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12 March 2018 Seasonal Migration of Pantala flavescens Across the Bohai Strait in Northern China
Ling-zhen Cao, Xiao-wei Fu, Chao-xing Hu, Kong-ming Wu
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Abstract

Pantala flavescens (Fabricius 1798) (Odonata: Libellulidae) is one of the most common species of migratory dragonflies. P. flavescens adults were captured by a searchlight trap on Beihuang Island (BH Island; 38°24′N, 120°55′E) from 2003 to 2016, where there is no freshwater. This inspired our research to analyze the pattern of seasonal migration and population dynamics. Stable hydrogen isotope measurement and the Hybrid Single Particle Lagrangian Integrated Trajectory (HYSPLIT) were used to simulate the migration pathway of P. flavescens between different breeding habitats. The results showed that there was no significant difference among population numbers of this overseas migration across years (F13, 2161 = 0.85, P = 0.604); however, the numbers were significantly different across months (F5, 2161 = 3.91, P = 0.003). Our geospatial natal assignment model suggested that P. flavescens trapped on BH were originated in different geographical regions and might have three movement strategies: wandering around northern China and north-bound (positive) and south-bound (negative) movements. Among them, the majority were engaged in wandering around northern China. Model simulations suggested that P. flavescens toured around BH. The results contribute to the knowledge of P. flavescens population ecology in a large-scale geographic region and will aid in the prediction and interpretation of insect migration patterns in response to climate change.

© The Author(s) 2018. Published by Oxford University Press on behalf of Entomological Society of America. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.
Ling-zhen Cao, Xiao-wei Fu, Chao-xing Hu, and Kong-ming Wu "Seasonal Migration of Pantala flavescens Across the Bohai Strait in Northern China," Environmental Entomology 47(2), 264-270, (12 March 2018). https://doi.org/10.1093/ee/nvy017
Received: 1 September 2017; Accepted: 8 January 2018; Published: 12 March 2018
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KEYWORDS
isoscapes
Odonata
population dynamics
stable isotope
trajectory analysis
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