ZmGLN5 has been characterized as a key candidate gene underlying maize resistance to GER, which provides valuable genetic resources for improving resistance to GER in maize breeding programs.
This research identified ZmBGLU17 as a key resistance-associated gene against FAW and confirmed its functional role through rigorous genetic validation, thereby establishing a molecular foundation for the development of FAW-resistant maize inbred lines.
The genetic and phenotypic results demonstrate that FgSRE1 contributes to reproductive development and virulence in F. graminearum, whereas the transcriptomic data suggest potential associations with metabolic, redox, and membrane-transport-related pathways.
Lin-Ru Shen, Hongyan Hui, Lei Guo et al.· Journal of Fungi· 0 citations
Fusarium head blight (FHB) caused by Fusarium graminearum is a major disease of wheat and barley worldwide. Besides causing yield loss, F. graminearum also contaminates infected grains with trichothecene mycotoxins such as deoxynivalenol (DON) and its acetylated derivatives. Field isolates of F. graminearum vary in the...
Together, these findings highlight coordinated molecular and metabolic reprogramming that strengthens rice resistance to RFS, providing valuable candidate genes and metabolites for breeding programs.
Yan-Min Yu, Hai-Ying Liu, Hong-Tao Wu et al.· American Journal of Biochemi...· 0 citations
The results demonstrate that NFNB resistance is polygenic and developmentally stage-dependent, with partly distinct mechanisms underlying adult plant and seedling resistance, with partly distinct mechanisms underlying adult plant and seedling resistance.
Y. Genievskaya, A. Maulenbay, A. Zatybekov et al.· Frontiers in Agronomy· 0 citations
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