• Title/Summary/Keyword: Sex pheromone biosynthesis

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Sex Pheromone Biosynthesis in the Legume Pod Borer, Maruca vitrata (Lepidoptera: Crambidae) (콩명나방의 성페로몬 생합성)

  • Cha, Wook Hyun;Park, Jung Jun;Lee, Dae-Weon
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.29-34
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    • 2022
  • Pheromone biosynthesis in the pheromone gland is triggered from release of pheromone biosynthesis-activating neuropeptide (PBAN) synthesized in the suboesophageal ganglion. PBAN binds to its receptor on the epithelial cell membrane and activates signal transduction pathways for the pheromone biosynthesis. This study reviews sex pheromone, PBAN and its receptor, and pheromone biosynthesis pathway of Maruca vitrata.

Pheromone Biosynthesis Activating Neuropeptide (PBAN) in Insects (곤충의 페로몬 생합성 활성화 신경펩타이드(PBAN))

  • Choi, Man-yeon
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.15-28
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    • 2022
  • Neuropeptides produced in neurosecretory cells are the largest group of insect hormones. They regulate various physiological functions, such as fat body homeostasis, feeding, digestion, excretion, circulation, reproduction, metamorphosis, and behavior throughout all life stages. The PRXamide peptide family (X, a variable amino acid) is a well-characterized neuropeptide component with a common amino acid sequence, PRXamide (NH2), at the C-terminal end conserved across Insecta. The PRXamide peptides are classified into three subfamilies, each having diverse biological roles in insects: (1) pyrokinin (PK) includes the pheromone biosynthesis activating neuropeptide (PBAN) and the diapause hormone (DH), (2) the capability (CAPA) peptides, and (3) the ecdysis-triggering hormone (ETH). PBAN as a member of PK subfamily was first identified to stimulate pheromone biosynthesis in moths three decades ago. Since then, PBAN peptides have been extensively studied by various research groups from a broad spectrum of arthropods. In this paper, we briefly review insect PBAN molecules with emphasis on gene structure and expression, signal transduction, physiological mechanism in sex pheromone biosynthesis, and application for pest management.

Mating Disruption of Grapholita molesta by RNA Interference of a Fatty Acid Desaturase Expressed in Adult Abdomen (복숭아순나방 성충 복부에서 발현하는 불포화효소의 RNA 간섭과 교미교란)

  • Kim, Kyusoon;Jung, Chung Ryul;Yang, Chang Yeol;Kwon, Gimyeon;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.56 no.1
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    • pp.61-67
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    • 2017
  • Two major sex pheromone components (Z-8-dodecenyl acetate and E-8-dodecenyl acetate) are known in the peach fruit moth, Grapholita molesta. From a putative biosynthetic pathway of these sex pheromone components, delta 10 desaturase ($10{\Delta}$ DES) has been proposed to play a crucial role in synthesizing a species-specific stereoisomer of the double bond. However, its molecular identity was not known. This study determined a putative desaturase (Gm-comp1575) as a $10{\Delta}$ DES candidate from G. molesta transcriptome constructed from the sex pheromone gland. Its open reading frame encodes 370 amino acid sequence with a predicted molecular weight at 43.2 kDa and isoelectric point at 8.77. It was predicted to have four transmembrane domains and six glycosylation sites at N-terminal or cytosolic domains. A phylogenetic analysis with its predicted amino acid sequence indicated that Gm-comp1575 is closely related with known $10{\Delta}$ DES genes of other insects. Gm-comp1575 transcript was detected in female adults at sex pheromone gland and other abdominal tissues. RNA interference of Gm-comp1575 significantly reduced attractiveness of virgin females in apple orchard compared to control females. These results suggest that Gm-comp1575 is associated with sex pheromone biosynthesis of G. molesta.