Glandular quinoline-derivates protect crustacean woodlice from spider predation.

Fischer, Andreas; Gries, Regine; Roman-Torres, Camila A; Devireddy, Anand; Gries, Gerhard · J R Soc Interface · 2025

basic_science · Level V

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Abstract

In evolutionary time, aquatic crustaceans colonized land and faced new terrestrial predators such as spiders and ants. We tested the hypothesis that the crustacean terrestrial woodlouse <i>Porcellio scaber</i> produces defensive metabolites that provide protection against terrestrial predators. When attacked by a predator, <i>P. scaber</i> expels proteinaceous secretions from its tegumental glands. Analyses of gland secretion extracts by gas chromatography-mass spectrometry and by liquid chromatography-mass spectrometry revealed four metabolites: methyl 8-hydroxy-quinoline-2-carboxylate, methyl 8-hydroxy-4-methoxy-quinoline-2-carboxylate, methyl 8-(sulfooxy)quinoline-2-carboxylate and methyl 4-methoxy-8-(sulfooxy)quinoline-2-carboxylate, the latter three being natural products not previously known. In behavioural experiments, <i>Steatoda grossa</i> spiders readily preyed on <i>Tenebrio molitor</i> beetles but avoided chemically well-defended <i>P. scaber</i>. When beetles were rendered chemically well-defended by topical applications of either <i>P. scaber</i> gland secretion extract or synthetic metabolites identified in these extracts, spiders rejected the beetles as prey. Our data support the hypothesis that <i>P. scaber</i> produces defensive metabolites against terrestrial predators. We show that the crustacean <i>P. scaber</i>, like many insects, is chemically defended against predators.

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