bioRxiv · 10.64898/2026.01.13.699210
Contact-based kin discrimination is associated with specific surface lipids in the cannibalistic nematode Pristionchus pacificus
Abstract
Kin-recognition is widespread, yet its molecular basis remains poorly understood. In the predatory nematode Pristionchus pacificus, kin-recognition prevents cannibalism of close relatives and depends on the peptide SELF-1. Here, we show this behavior is robust to environmental stress but disrupted by a surfactant wash, implicating lipids or other amphiphilic molecules as necessary components for this mechanism. Using 3D-OrbiSIMS, we profiled the outer cuticle of kin-recognition defective self-1 mutants and found these animals exhibit distinct surface lipids. Furthermore, analysis of surface chemistry defective daf-22 mutants alongside self-1;daf-22 double mutants revealed additional, non-overlapping surface lipid profiles, indicating that multiple pathways contribute to shaping surface lipid composition. Importantly, by combining automated behavioral tracking with state-based analysis, we show daf-22 mutants are also kin-recognition defective. Together, these findings demonstrate that the composition of the nematode surface is required to maintain kin identity, with the cuticle acting as a signaling interface that regulates contact-dependent behaviors. Teaser (125 characters)Surface lipid composition correlates with nematode kin-recognition signaling abilities.
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Hiramatsu, F., Goetting, D. L., Kotowska, A. M., Zorn, N., Chauhan, V. M., Lightfoot, J. W.. 2026-01-13. Contact-based kin discrimination is associated with specific surface lipids in the cannibalistic nematode Pristionchus pacificus. https://doi.org/10.64898/2026.01.13.699210
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