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Effects of temperature, relative humidity, and illumination on the entomological parameters of Aedes albopictus: an experimental study.

Authors :
Cai, Xiaoshuang
Zhao, Jianguo
Deng, Hui
Xiao, Jianpeng
Liu, Tao
Zeng, Weilin
Li, Xing
Hu, Jianxiong
Huang, Cunrui
Zhu, Guanghu
Ma, Wenjun
Source :
International Journal of Biometeorology; Apr2023, Vol. 67 Issue 4, p687-694, 8p
Publication Year :
2023

Abstract

Aedesalbopictus (Diptera: Culicidae) is a mosquito from Asia that can transmit a variety of diseases. This paper aimed to explore the effects of temperature, relative humidity, and illumination on the entomological parameters related to the population growth of Aedes albopictus, and provide specific parameters for developing dynamic models of mosquito-borne infectious disease. We used artificial simulation lab experiments, and set 27 different meteorological conditions to observe and record mosquito's hatching time, emergence time, longevity of adult females, and oviposition amount. We then applied generalized additive model (GAM) and polynomial regression to formulate the effects of temperature, relative humidity, and illumination on the biological characteristics of Aedes albopictus. Our results showed that hatchability closely related to temperature and illumination. The immature stage and the survival time of adult female mosquitoes were associated with temperature and relative humidity. The oviposition rate related to temperature, relative humidity, and illumination. Under the control of relative humidity and illumination, ecological characteristics of mosquitoes such as hatching rate, transition rate, longevity, and oviposition rate had an inverted J shape with temperature, and the thresholds were 31.2 °C, 32.1 °C, 17.7 °C, and 25.7 °C, respectively. The parameter expressions of Aedes albopictus using meteorological factors as predictors under different stages were established. Meteorological factors especially temperature significantly influence the development of Aedes albopictus under different physiological stages. The established formulas of ecological parameters can provide important information for modeling mosquito-borne infectious diseases. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00207128
Volume :
67
Issue :
4
Database :
Complementary Index
Journal :
International Journal of Biometeorology
Publication Type :
Academic Journal
Accession number :
162871046
Full Text :
https://doi.org/10.1007/s00484-023-02446-y