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June 10, 2026Current Issues in Molecular Biology0 citationsOpen Access

Basic Research on Whitefly Molecular Biology: A Foundation for Innovative Pest Management Strategies

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SHSonia HussainGJGeorg Jander

Key Points

  • This review aims to explore the molecular biology of Bemisia tabaci and its implications for pest management strategies.
  • Comprehensive review of literature on the biological traits of Bemisia tabaci
  • Analysis of insights into insecticide resistance, biological control, and plant-insect interactions
  • Discussion of emerging research trends and future perspectives in pest management
  • Identified insecticide resistance mechanisms that can inform resistance management strategies
  • Reviewed natural enemies that can be utilized for biological control approaches
  • Highlighted molecular targets from plant-insect interactions for innovative pest management solutions

Abstract

Bemisia tabaci (whitefly; Hemiptera: Aleyrodidae), a complex of morphologically similar but genetically distinct species, causes enormous agricultural damage worldwide. Farmers incur billions of dollars in losses each year from whiteflies, both through direct feeding damage and from the transmission of numerous plant viruses. Important crops that are heavily damaged by whiteflies include tomato, eggplant, cucumber, cotton, cucurbits, beans, and cassava. The global invasiveness and persistence of B. tabaci are largely attributed to its exceptional biological traits. Understanding these traits is essential for developing effective, long-term pest management strategies. This review describes in detail how the basic biology studies of B. tabaci provide a foundation for developing pest management strategies. Specifically, we discuss: (1) insights into the development of insecticide resistance can guide resistance management strategies; (2) knowledge of natural enemies supports the advancement of biological control approaches; and (3) understanding plant–insect interactions reveals molecular targets for innovative pest management solutions. We also examine emerging research trends and offer future perspectives on how ongoing studies may drive the development of next-generation control strategies (RNA interference, clustered regularly interspaced short palindromic repeats—CRISPR-associated protein 9 (CRISPR-Cas9), and horizontally transferred genes as targets).

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Cite This Study

Hussain et al. (2026) studied this question.

synapsesocial.com/papers/6a28fff36f82f25be989ca87https://doi.org/10.3390/cimb48060605
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