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◇ bioRxiv2026-08-29· molecular biology

Color-dependent foraging in C. elegans integrates chromoprotein photosensitization with bacterial metabolic cues

R. Hameed, V. Sari, Y. Yue, Z. Yu, S. Koshkin, C. Evans, A. A. Parkhitko, S. F. Leiser, A. Kaya

原始摘要(英文原文)· Original abstract
Animals rely on color to navigate complex environments, yet how eyeless organisms use chromatic information to guide food choice remains poorly understood. Here, we show that Caenorhabditis elegans exhibits robust color dependent foraging driven by microbial chromophores, preferentially consuming red while avoiding blue chromoprotein expressing bacteria across bacterial backgrounds and wild isolates. This discrimination persists in darkness and independently of photoreceptor, revealing a mechanism beyond canonical photoreception. Purified chromoproteins and bacterial metabolite fractions independently reproduce preference, demonstrating complementary chromatic and post ingestive metabolic cues. Mechanistically, blue chromoproteins generate singlet oxygen, producing oxidative stress and remodeling bacterial tryptophan and pterin metabolism, whereas red food promotes serotonin production and feeding-associated neuropeptide signaling. Disrupting serotonin biosynthesis or neuropeptide processing abolishes color preference. Together, our findings reveal a previously unrecognized, novel sensory strategy in which wavelength-selective pigment photochemistry transforms microbial color into metabolic information that is integrated through gut brain neuroendocrine signaling to guide foraging behavior in an eyeless animal.
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Color-dependent foraging in C. elegans integrates chromoprotein photosensitization with bacterial metabolic cues — 科研速览 Science Skim