4.7 Article

Role of Groucho and Groucho1-like in Regulating Metamorphosis and Ovary Development in Nilaparvata lugens (Stal)

Journal

Publisher

MDPI
DOI: 10.3390/ijms23031197

Keywords

Nilaparvata lugens; juvenile hormone; Ecdysone; NlGroucho; NlGroucho1-like

Funding

  1. National Natural Science Foundation of China [32172390, 1672023, 31741107]
  2. Natural Science Foundation of Zhejiang Province [LZ20C140002]

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This study investigates the function of NlGro and NlGro1-L in the brown planthopper and their relationship with the JH/ecdysone signaling pathway. It was found that NlGro and NlGro1-L interact genetically with juvenile hormone and ecdysone signaling and their down-regulation affects survival, ovarian development, and oviposition in the brown planthopper.
Juvenile hormone and ecdysone are key regulators in the metamorphosis and development. Grocho (Gro) is a highly conserved protein required for metamorphosis and development. Brown planthopper (Nilaparvata lugens) is a major pest affecting rice production in China and many Asian countries. Although the molecular function of Gro has been investigated in holometabolous insects such as Aedes aegypti and Drosophila melanogaster, their role in the hemimetabolous insect, brown planthopper, and the relationship between NlGro/NlGro1-L and JH/ecdysone signaling pathway, remained unknown. In this study, NlGroucho (NlGro) and NlGroucho1-like (NlGro1-L) were cloned. An analysis of the predicted protein sequence showed that NlGro has highly conserved Q domain and WD40 domain, and NlGro1-L has a highly conserved WD40 domain. The expression profiles of both genes were studied by quantitative real-time PCR (qRT-PCR). Their relative expressions were high in egg, head, wing, ovary, and testis. NlGro and NlGro1-L were found to interact genetically with juvenile hormone and ecdysone signaling by hormone treatment and RNAi of JH/ecdysone signaling-related genes. Moreover, when NlGro or NlGro1-L was down-regulated alone, the survival rate was decreased, the ovarian development was delayed, and the oviposition was also affected. All defects were aggravated when NlGro and NlGro1-L were down-regulated together. This study will help to develop new pesticides on the basis of the function of NlGro and NlGro1-L, and provide new possibilities for the control of Nilaparvata lugens.

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