Insecticidal efficacy and risk assessment of different neuropeptide analog combinations against the peach-potato aphid following topical exposure

Yan Shi, Hao Li, Ronald J Nachman, Tong-Xian Liu, Guy Smagghe

Research output: Contribution to journalArticlepeer-review

6 Citations (Scopus)
23 Downloads (Pure)

Abstract

BACKGROUND: Insect neuropeptides control essential physiological metabolic activities. In our previous studies, Capability/CAP2b (PK/CAPA) analog 1895 applied alone or as a combination of CAPA analogs (1895 + 2315) was reported to decrease aphid fitness. While this was obtained with the combination of two peptide analogs of the same neuropeptide class, the effect of combining peptide analogs of different neuropeptide classes has not been explored so far.

RESULTS: In this study, we assessed the effect of combinations of the PK/CAPA analog 1895 with neuropeptide analogs of four different classes [adipokinetic hormone (AKH) analog: 2271; myosuppressin analog: 2434; kinin analog: 2460; tachykinin-related peptide analog: 2463] on the fitness of aphids. We found that the combination of 1895 and AKH analog 2271 was the most effective one to control Myzus persicae. The triple combination 1895 + 2271 + 2315 provided a synergistic effect by further increasing aphid mortality and reducing reproduction relative to 1895 + 2315. Additionally, a biosafety assessment of the combination 1895 + 2271 + 2315 showed no significant lethal nor sub-lethal effects on survival rates and food intake for the pollinator (Bombus terrestris) and the two representative natural enemies (Harmonia axyridis and Nasonia vitripennis).

CONCLUSION: These results could facilitate establishment of the triple combination 1895 + 2271 + 2315, and/or inclusion of second generation analogs, as alternatives to broad spectrum and less friendly insecticides. © 2022 Society of Chemical Industry.

Original languageEnglish
Pages (from-to)226-233
Number of pages8
JournalPest Management Science
Volume79
Issue number1
Publication statusPublished - Jan 2023

Bibliographical note

© 2022 Society of Chemical Industry.

Keywords

  • Bees
  • Animals
  • Insecticides/pharmacology
  • Reproduction
  • Neuropeptides/pharmacology
  • Risk Assessment
  • Peptides

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