Viruses (Aug 2025)

Baculovirus-Based Biocontrol: Synergistic and Antagonistic Interactions of PxGV, PxNPV, SeMNPV, and SfMNPV in Integrative Pest Management

  • Alberto Margarito García-Munguía,
  • Carlos Alberto García-Munguía,
  • Paloma Lucía Guerra-Ávila,
  • Estefany Alejandra Sánchez-Mendoza,
  • Fabián Alejandro Rubalcava-Castillo,
  • Argelia García-Munguía,
  • María Reyna Robles-López,
  • Luis Fernando Cisneros-Guzmán,
  • María Guadalupe Martínez-Alba,
  • Ernesto Olvera-Gonzalez,
  • Raúl René Robles-de la Torre,
  • Otilio García-Munguía

DOI
https://doi.org/10.3390/v17081077
Journal volume & issue
Vol. 17, no. 8
p. 1077

Abstract

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The use of chemical pesticides in agriculture has led to the development of resistant pest populations, posing a challenge to long-term pest management. This review aims to evaluate the scientific literature on the individual and combined use of baculoviruses with conventional chemical and biological insecticides to combat Plutella xylostella, Spodoptera exigua, and Spodoptera frugiperda in broccoli, tomato, and maize crops. Notable findings include that both individual Plutella xylostella nucleopolyhedrovirus (PxNPV) and the combination of Plutella xylostella granulovirus (PxGV) and azadirachtin at a low dose effectively control Plutella xylostella; both combinations of Spodoptera exigua multiple nucleopolyhedrovirus (SeMNPV) with emamectin benzoate and chlorfenapyr reduced resistance in Spodoptera exigua and increased the efficacy of the insecticides; and the combination of Spodoptera frugiperda nucleopolyhedrovirus (SfMNPV) and spinetoram is effective against Spodoptera frugiperda. Integrating baculoviruses into pest management strategies offers a promising approach to mitigate the adverse effects of chemical pesticides, such as resistance development, health risks, and environmental damage. However, there remains a broad spectrum of research opportunities regarding the use of baculoviruses in agriculture.

Keywords