International Journal of Molecular Sciences (Nov 2023)

Recent Advances in the Genetic and Biochemical Mechanisms of Rice Resistance to Brown Planthoppers (<i>Nilaparvata lugens</i> Stål)

  • Shaojie Shi,
  • Huiying Wang,
  • Wenjun Zha,
  • Yan Wu,
  • Kai Liu,
  • Deze Xu,
  • Guangcun He,
  • Lei Zhou,
  • Aiqing You

DOI
https://doi.org/10.3390/ijms242316959
Journal volume & issue
Vol. 24, no. 23
p. 16959

Abstract

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Rice (Oryza sativa L.) is the staple food of more than half of Earth’s population. Brown planthopper (Nilaparvata lugens Stål, BPH) is a host-specific pest of rice responsible for inducing major losses in rice production. Utilizing host resistance to control N. lugens is considered to be the most cost-effective method. Therefore, the exploration of resistance genes and resistance mechanisms has become the focus of breeders’ attention. During the long-term co-evolution process, rice has evolved multiple mechanisms to defend against BPH infection, and BPHs have evolved various mechanisms to overcome the defenses of rice plants. More than 49 BPH-resistance genes/QTLs have been reported to date, and the responses of rice to BPH feeding activity involve various processes, including MAPK activation, plant hormone production, Ca2+ flux, etc. Several secretory proteins of BPHs have been identified and are involved in activating or suppressing a series of defense responses in rice. Here, we review some recent advances in our understanding of rice–BPH interactions. We also discuss research progress in controlling methods of brown planthoppers, including cultural management, trap cropping, and biological control. These studies contribute to the establishment of green integrated management systems for brown planthoppers.

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