首页> 外文期刊>Ecological Complexity >Development of a stage-structured process-based predator-prey model to analyse biological control of cotton aphid, Aphis gossypii, by the sevenspot ladybeetle, Coccinella septempunctata, in cotton
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Development of a stage-structured process-based predator-prey model to analyse biological control of cotton aphid, Aphis gossypii, by the sevenspot ladybeetle, Coccinella septempunctata, in cotton

机译:开发基于阶段结构的基于过程的捕食者-捕食者模型,以分析七斑瓢虫Coccinella septempunctata对棉花蚜虫​​的生物学控制

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摘要

Agricultural system diversification is well known to affect the population dynamics of crop pests, but predator-prey dynamics in crop systems are difficult to analyse due to interactions between multiple life stages of predator and prey, the modulating effect of temperature, the actions of additional predators, and the open nature of the system, with immigration and emigration of both predators and prey. To better understand and characterize the predator-prey system dynamics under field conditions, we developed a detailed process-based simulation model for the stage structured population interaction between cotton aphid, Aphis gossypii, and its main natural enemy, the sevenspot ladybeetle Coccinella septempunctata. The model includes interactions between all insects stages as affected by temperature and host growth, and was parameterized based on detailed data collection in the laboratory and the field. The model was tested with independent data. Simulations show that the initial predator-prey ratio, as affected by immigration rates of the aphid and the predators into the crop, is the key factor for biological control. The model is a useful tool for scenario assessments on the effects of crop diversification on pest-natural enemy dynamics. (C) 2017 Elsevier B.V. All rights reserved.
机译:众所周知,农业系统的多样化会影响农作物害虫的种群动态,但是由于捕食者和猎物的多个生命阶段之间的相互作用,温度的调节作用,其他捕食者的行为,农作物系统中的捕食者-猎物动态难以分析。 ,以及该系统的开放性,捕食者和猎物都有移民和移民。为了更好地了解和表征野外条件下的捕食者-猎物系统动力学,我们针对棉蚜,蚜虫及其主要天敌七斑瓢虫瓢虫(Coccinella septempuncttata)之间的阶段结构化种群相互作用,开发了基于过程的详细模拟模型。该模型包括受温度和寄主生长影响的所有昆虫阶段之间的相互作用,并根据实验室和现场的详细数据收集对其进行了参数化。该模型已使用独立数据进行了测试。模拟表明,受到蚜虫和天敌进入作物的迁移率的影响,初始天敌的捕食比是生物防治的关键因素。该模型是用于评估作物多样化对有害生物天敌动态影响的情景评估的有用工具。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Ecological Complexity》 |2018年第1期|11-30|共20页
  • 作者单位

    Chinese Acad Agr Sci, China Cotton Res Inst, Anyang 455112, Henan, Peoples R China;

    China Agr Univ, Coll Resources & Environm Sci, 2 Yuanmingyuan West Rd, Beijing 100193, Peoples R China;

    Chinese Acad Agr Sci, China Cotton Res Inst, Anyang 455112, Henan, Peoples R China;

    Wageningen Univ, Dept Plant Sci, Plant Prod Syst Grp, POB 430, NL-6700 AK Wageningen, Netherlands;

    Wageningen Univ & Res Ctr, POB 9101, NL-6700 HB Wageningen, Netherlands;

    Wageningen Univ, Dept Plant Sci, Ctr Crop Syst Anal, POB 430, NL-6700 AK Wageningen, Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    predator-prey dynamics; Simulation model; Laboratory; Cage studies; Field experiments;

    机译:捕食-被捕食动力学;模拟模型;实验室;笼子研究;野外实验;

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