Fusarium ear rot (FER), caused by Fusarium verticillioides, results in substantial yield losses and poses a significant threat to maize production worldwide. However, the genetic basis of FER resistance remains poorly understood. Utilizing QTL-seq and association analysis, we identified a gene encoding UDP-á´ -glucuronate 4-epimerase 1 (ZmGAE1). A 141-base pair insertion was revealed as the natural functional variation in the promoter of ZmGAE1, which decreases its expression and enhances resistance to FER. Functional validation confirmed that ZmGAE1 acts as a negative regulator of maize resistance to FER. Notably, reduced ZmGAE1 accumulation not only improved FER resistance but also lowered fumonisin content. This effect was attributed to increased cell density within the down-placenta chalaza region, accompanied by the accumulation of galacturonic acid and pectin. Crucially, lines lacking ZmGAE1 exhibited no adverse effects on key agronomic traits and showed resistance to multiple diseases, including maize stalk rot, southern leaf blight, and seed rot. These findings highlight ZmGAE1 as a promising candidate for improving FER resistance in maize, offering a novel approach for crop protection and sustainable agriculture.
An InDel insertion in the promoter of a UDP-á´ -glucuronate 4-epimerase 1 gene enhances maize resistance to Fusarium ear rot.
UDP-α'-葡萄糖醛酸4-差向异构酶1基因启动子中的InDel插入增强了玉米对镰刀菌穗腐病的抗性
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作者:Dong Chaopei, Wu Yabin, Gao Jingyang, Song Yunxia, Wu Zhaokun, Wang Zhao, He Jianju, Yu Qian, Zhao Zhonghuan, Cao Mengya, Zhang Ronghui, Song Weibin, Zhang Xuecai, Jing Pei, Sun Doudou, Zhang Huiyong, Zhou Zijian, Chen Jiafa, Wu Jianyu
| 期刊: | Plant Communications | 影响因子: | 11.600 |
| 时间: | 2025 | 起止号: | 2025 Jul 14; 6(7):101380 |
| doi: | 10.1016/j.xplc.2025.101380 | 研究方向: | 其它 |
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