4.7 Article

Activation of the ROS/CncC and 20-Hydroxyecdysone Signaling Pathways Is Associated with Xanthotoxin-Induced Tolerance to λ-Cyhalothrin in Spodoptera litura

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 69, Issue 45, Pages 13425-13435

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.1c04519

Keywords

Spodoptera litura; phytochemical; insecticide tolerance; reactive oxygen species; ecdysone

Funding

  1. National Natural Science Foundation of China [32172411, 31601634, 31770474, 31870361, 31971833, U2005208]
  2. Natural Science Foundation of Fujian Province [2021J01089, 2020J02030]

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The ingestion of xanthotoxin enhanced the tolerance of Spodoptera litura larvae to lambda-cyhalothrin by upregulating detoxification genes and transcription factors. This study also revealed the involvement of ROS/CncC pathway and 20E signaling pathway in the induction of metabolic detoxification upon exposure to xanthotoxin.
Adaptation to phytochemicals in herbivorous insects can influence tolerance to insecticides. However, it is unclear how insects use phytochemicals as cues to activate their metabolic detoxification systems. In this study, we found that dietary exposure to xanthotoxin enhanced tolerance of Spodoptera litura larvae to lambda-cyhalothrin. Xanthotoxin ingestion significantly elevated the mRNA levels of 35 detoxification genes as well as the transcription factors Cap 'n' collar isoform-C (CncC) and its binding factor small muscle aponeurosis fibromatosis isoform-K (MafK). Additionally, xanthotoxin exposure increased the levels of reactive oxygen species (ROS), while ROS inhibitor N-acetylcysteine (NAC) treatment blocked xanthotoxin-induced expression of CncC, MafK, and detoxification genes and also prevented xanthotoxin-enhanced larval tolerance to lambda-cyhalothrin. The 20-hydroxyecdysone (20E) signaling pathway was effectively activated by xanthotoxin, while blocking of 20E signaling transduction prevented xanthotoxin-enhanced larval tolerance to lambda-cyhalothrin. Application of 20E induced the expression of multiple xanthotoxin-induced detoxification genes and enhanced lambda-cyhalothrin tolerance in S. litura. NAC treatment blocked xanthotoxin-induced 20E synthesis, while the CncC agonist curcumin activated the 20E signaling pathway. These results indicate that the ROS/CncC pathway controls the induction of metabolic detoxification upon exposure to xanthotoxin, at least in part, through its regulation of the 20E signaling pathway.

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