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It is important to design insecticides having both low drug resistance and less undesirable toxicity for desert locust control. Specific GPCRs of Schistocerca gregaria, especially β-adrenergic-like octopamine receptor (SgOctβR), can be considered as its potential effective insecticide targets. However, either the unavailability of SgOctβR's structure or the inadequate capability of its sequence lead the development of insecticide for Schistocerca gregaria meets its plateau. To relax this difficulty, this paper develops a promising progressive structure simulation from SgOctβR's sequence, to its predicted structure of SgOctβR in vacuum, to its conformation as well as its complex with endogenous ligand octopamine in a solvent-membrane system. The combined approach of multiple sequence alignment, static structural characterization, and dynamic process of conformational change during binding octopamine reveal three important aspects. The first one is the characterization of SgOctβR's active pocket, including the attending secondary structure elements, its hydrophobic residues and nonpolar surface. The second one is the interaction with octopamine, especially the involved hydrogen bonds and an aromatic stacking of pi-pi interactions. The third one is the potential binding sites, including six highly conserved residues and one highly variable residue for locust insecticide design. This work is definitely helpful for the further structure-based drug design for efficient and eco-friendly insecticides, as well as site-directed mutagenesis biochemical research of SgOctβR.
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http://dx.doi.org/10.1016/j.jmgm.2017.07.025 | DOI Listing |
PLoS Genet
August 2025
Instituto de Neurociencias, and Centro Interdisciplinario de Neurociencia de Valparaíso, Universidad de Valparaíso, Valparaíso, Chile.
Neuromodulators and peptide hormones play important roles in regulating animal behavior. A well-studied example is ecdysis, which is used by insects to shed their exoskeleton at the end of each molt. Ecdysis is initiated by Ecdysis Triggering Hormone (ETH) and Eclosion Hormone (EH), which interact via positive feedback to coordinate the sequence of behavioral and physiological changes that cause exoskeleton shedding.
View Article and Find Full Text PDFAdv Mater
August 2025
Functional Morphology and Biomechanics, Zoological Institute, Kiel University, 24098, Kiel, Germany.
Insect wings achieve an extraordinary balance between structural robustness and lightweight flexibility, enabling efficient and durable flight. This performance arises from their hierarchical composite architecture, where nanoscale chitin fiber orientations play a critical role in adapting to complex mechanical demands. Using scanning X-ray micro- and nano-diffraction, the spatial distribution and orientation of chitin fibers in the hindwing of the desert locust Schistocerca gregaria are systematically mapped.
View Article and Find Full Text PDFInsects
July 2025
Research Institute of Applied Biology, Shanxi University, Taiyuan 030006, China.
The desert locust () represents one of the most destructive agricultural pests globally, renowned for its ability to form massive swarms that can devastate crops and threaten food security across vast regions. Despite the widespread application of the CRISPR/Cas9 gene-editing system in several insect orders, its utilization in locusts, particularly in the desert locust, has remained relatively unexplored. We established a CRISPR/Cas9-mediated gene-editing workflow for the desert locust using gene encoding for neuropeptide corazonin (Crz) as a target.
View Article and Find Full Text PDFAnimal
May 2025
Animal Nutrition Group, Wageningen University and Research Centre, De Elst 1, 6708 WD Wageningen, the Netherlands.
Locusts are important pests of crops and natural vegetation, and they have been intensively studied in the last decades. With the emergence of insect farming for food and feed applications, the desert locust (Schistocerca gregaria) and the migratory locust (Locusta migratoria) hold great potential due to their high nutritional value and suitability for large-scale production. In this review, existing literature on nutritional requirements of these two species, and the interplay between dietary composition, locust growth, and performance are summarised.
View Article and Find Full Text PDFSci Rep
June 2025
International Centre of Insect Physiology and Ecology (ICIPE), Behavioural & Chemical Ecology Department, P.O. Box 30772, Nairobi, GPO - 00100, Kenya.
Gregarious desert locusts produce stage-specific pheromones that facilitate cohesive behavior in juveniles and synchronize maturation and mating in sexually mature adults. During locust outbreaks, merging populations result in cross-stage interactions, yet their impact on locust biology remains poorly understood. This study tested the hypothesis that cross-stage interactions influence juvenile cohesion and physiological traits.
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