Evaluation of the temperature adaptation of three rubber tree pest mites based on their two‐sex life table

Author:

Wang Weihua12ORCID,Wan Sanlian3ORCID,Zheng Lijiu2ORCID,Zhang Fangping2ORCID,Chen Junyu2ORCID

Affiliation:

1. College of Tropical Agriculture and Forestry Hainan University Haikou China

2. Agricultural and Rural Affairs Ministry Key Laboratory of Integrated Pest Management for Tropical Crops, Institute of Environment and Plant Protection Provincial Engineering Research Center for the Breeding and Industrialization of Natural Enemies, Chinese Academy of Tropical Agricultural Sciences Haikou China

3. Southern China Breeding Base Administrate Office of Hainan Province Sanya China

Abstract

AbstractTo determine the optimal temperature range for the development and reproduction of three spider mites (Eotetranychus sexmaculatus, Eotetranychus orientalis, and Oligonychus biharensis), this study investigated their developmental period, survival rate, lifespan, and reproduction under five temperatures, 21, 24, 27, 30, and 33°C, to predict and control in the field. With the gathered data, a two‐sex life table was constructed for each of them. The results revealed that as the temperature increased, both O. biharensis and E. orientalis displayed a gradual reduction in their generation period. Furthermore, an inverse relationship was observed between lifespan and temperature for all three spider mite species. When examining the survival rates at varying temperatures, E. sexmaculatus exhibited the highest rate (98%) at 33°C, while E. orientalis and O. biharensis demonstrated their highest survival rates at 24°C, reaching 90% and 100% respectively. Regarding reproduction, O. biharensis displayed the highest oviposition rates at 30°C with an average of 17.45 eggs per individual. Conversely, E. sexmaculatus and E. orientalis exhibited the highest oviposition rates at 33°C, averaging at 15.22 and 21.38 eggs per individual respectively. Significantly higher intrinsic growth rates were observed for O. biharensis and E. orientalis at 33°C, with rates of 0.22 and 0.26 respectively. In contrast, E. sexmaculatus demonstrated the highest intrinsic growth rate at 27°C. The temperature of 27°C was more suitable for the growth of the E. sexmaculatus, while 33°C was the optimal temperature for the E. orientalis and O. biharensis. The current findings provide valuable guidance for the control and prevention of these three spider mites.

Publisher

Wiley

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