三种杜鹃花栽培品种对杜鹃花蕾丝蝽(Stephanitis pyrioides)的代谢组反应比较

Plants Pub Date : 2024-09-13 DOI:10.3390/plants13182569
Bei He, Yuan Zhou, Yu Peng, Dongyun Xu, Jun Tong, Yanfang Dong, Linchuan Fang, Jing Mao
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引用次数: 0

摘要

杜鹃花具有很高的观赏价值和生态效益,但其主要害虫之一杜鹃花蕾丝蝽(Stephanitis pyrioides)却对其造成了严重影响。本研究利用'紫鹤'、'艳紫'和'泰乐'三个杜鹃花栽培品种,采用顶空固相微萃取结合气相色谱-质谱联用仪(HS-SPME/GCMS)和液相色谱-质谱联用仪(LCMS)对杜鹃花蕾丝蝽胁迫前后的叶片样本进行了非靶标代谢组学分析。共检测到 11 类 81 种挥发性代谢物和 55 类 448 种非挥发性代谢物。害虫胁迫后,不同栽培品种的代谢特征存在显著差异。最易感的栽培品种'紫河'共有 47 种挥发性化合物和 49 种非挥发性代谢物上调,其中包括萜烯类、醇类、核苷酸、氨基酸和碳水化合物,它们都参与了能量生产和次生代谢。相反,在虫害胁迫下,'艳紫'的差异挥发性物质以及与嘌呤代谢和玉米素生物合成有关的代谢物均呈下降趋势。抗性栽培品种 "泰乐 "表现出中等程度的变化,17 种挥发性化合物和 17 种非挥发性化合物在氨基酸的生物合成、戊糖、葡萄糖醛酸的相互转化、碳代谢等方面上调和富集。苯丙氨酸代谢途径在不同感病栽培品种的害虫抗性中发挥了重要作用,苯乙醇、水杨酸甲酯、芹菜素等相关代谢产物可能参与了植物的抗性反应。该研究结果为杜鹃花与昆虫相互作用的代谢组学提供了一个新的视角,为制定害虫控制策略提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Metabolomic Responses of Three Rhododendron Cultivars to the Azalea Lace Bug (Stephanitis pyrioides)
Rhododendron, with its high ornamental value and ecological benefits, is severely impacted by the azalea lace bug (Stephanitis pyrioides), one of its primary pests. This study utilized three Rhododendron cultivars, ‘Zihe’, ‘Yanzhimi’, and ‘Taile’, to conduct a non-targeted metabolomic analysis of leaf samples before and after azalea lace bug stress using headspace solid-phase microextraction combined with gas chromatography–mass spectrometry (HS-SPME/GCMS) and liquid chromatography–mass spectrometry (LCMS). A total of 81 volatile metabolites across 11 categories and 448 nonvolatile metabolites across 55 categories were detected. Significant differences in metabolic profiles were observed among the different cultivars after pest stress. A total of 47 volatile compounds and 49 nonvolatile metabolites were upregulated in the most susceptible cultivar ‘Zihe’, including terpenes, alcohols, nucleotides, amino acids, and carbohydrates, which are involved in energy production and secondary metabolism. Conversely, ‘Yanzhimi’ showed a downtrend in both the differential volatiles and metabolites related to purine metabolism and zeatin biosynthesis under pest stress. The resistant cultivar ‘Taile’ exhibited moderate changes, with 17 volatile compounds and 17 nonvolatile compounds being upregulated and enriched in the biosynthesis of amino acids, pentose, glucuronate interconversions, carbon metabolism, etc. The phenylalanine metabolic pathway played an important role in the pest resistance of different susceptible cultivars, and relevant metabolites such as phenylethyl alcohol, methyl salicylate, and apigenin may be involved in the plant’s resistance response. The results of this study provide a new perspective on the metabolomics of Rhododendron–insect interactions and offer references for the development of pest control strategies.
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