ICAR─National Rice Research Institute, Cuttack 753006, Odisha, India.
J Agric Food Chem. 2024 Oct 23;72(42):23151-23159. doi: 10.1021/acs.jafc.4c05638. Epub 2024 Oct 9.
Yellow stem borer (YSB), , is a major rice pest causing significant yield losses worldwide. We investigated how volatile organic compounds (VOCs) released by the rice variety TN1, both before and after infestation, as well as by its companion weeds, and , influence the behavior of YSB in host selection, recognition, and establishment. Olfactometry bioassays showed that uninfested TN1 plant VOCs attracted YSB more than those from YSB-infested rice plants and weeds. Changes in the VOC profile of TN1 during 24-48 h post-YSB infestation revealed that these postalighting compounds may deter YSB oviposition. Xylene, cymene, 1,2,3,4-tetrahydro naphthalene, dodecanol, and tetradecanol could be possible YSB attractants based on metabolomics, olfactometry, and GC-EAD studies. This work illuminates rice plant-YSB chemical interactions and VOCs dynamic function in attraction and defense processes. These findings provide a foundation for developing VOC-based pest management strategies to mitigate yield losses in rice farming.
褐飞虱是一种主要的水稻害虫,在世界范围内造成了重大的产量损失。我们研究了水稻品种 TN1 在被褐飞虱侵害前后以及其伴生杂草 和 释放的挥发性有机化合物(VOCs)如何影响褐飞虱在宿主选择、识别和建立方面的行为。嗅觉生物测定表明,未受侵害的 TN1 植物 VOCs 比受侵害的水稻和杂草植物 VOCs 更能吸引褐飞虱。TN1 在遭受褐飞虱侵害后 24-48 小时内 VOC 谱的变化表明,这些后光照化合物可能会阻止褐飞虱产卵。根据代谢组学、嗅觉测定和 GC-EAD 研究,二甲苯、伞花烃、1,2,3,4-四氢萘、十二醇和十四醇可能是褐飞虱的引诱剂。这项工作阐明了水稻-褐飞虱化学相互作用以及 VOC 在吸引和防御过程中的动态功能。这些发现为开发基于 VOC 的害虫管理策略提供了基础,以减轻水稻种植中的产量损失。