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Anticarsia gemmatalis is an important pest in legume crops in South America and it has been successfully controlled using Anticarsia gemmatalis Multiple Nucleopolyhedrovirus (AgMNPV) in subtropical climate zones. Nevertheless, in temperate climates its speed of kill is too slow. Taking this into account, genetic modification of AgMNPV could lead to improvements of its biopesticidal properties. Here we report the generation of a two-component system that allows the production of recombinant AgMNPV. This system is based on a parental AgMNPV in which the polyhedrin gene (polh) was replaced by a bacterial β-galactosidase (lacZ) gene flanked by two target sites for the homing endonuclease I-PpoI. Co-transfection of insect cells with linearized (I-PpoI-digested) parental genome and a transfer vector allowed the restitution of polh and the expression of a heterologous gene upon homologous recombination, with a low background of non-recombinant AgMNPV. The system was validated by constructing a recombinant occlusion-positive (polh+) AgMNPV expressing the green fluorescent protein gene (gfp). This recombinant virus infected larvae normally per os and led to the expression of GFP in cell culture as well as in A. gemmatalis larvae. These results demonstrate that the system is an efficient method for the generation of recombinant AgMNPV expressing heterologous genes, which can be used for manifold purposes, including biotechnological and pharmaceutical applications and the production of orally infectious recombinants with improved biopesticidal properties.
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http://dx.doi.org/10.3390/v7041599 | DOI Listing |
Bull Entomol Res
October 2025
Entomology, Embrapa Soja, Londrina, PR, Brazil.
Outbreaks of have occurred on soybean in Brazil as the first species resistant to the soybean expressing only Cry1Ac protein, triggering a significant increase in insecticide use on the crop. This threatens one of the most important benefits of adopting soybean cultivars - the reduction of chemicals. Therefore, this research studied the biology and parasitism capacity of at 20, 25, and 30 ± 2 °C on eggs in order to evaluate the potential of releasing this egg parasitoid in soybean to manage .
View Article and Find Full Text PDFNeotrop Entomol
March 2025
Embrapa Genetic Resources and Biotechnology, Brasília, Federal District, Brazil.
Owlet moths (Lepidoptera: Noctuoidea) are among the most threatening pests of soybean and maize systems under intensive cropping in tropical and subtropical regions. Their high dispersal, larval polyphagia, and voracious feeding behavior often lead to severe grain production losses. Many parasitoids are associated with owlet moths; however, the ecological importance of larval parasitism in the soybean-maize crop rotation of the Brazilian savanna remains uncertain.
View Article and Find Full Text PDFFront Physiol
October 2024
Departamento de Bioquímica, Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Sci Rep
September 2024
Department of Entomology, Universidade Federal de Viçosa (UFV), Av. PH Rolfs, Viçosa, Minas Gerais, 36570-900, Brazil.
Environmental variability can significantly impact individual survival and reproduction. Meanwhile, high population densities can lead to resource scarcity and increased exposure to parasites and pathogens. Studies with insects can offer valuable insights into eco-immunology, allowing us to explore the connections between these variables.
View Article and Find Full Text PDFPest Manag Sci
November 2024
Entomology & Nematology Department, West Florida Research and Education Center, University of Florida, Jay, USA.
Background: Transgenic Bt technology in soybean, with plants expressing Cry1Ac, has been adopted as an insect pest management tool. It was first adopted in large areas of South America and Asia in 2013. The risk of resistance in target pests to this technology demands insect resistance management (IRM) programs.
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