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通过天敌的寄主转换特性构建 banker 植物系统

Construction of a Banker Plant System via the Host Switch Trait of a Natural Enemy .

作者信息

Zhang Juan, Huang Jun, Tang Yayuan, Lu Yaobin, Zhou Zhongshi

机构信息

Institute of Garden Plants and Flowers, Zhejiang Academy of Agricultural Sciences, Hangzhou 311251, China.

State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agricultural Products, Key Laboratory of Biotechnology in Plant Protection of MOA of China and Zhejiang Province, Institute of Plant Protection and Microbiology, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.

出版信息

Life (Basel). 2023 Oct 25;13(11):2115. doi: 10.3390/life13112115.

Abstract

Understanding the most effective host switch patterns in parasitic wasps, specifically (AB), is crucial for effectively controlling pests like (PSS). This study aims to elucidate AB's ideal host switch pattern and assess its utility in maintaining synchronization between AB and PSS, thereby aiding in PSS control. We examined various host switch patterns and cycles to evaluate their impact on AB's offspring's parasitism rates and fitness in laboratory conditions. Concurrently, we assessed the fitness of both PSS and AB on tomato plants using different banker plant systems to maintain field synchronization. Results indicate that the three-repeat T1 host switch pattern of PSS- (PSI)-PSS was the most effective. Additionally, a specific banker plant system, "System B", which provided succulent plants hosting PSI, was optimal for synchronizing AB and PSS in a summer greenhouse setting. Our findings underscore the importance of employing specific host switch patterns and banker plant systems to effectively control PSS in the field. This research offers foundational data for incorporating a banker plant system into integrated pest management strategies for enhanced PSS control.

摘要

了解寄生蜂中最有效的寄主转换模式,特别是(AB),对于有效控制像(PSS)这样的害虫至关重要。本研究旨在阐明AB的理想寄主转换模式,并评估其在维持AB与PSS同步方面的效用,从而有助于控制PSS。我们研究了各种寄主转换模式和周期,以评估它们在实验室条件下对AB后代寄生率和适合度的影响。同时,我们使用不同的替代植物系统评估了PSS和AB在番茄植株上的适合度,以维持田间同步。结果表明,PSS - (PSI) - PSS的三重复T1寄主转换模式最为有效。此外,一种特定的替代植物系统“系统B”,它提供了承载PSI的多汁植物,在夏季温室环境中最适合使AB和PSS同步。我们的研究结果强调了采用特定的寄主转换模式和替代植物系统来在田间有效控制PSS的重要性。这项研究为将替代植物系统纳入害虫综合管理策略以加强PSS控制提供了基础数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c57/10672032/64daaf7bae68/life-13-02115-g001.jpg

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