Biodiversity and Ecological Dynamics of the Asian Rice Gall Midge (Orseolia oryzae) in Paddy Ecosystems: A Comprehensive Review
A. Bhargavi, Siva Ram Tejomoortula
Asian Research Journal of Agriculture · pp. 114–130 · Published 24 Sep 2026
10.9734/arja/2026/v19i4918Abstract
The Asian rice gall midge, Orseolia oryzae (Wood-Mason), is an important insect pest of rice (Oryza sativa L.) and a significant component of rice agroecosystems. Its importance is associated with characteristic silver-shoot formation, yield reduction, geographical variation, differences in virulence, and complex interactions with rice plants, natural enemies, and environmental factors. This review synthesises current knowledge on the biodiversity, biology, ecology, population dynamics, host-pest interactions, natural enemies, resistance, and management of O. oryzae in paddy ecosystems. Particular emphasis is given to geographical and genetic diversity, gall-midge biotypes, seasonal incidence, weather influences, host-plant resistance, and rice-gall-midge interactions. Molecular and genomic studies have provided valuable insights into population differentiation, virulence, insect-plant interactions, and resistance-associated traits, while recent research has expanded opportunities for molecular breeding and improved resistance screening. The review also highlights the ecological importance of parasitoids and other natural enemies and discusses the influence of crop establishment, nutrient management, planting synchrony, and insecticide use on gall-midge populations. Although substantial progress has been made, important gaps remain in understanding population connectivity, biotype evolution, host adaptation, climate-related changes in population dynamics, and the durability of resistance. Future research should integrate population genetics, molecular biology, rice breeding, field ecology, environmental monitoring, and integrated pest management (IPM). An ecosystem-based approach combining resistant cultivars, conservation of natural enemies, appropriate agronomic practices, systematic monitoring, and need-based chemical intervention offers a more sustainable strategy for managing O. oryzae while supporting productive and ecologically resilient paddy ecosystems.
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