bioRxiv · 10.64898/2026.09.29.755320
Dim blue light drives reversible fucoxanthin derivative accumulation in the pelagophyte Pelagomonas calceolata
Abstract
Pigment composition and regulation are critical for efficient photosynthesis in the ocean, where light intensity decreases and the spectrum narrows with depth. Fucoxanthin (Fx), the main carotenoid of several microalgal lineages, harvests the blue-green light prevailing in the deep euphotic zone. In pelagophytes, the acylated derivative 19'-butanoyloxyfucoxanthin (19'-BFx) is abundant, yet its function and regulation remain unclear. Here, we investigated how irradiance and spectral quality shape photoacclimation in Pelagomonas calceolata, an abundant and cosmopolitan low-light pelagophyte. Cultures were grown under blue or white light across 2-60 umol photons m^-2 s^-1. We analysed growth, PSII photophysiology, pigment composition, gene expression levels, and the impact of spectral shifts on the 19'-BFx/Fx ratio. Pelagomonas calceolata grew optimally under dim blue light and displayed low non-photochemical quenching (NPQ) under assay conditions. Transcriptomes revealed broad remodelling driven mainly by irradiance and modulated by light colour, including carotenoid-related processes. Dim blue light progressively increased the 19'-BFx/Fx ratio, whereas white light kept it low and reversed the response after a blue-to-white shift. These results identify reversible, spectrum-dependent 19'-BFx accumulation as a key component of photoacclimation in P. calceolata and separate irradiance-driven from spectrum-dependent cellular responses. This plasticity may explain the ecological success of P. calceolata in low-light oceans.
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Seyman, C., Bertrand, L., Fossey-Jouenne, A., Orvain, C., Moussy, A., Noel, B., Carradec, Q., Thurotte, A.. 2026-09-30. Dim blue light drives reversible fucoxanthin derivative accumulation in the pelagophyte Pelagomonas calceolata. https://doi.org/10.64898/2026.09.29.755320
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