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首页> 外文期刊>Pest Management Science >The feeding behavior and life history changes in imidacloprid-resistant Aphis gossypii glover (Homoptera: Aphididae)
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The feeding behavior and life history changes in imidacloprid-resistant Aphis gossypii glover (Homoptera: Aphididae)

机译:含吡虫啉抗性APHIS Gossypii Glover(Homoptera:蚜虫)的饲养行为和寿命变化

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摘要

BACKGROUND Imidacloprid (IMI) is a major neonicotinoid insecticide used to control Aphis gossypii Glover. However, resistance to IMI developed rapidly in A. gossypii. The feeding behavior and life history changes associated with IMI resistance were studied in A. gossypii. RESULTS The resistant population with a point mutation (R81T) in the nAChR beta 1 subunit showed an IMI resistance ratio of 58.12. This IMI-resistant A. gossypii became more active in finding an appropriate position for feeding. They made more intercellular apoplastic stylet pathway events (C) than the susceptible population. Moreover, the probing and feeding behavior of two aphid populations were dramatically altered by IMI. The phloem ingestion (E2) duration was significantly longer for IMI-resistant aphids on IMI-treated plants (WDI: 208.70 +/- 17.38 min) than on control plants (WDI: 133.80 +/- 16.37 min). However, IMI statistically reduced the ability of susceptible aphids to find and feed from the phloem. The number and duration of phloem-related activities were sharply decreased for the susceptible aphids treated with IMI. In addition, the resistant population showed an increased relative fitness of 1.36. The fecundity of IMI-resistant adults was dramatically higher than that of the susceptible population. This difference also led to an increase in the net reproductive rate (R-0) for the IMI-resistant A. gossypii. CONCLUSIONS Imidacloprid provoked phloem-feeding more rapidly and effectively in IMI-resistant A. gossypii, but significantly suppressed the feeding of susceptible A. gossypii. Therefore, the resistance to IMI can result in stimulated feeding and fecundity and subsequent population outbreaks, which make the control of IMI-resistant A. gossypii more challenging. (c) 2019 Society of Chemical Industry
机译:背景技术ImidaCloprid(IMI)是用于控制APHIS Gossypii Glover的主要新烟碱杀虫剂。然而,对IMI的抵抗力在A. Gossypii中迅速发展。在A. Gossypii中研究了与IMI抗性相关的饲养行为和寿命历史变化。结果NACHRβ1亚基中具有点突变(R81T)的抗性群体显示为58.12的IMI电阻比。这种IMI抗性A. Gossypii在找到适当的喂养位置时变得更加活跃。它们使细胞间静脉曲张型探针途径(c)制成更多细胞间的静脉曲张的途径比易感群体。此外,IMI显着改变了两个蚜虫种群的探测和喂养行为。对于IMI处理的植物(WDI:208.70 +/- 17.38分钟)的IMI抗性蚜虫(WDI:133.80 +/-16.37分钟),抑制抑制蚜虫(E2)持续时间明显更长。然而,IMI统计地降低了敏感蚜虫从韧皮症寻找和饲料的能力。用IMI治疗的易感蚜虫症的数量和持续时间急剧下降。此外,抗性群体显示出1.36的相对适应性增加。 IMI抗性成年人的繁殖力显着高于易感群体。这种差异也导致IMI抗性A. Gossypii的净生殖率(R-0)增加。结论ImidaCloprid在IMI抗性A. Gossypii中更快,有效地激发了韧皮喂养,但显着抑制了易感A. Gossypii的饲养。因此,对IMI的抗性可能导致刺激的饲养和繁殖力和随后的群体爆发,这使得控制IMI抗性A. Gossypii更具挑战性。 (c)2019年化学工业协会

著录项

  • 来源
    《Pest Management Science》 |2020年第4期|共11页
  • 作者单位

    Chinese Acad Agr Sci Key Lab Integrated Pest Management Crops Minist Agr Inst Plant Protect Beijing 100193 Peoples R China;

    Chinese Acad Agr Sci Key Lab Integrated Pest Management Crops Minist Agr Inst Plant Protect Beijing 100193 Peoples R China;

    Chinese Acad Agr Sci Key Lab Integrated Pest Management Crops Minist Agr Inst Plant Protect Beijing 100193 Peoples R China;

    Chinese Acad Agr Sci Key Lab Integrated Pest Management Crops Minist Agr Inst Plant Protect Beijing 100193 Peoples R China;

    Chinese Acad Agr Sci Key Lab Integrated Pest Management Crops Minist Agr Inst Plant Protect Beijing 100193 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

    Aphis gossypii; EPGs; fitness; imidacloprid-resistance; life table;

    机译:Aphis gossypii;epgs;健身;咪酸化抗性;生活表;

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