ZmNLR-7-Mediated Synergistic Regulation of ROS, Hormonal Signaling, and Defense Gene Networks Drives Maize Immunity to Southern Corn Leaf Blight
Bo Su, Xiaolan Yang, Rui Zhang, Shijie Dong, Ying Liu, Hubiao Jiang, Guichun Wu, Ting Ding

TL;DR
This study shows how the ZmNLR-7 gene helps maize resist southern corn leaf blight by regulating stress responses and immune signals.
Contribution
The study provides the first evidence that ZmNLR-7 confers resistance to southern corn leaf blight through synergistic regulation of ROS and defense genes.
Findings
ZmNLR-7 mutants showed increased susceptibility to southern corn leaf blight with higher disease indices.
ZmNLR-7 regulates ROS homeostasis and SA/ET signaling, impacting disease resistance in maize.
Transcriptomic analysis revealed inhibited expression of key defense genes in ZmNLR-7 mutants.
Abstract
The rapid evolution of pathogens and the limited genetic diversity of hosts are two major factors contributing to the plant pathogenic phenomenon known as the loss of disease resistance in maize (Zea mays L.). It has emerged as a significant biological stressor threatening the global food supplies and security. Based on previous cross-species homologous gene screening assays conducted in the laboratory, this study identified the maize disease-resistance candidate gene ZmNLR-7 to investigate the maize immune regulation mechanism against Bipolaris maydis. Subcellular localization assays confirmed that the ZmNLR-7 protein is localized in the plasma membrane and nucleus, and phylogenetic analysis revealed that it contains a conserved NB-ARC domain. Analysis of tissue expression patterns revealed that ZmNLR-7 was expressed in all maize tissues, with the highest expression level (5.11 times)…
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Taxonomy
TopicsPlant-Microbe Interactions and Immunity · Plant Stress Responses and Tolerance · Plant Pathogenic Bacteria Studies
