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Feeding of Ticks on Animals for Transmission and Xenodiagnosis in Lyme Disease Research
Published on: August 31, 2013
Analysis of spatial distribution and host selection characteristics of ticks parasitizing rodents in China
Yang Yang1, Xu Wang2, Mengqing Li2
1School of Global Health, Chinese Center for Tropical Diseases Research, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China; School of Public Health, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China; National Key Laboratory of Intelligent Tracking and Forecasting for Infectious Diseases, National Institute of Parasitic Diseases at Chinese Center for Disease Control and Prevention (Chinese Center for Tropical Diseases Research), Shanghai 200025, China.
Abstract:
Ticks are widely distributed on animals, especially rodents, and transmit various pathogens that threaten human health. This study systematically analyzed the geographical distribution, host selection patterns, and ecological diversity of rodent-associated ticks across China. We retrieved literature from major Chinese and English databases (up to February 2025) to construct a three-dimensional data matrix linking ticks, rodent hosts, and provincial-level administrative divisions (PLADs). We then analyzed geographical distribution and host selection using key ecological metrics, including species diversity, Shannon-Wiener breadth, and Levin's overlap. The study identified 54 tick species parasitizing 56 rodent species across 30 PLADs in China. Northwestern regions (e.g., Xinjiang: 19 species) had higher tick diversity than southeastern regions. Provinces with geographical adjacency and climatic similarity (e.g., Heilongjiang, Jilin, and Liaoning) showed highly similar tick species compositions. Niviventer confucianus served as a host for 19 tick species ("super host"). Haemaphysalis longicornis had the broadest geographical distribution (20 PLADs) and the largest spatial Shannon-Wiener breadth (2.99). Ixodes granulatus demonstrated the strongest host adaptability (20 host species) and largest host Shannon-Wiener breadth (3.00). This study highlights significant geographical and host heterogeneity of rodent-associated ticks in China. Ha. longicornis and I. granulatus demonstrate the highest spatial and host adaptability, underscoring their roles as primary zoonotic vectors. Xinjiang and N. confucianus were identified as the region and host with the highest tick species diversity, respectively, highlighting them as critical targets for public health surveillance.

