Correlation Engine 2.0
Clear Search sequence regions


  • adults (1)
  • female (3)
  • ferritin (8)
  • genes expressed (1)
  • hemiptera (1)
  • insect (3)
  • light (1)
  • mortality (3)
  • nymph (1)
  • oocyte (1)
  • oryza (1)
  • ovaries (1)
  • phenotypes (1)
  • rna (5)
  • soma (1)
  • target genes (1)
  • Sizes of these terms reflect their relevance to your search.

    The brown planthopper (BPH), Nilaparvata lugens, is the most destructive rice insect pest. To exploit potential target genes for applications in transgenic rice to control this sap-sucking insect pest, three ferritin genes were functionally characterized in this study. In this study, three ferritin genes, that is, ferritin 1 Heavy Chain (NlFer1), ferritin 2 Light Chain (NlFer2) and soma ferritin (Nlsoma-Fer), were identified from BPH. Tissue-specific analyses showed that all three genes were highly expressed in the gut. Although double-stranded RNA injection-mediated RNA inference (RNAi) of Nlsoma-Fer expression resulted in only < 14% mortality in BPH, knockdown of NlFer1 or NlFer2 led to retarded growth and 100% mortality in young nymphs, and downregulation of NlFer1 and NlFer2 in newly emerged female adults caused undeveloped ovaries and severely inhibited oocyte growth, resulting in extremely low fecundity and a zero hatching rate. Knockdown of NlFer1 and NlFer2 caused similar phenotypes in BPH, indicating that they function together, as in many other animals. The results demonstrated that NlFer1 and NlFer2 were essential for BPH development and reproduction. BPHs showed high sensitivity to both dsNlFer1 and dsNlFer2, and injection of only 0.625 ng dsNlFer1 per BPH resulted in 100% mortality. Additionally, the effectiveness of feeding dsNlFer1 and dsNlFer2 to BPH nymphs was further proven. NlFer1 and NlFer2 are essential for BPH development and reproduction, and the insect is highly sensitive to their depletion, suggesting that the two gut-highly-expressed genes are promising candidates for application in RNAi-based control of this destructive pest. © 2020 Society of Chemical Industry.

    Citation

    Yan Shen, Yuan-Zhi Chen, Chuan-Xi Zhang. RNAi-mediated silencing of ferritin genes in the brown planthopper Nilaparvata lugens affects survival, growth and female fecundity. Pest management science. 2021 Jan;77(1):365-377

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 32741141

    View Full Text