水杨酸甲酯处理能提高油菜的觅食能力,并呈浓度依赖性。

Bilal Ahmad, Jamin Ali, Aleena Alam, Sohail Abbas, Jing Xuan Huang, Jianye Zhao, Muhammad Ameer Hamza, Azhar Ali, Khalid Ali Khan, Hamed A Ghramh, Adil Tonğa, Qianfu Su, Li Qiyun, Rizhao Chen
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摘要

蚜虫(半翅目:蚜虫科)以植物组织为食,传播病毒,降低农业生产力,对作物造成严重损害。与化学防治方法相关的挑战,如害虫抗性的发展和不利的环境影响,突出表明需要提高天敌的功效,以实现可持续的虫害管理。水杨酸甲酯(MeSA)在使用诱捕器和缓释包进行虫害管理方面已得到广泛研究;然而,其在通过诱导植物防御增强天敌行为中的作用仍未得到充分探索。本研究研究了施用MeSA对两种主要防虫剂(鞘翅目:瓢虫科)和gifuensis Ashmead(膜翅目:小蜂科)行为和性能的影响。我们假设MeSA以浓度依赖的方式增强天敌的吸引力。为了验证这一点,使用了4种MeSA浓度(25、50、75和100 mg/L),对照植物使用去离子水处理。然后进行生物测定,以评估捕食者偏好、寄生率、觅食行为和嗅觉反应。结果表明,经mesa处理的植物对天敌的吸引作用显著,浓度越高,效果越显著。具体而言,MeSA增加了寄生率,提高了捕食者的觅食效率,并提高了捕食者对处理过的植物的偏好。本研究表明,MeSA可以通过提高害虫对桃蚜的防治效果来提高桃蚜的生物防治策略。该研究结果强调了应用MeSA处理通过诱导植物防御来增加生物防治剂招募的潜力,为害虫管理计划中减少蚜虫侵害提供了一种可持续的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Brassica rapa treatments with methyl salicylate enhance foraging capacity of generalist natural enemies in a concentration-dependent manner.

The aphid Myzus persicae Sulzer (Hemiptera: Aphididae) causes significant crop damage by feeding on plant tissues, transmitting viruses, and reducing agricultural productivity. Challenges associated with chemical control methods, such as the development of pest resistance and adverse environmental impacts, highlight the need to enhance the efficacy of natural enemies for sustainable pest management. Methyl salicylate (MeSA) has been extensively studied in pest management using baited traps and slow-release packets; however, its role in enhancing natural enemy behavior through induced plant defenses remains underexplored. This study examines the effect of MeSA applied to Brassica rapa (Brassicales: Brassicaceae) on the behavior and performance of 2 key biocontrol agents, Harmonia axyridis Pallas (Coleoptera: Coccinellidae) and Aphidius gifuensis Ashmead (Hymenoptera: Braconidae). We hypothesized that MeSA enhances the attraction of natural enemies in a concentration-dependent manner. To test this, 4 MeSA concentrations (25, 50, 75, and 100 mg/L) were applied, with control plants treated using deionized water. Bioassays were then conducted to evaluate predator preferences, parasitism rates, foraging behavior, and behavioral responses in the olfactometer. Results showed that MeSA-treated plants significantly attract natural enemies, with pronounced effects at higher concentrations. Specifically, MeSA increased parasitism rates, improved predator foraging efficiency, and heightened predator preference for treated plants. This study demonstrates the potential of MeSA in enhancing biological control strategies against M. persicae by improving the efficacy of natural enemies. The findings highlight the potential of applying MeSA treatment to enhance the recruitment of biological control agents by inducing plant defenses, offering a sustainable approach to reducing aphid infestations in pest management programs.

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