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Vector Competence Analyses on Aedes aegypti Mosquitoes using Zika Virus
Published on: May 31, 2020
Vector Traits Shape Disease Persistence: A Predator-Prey Approach to Dengue
Piyumi Chathurangika1,2, Tharushika Peiris1, Lakmini S Premadasa3
1Research & Development Centre for Mathematical Modeling, Department of Mathematics, Faculty of Science, University of Colombo, Colombo, 00030, Sri Lanka.
Abstract:
Dengue continues to pose a major global threat, infecting nearly 390 million people annually. Recognizing the importance of studying vector biology and therein vector competence ( ), recent research focuses on mosquito parameters to inform transmission modeling and vector control strategies. This study models relationship between Aedes vectors and dengue pathogens, highlighting as a key driver of within-vector infection dynamics and endemic persistence. Using a predator-prey framework, we show that endemic conditions emerge naturally from the biological interplay between vector's strategies and pethogen pressure. We prove global stability of such conditions and determine thresholds of for three types of functional responses ( ). Our results reveal that under tropical and subtropical environmental pressures, the innate immune system of vectors cannot offset high during endemic outbreaks, highlighting a fundamental biological trade-off: vectors can evolve increased transmission potential but cannot enhance immune capacity. This constraint defines the limits of their evolutionary response to pathogen-driven selection and drives instability in disease transmission dynamics.
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