4.6 Article

Trehalase is required for sex pheromone biosynthesis in Helicoverpa armigera

期刊

INSECT MOLECULAR BIOLOGY
卷 31, 期 3, 页码 334-345

出版社

WILEY
DOI: 10.1111/imb.12762

关键词

cAMP; PKA; Helicoverpa armigera; sex pheromone; trehalase

资金

  1. Henan Agricultural University Natural Science Youth Innovation Fund [KJCX2017A11, KJCX2018A02]
  2. Henan Agricultural Research System [S2014-11-G06]
  3. Henan Youth Talent Support Project [2022HYTP030]
  4. Key Scientific Research Projects of Universities in Henan Province [22A210005]
  5. National Natural Science Foundation of China [31772536]
  6. National Science fund of Henan Province for Distinguished Young scholar [202300410191]
  7. Science and Technology Project in Henan Province [212102110463]
  8. Basic Research Project of the Key Scientific Research Projects of Universities in Henan Province [21zx013]
  9. Earmarked Fund for China Agricultural Research System [CARS-27]

向作者/读者索取更多资源

This study revealed that PBAN activates the activities of Treh1/2, promotes glycolysis to ensure the supply of acetyl-CoA, and ultimately facilitates sex pheromone biosynthesis and mating behavior in Helicoverpa armigera.
Trehalase (Treh) hydrolyzes trehalose to generate glucose and it plays important role in many physiological processes. Acetyl-CoA, the precursor of sex pheromone biosynthesis in the pheromone gland (PG) of Helicoverpa armigera, originates from glucose during glycolysis. However, the function of Treh in sex pheromone biosynthesis remains elusive. In the present study, H. armigera was used as a model to investigate the function of two Trehs (Treh1 and Treh2) in sex pheromone biosynthesis. Results demonstrated that knockdown of HaTreh1 or HaTreh2 in female PGs led to significant decreases in Z11-16:Ald production, female ability to attract males, and successful mating proportions. Pheromone biosynthesis activating neuropeptide (PBAN) treatment triggered HaTreh1 and HaTreh2 activities in the isolated PGs and Sf9 cells. However, the activities of HaTreh1 and HaTreh2 triggered by PBAN were offset by H-89, the specific inhibitor of protein kinase A (PKA). Furthermore, the H-89 treatment significantly decreased the phosphorylation level of Trhe2, which was induced by PBAN. In addition, sugar feeding (5% sugar) increased the enzyme activities of Treh1 and Treh2. In summary, our findings confirmed that PBAN activates Treh1/2 activities by recruiting cAMP/PKA signalling, promotes glycolysis to ensure the supply of acetyl-CoA, and ultimately facilitates sex pheromone biosynthesis and mating behaviour.

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