生物
茉莉酸
夜蛾
球孢白僵菌
植物对草食的防御
球孢菌
基因沉默
水杨酸
斜纹夜蛾
内生菌
植物
微生物学
基因
幼虫
生物病虫害防治
生物化学
重组DNA
作者
Raufa Batool,Gou Xuelian,Hui Dong,Xiuzhen Long,Muhammad Jawad Umer,Ivan Rwomushana,Abid Ali,Kotb A. Attia,Guo JingFei,Zhenying Wang
摘要
Abstract Seed priming with beneficial endophytic fungi is an emerging sustainable strategy for enhancing plant resistance against insect pests. This study examined the effects of Beauvaria bassiana Bb20091317 and Metarhizium rileyi MrCDTLJ1 fungal colonization on maize growth, defence signalling, benzoxazinoid levels and gene expression. The colonization did not adversely affect plant growth but reduced larval weights of Spodoptera frugiperda . Maize leaves treated with M. rileyi exhibited higher levels of jasmonic acid, jasmonoyl‐Isoleucine, salicylic acid, and indole acetic acid compared to control. B. bassiana and M. rileyi accelerated phytohormone increase upon S. frugiperda herbivory. Gene expression analysis revealed modulation of benzoxazinoid biosynthesis genes. We further elucidated the immune regulatory role of the transcription factor zmWRKY36 using virus‐induced gene silencing (VIGS) in maize. zmWRKY36 positively regulates maize immunity against S. frugiperda, likely by interacting with defense‐related proteins. Transient overexpression of zmWRKY36 in tobacco‐induced cell death, while silencing in maize reduced chitin‐triggered reactive oxygen species burst, confirming its immune function. Overall, B. bassiana and M. rileyi successfully colonized maize, impacting larval growth, defense signalling, and zmWRKY36 ‐mediated resistance. This sheds light on maize‐endophyte‐insect interactions for sustainable plant protection.
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