheat

Phytopathology. 2020; 
John E McLaughlin, Noura Al Darwish, Jeffrey Garcia-Sanchez, Neerja Tyagi, Harold N Trick, Susan McCormick, Ruth Dill-Macky, Nilgun E Tumer
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Molecular Biology Reagents … 236 Protein isolated using the Plant Total Protein Extraction kit was loaded in precast 4%-20% SDS- 237 PAGE gels (Cat. M42010, GenScript, Piscataway, NJ) using the Mini-PROTEAN Tetra Vertical 238 Electrophoresis Cell system (Cat. 1658004, Bi-Rad) … Get A Quote

摘要

Trichothecene mycotoxins such as deoxynivalenol (DON), are virulence factors of Fusarium graminearum, which causes Fusarium head blight (FHB), one of the most important diseases of small grain cereals. We previously identified a non-specific lipid transfer protein (nsLTP) gene, AtLTP4.4, which was overexpressed in an activation tagged Arabidopsis line resistant to trichothecin (Tcin), a type B trichothecene in the same class as DON. Here we show that overexpression of AtLTP4.4 in transgenic wheat significantly reduced F. graminearum growth in Bobwhite and RB07 lines in the greenhouse and reduced fungal lesion size in detached leaf assays. Hydrogen peroxide accumulation was attenuated upon exposure of transgenic... More

关键词

Genetics and resistance, Mycology, Plant Stress and Abiotic Disorders