Desiccation tolerance of Termitidae termites in relation to their nest type

Author:

Wanthathaen Chatchaton1,Chiu Chun-I2ORCID,Chiu Ming-Chih34,Leelayouthyotin Suchart5,Krutmuang Patcharin2,Li Hou-Feng3ORCID,Sripontan Yuwatida1ORCID

Affiliation:

1. Department of Entomology and Plant Pathology, Faculty of Agriculture, Khon Kaen University , Khon Kaen 40002 , Thailand

2. Department of Entomology and Plant Pathology, Faculty of Agriculture, Chiang Mai University , Chiang Mai 50200 , Thailand

3. Department of Entomology, National Chung Hsing University , Taichung , Taiwan

4. State Key Laboratory of Freshwater Ecology and Biotechnology, Chinese Academy of Science , Beijing , China

5. King Service Center Co., Ltd. , Bangkok 10240 , Thailand

Abstract

Abstract The family Termitidae is renowned for its diverse nesting behaviors, with the evolution of epigeal and arboreal nests hypothesized to increase desiccation stress due to greater exposure to air. However, these nests may also alleviate desiccation stress through humidity regulation. To explore the implications of acquiring epigeal and arboreal nests, we investigated desiccation tolerance traits in 16 Termitidae termite species with varying nest types and analyzed trait correlations. Principal component analysis revealed that termites constructing epigeal and arboreal nests exhibited reduced water loss rates and enhanced survival under desiccated conditions. Furthermore, termites building arboreal nests displayed a notably higher water content. Redundancy analysis demonstrated that nest types accounted for a substantial portion (57.2%) of the observed variation in desiccation tolerance. These findings support the hypothesis that epigeal and arboreal nests in termites are associated with increased desiccation stress and increased desiccation tolerance. These findings highlight the role of nest type in influencing desiccation tolerance mechanisms and water regulation strategies in termites.

Publisher

Oxford University Press (OUP)

Subject

Insect Science,Ecology,Ecology, Evolution, Behavior and Systematics

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4. Water relations of insecticide resistant and susceptible German cockroaches (Dictyoptera: Blattellidae);Appel;Comp Biochem Physiol,1993

5. Soil translocation by termites of the genus Odontotermes (Holmgren) (Isoptera: Macrotermitinae) in an arid area of Northern Kenya;Bagine;Oecologia,1984

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