Department of Zoology, Government Degree College, Nagari.
Received on 07 September 2021; revised on 25 Ocotber 2021; accepted on 02 November 2021
Pollinator decline threatens agricultural productivity and food security by disrupting the ecosystem service of crop pollination. We synthesize evidence on how insect biodiversity responds to agricultural intensification and quantify links between pollinator richness, visitation, and crop yield. Using a conceptual framework and simulated case study, we compare biodiversity–productivity relationships under alternative on-farm and landscape management. We show that moderate increases in pollinator richness ( species) can raise fruit set by – at typical visitation levels, with the strongest gains in intensively managed fields lacking semi-natural habitat. Our results align with global syntheses demonstrating that wild pollinators enhance crop set independent of honey bee abundance, and that landscape complexity buffers yield against pollinator losses. We outline practical interventions—habitat strips, floral resources, nesting substrates, and pesticide risk mitigation—that jointly support biodiversity and crop production.
Ecosystem Services; Bees; Hoverflies; Landscape Complexity; Semi-Natural Habitat; Fruit Set; Yield Stability
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Mustafa Sharmila. Pollinator decline in agricultural landscapes: Linking insect biodiversity to crop productivity. World Journal of Biology Pharmacy and Health Sciences, 2021, 08(02), 042-048. Article DOI: https://doi.org/10.30574/wjbphs.2021.8.2.0116