Dwi Adi Sunarto, Bambang Tri Rahardjo, Hagus Tarno, Aminudin Afandhi, Nurindah
Tritrophic interactions among plants, herbivores, and natural enemies represent a fundamental ecological framework with significant potential for biological pest control. This review examines the application of tritrophic interactions for managing armored scale insects (Hemiptera: Diaspididae) in citrus production systems, with emphasis on Indonesian agricultural contexts. Climate change has accelerated developmental rates of Diaspididae species, elevating their pest status. This review synthesizes current knowledge on herbivore-induced plant volatiles (HIPVs) emitted by citrus following Diaspididae infestation and evaluates parasitoid efficacy as biological control agents. We analyze mechanisms governing tritrophic interactions, characterize chemical profiles of relevant HIPVs, and assess parasitoid effectiveness in scale insect population suppression. The review identifies critical knowledge gaps and outlines future research priorities while discussing practical implications for integrating tritrophic approaches into comprehensive pest management programs for citrus cultivation. The main findings show that there is a huge gap in information about Indonesian citrus systems. There are only 2-3 parasitoid species described locally compared to 89 species worldwide, which shows that natural enemies have not been studied enough. The research points out major gaps in HIPV characterization for Indonesian citrus cultivars and field validation investigations. Strategic recommendations prioritize rigorous parasitoid discovery utilizing molecular identification technologies, extensive volatile profiling for principal Indonesian citrus cultivars, and the manufacture of synthetic HIPV for field application. Using tritrophic interaction-based control could cut down on the need for pesticides by 60-80% and improve biodiversity in agroecosystems. However, this would require ongoing research funding and cooperation between farmers and researchers to deal with complicated environmental dependencies and species-specific interactions. © 2025 Published under licence by IOP Publishing Ltd.
Research Center for Estate Crops, National Research and Innovation Agency, Jakarta-Bogor Main Road KM 46, Cibinong, West Java, Bogor, 16911, Indonesia; Faculty of Agriculture, University of Brawijaya, Mayjen Haryono Street, East Java, Malang, 65145, Indonesia