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Ecological variations in adult life table attributes of Aedes aegypti (L.) from the desert and coastal regions of India
Authors:Gaurav Sharma  Souvik De  Udita Mandal  Rashmi Bhattacherjee  Devi Shankar Suman
Affiliation:1. Diptera Section, Zoological Survey of India, New Alipore, Kolkata, West Bengal, India;2. Diptera Section, Zoological Survey of India, New Alipore, Kolkata, West Bengal, India

Department of Zoology, University of Calcutta, Kolkata, West Bengal, India;3. Diptera Section, Zoological Survey of India, New Alipore, Kolkata, West Bengal, India

School of Bioengineering and Biosciences, Lovely Professional University, Jalandhar, Punjab, India;4. Estuarine Biology Regional Centre, Zoological Survey of India, Gopalpur-On-Sea, Ganjam, Odisha, India

Abstract:The ecological variation in biological and adult life-table attributes of two populations of Aedes aegypti (Diptera: Culicidae) from the desert (Jodhpur) and coastal (Kolkata) regions of India are assessed to understand the reproductive and survival strategies. The results showed that females lived longer than males in both strains. The desert strain was more r-strategist because of its higher intrinsic rate of increase (rm = 0.23), finite rate of increase (λ = 1.25), lower life expectancy of males (7.9 days) and females (14.4 days), mean generation time (T = 19.2 days) and doubling time (DT = 3.0 days). However, there was no difference in net reproductive rate (R0) between the desert and coastal strains. The coastal strain showed a longer female life expectancy (22.0 days) than the desert strain (14.4 days). However, the fecundity (eggs/female/day) was lower in the coastal strain (11.4) than in the desert strain (15.1). Conclusively, the desert (Jodhpur) strain is adapted to a better r-strategy than the coastal (Kolkata) strain of Ae. aegypti, which might be helpful to flourish in harsh environmental conditions. This study may provide accurate predictions of Ae. aegypti population dynamics for vector management.
Keywords:biological variation  ecology  mosquitoes  population dynamics  reproductive potential  survival
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