Extended disease resistance emerging from the faecal nest of a subterranean termite

Author:

Chouvenc Thomas1,Efstathion Caroline A.1,Elliott Monica L.2,Su Nan-Yao1

Affiliation:

1. Department of Entomology and Nematology, University of Florida, Institute of Food and Agricultural Sciences, 3205 College Avenue, Fort Lauderdale, FL 33314, USA

2. Department of Plant Pathology, Fort Lauderdale Research and Education Center, University of Florida, Institute of Food and Agricultural Sciences, 3205 College Avenue, Fort Lauderdale, FL 33314, USA

Abstract

Social insects nesting in soil environments are in constant contact with entomopathogens but have evolved a range of defence mechanisms, resulting in both individual and social immunity that reduce the chance for epizootics in the colony, as in the case of subterranean termites. Coptotermes formosanus uses its faeces as building material for its nest structure that result into a ‘carton material’, and here, we report that the faecal nest supports the growth of Actinobacteria which provide another level of protection to the social group against entomopathogens. A Streptomyces species with in vivo antimicrobial activity against fungal entomopathogens was isolated from the nest material of multiple termite colonies. Termite groups were exposed to Metarhizium anisopliae , a fungal entomopathogen, during their foraging activity and the presence of Streptomyces within the nest structure provided a significant survival benefit to the termites. Therefore, this report describes a non-nutritional exosymbiosis in a termite, in the form of a defensive mutualism which has emerged from the use of faecal material in the nesting structure of Coptotermes . The association with an Actinobacteria community in the termite faecal material provides an extended disease resistance to the termite group as another level of defence, in addition to their individual and social immunity.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Environmental Science,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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1. 16S rRNA metabarcoding of gut microbiota between untreated and Chitin Synthesis Inhibitors bait treated in three subterranean termite species;Gene Reports;2024-09

2. Termite management by entomopathogenic fungi: Recent advances and future prospects;Current Research in Biotechnology;2024

3. UsingCoptotermesfor laboratory experiments: field collection, laboratory rearing, and bioassay visualization;Biology and Management of the Formosan Subterranean Termite and Related Species;2023-12-27

4. Hybridization betweenCoptotermes formosanusandCoptotermes gestroi;Biology and Management of the Formosan Subterranean Termite and Related Species;2023-12-27

5. Symbiosis and microbiome in termite guts: a unique quadripartite system;Biology and Management of the Formosan Subterranean Termite and Related Species;2023-12-27

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