bioRxiv · 10.1101/2020.02.11.930990
Increases in ambient temperature progressively disassemble Arabidopsis phytochrome B from individual photobodies with distinct thermostabilities
Abstract
Warm temperature is postulated to induce plant thermomorphogenesis through a signaling mechanism similar to shade, as both destabilize the active form of the photoreceptor and thermosensor phytochrome B (phyB). At the cellular level, shade antagonizes phyB signaling by triggering phyB disassembly from photobodies. Here we report temperature-dependent photobody localization of fluorescent protein-tagged phyB (phyB-FP) in the epidermal cells of Arabidopsis hypocotyl and cotyledon. Our results demonstrate that warm temperature operates through different photobody dynamics from shade. Increases in temperature from 12{degrees}C to 27{degrees}C incrementally reduce photobody number by stimulating phyB-FP disassembly from selective thermo-unstable photobodies. The thermostability of photobodies relies on phyBs photosensory module. Surprisingly, elevated temperatures inflict opposite effects on phyBs functions in the hypocotyl and cotyledon despite inducing similar photobody dynamics, indicative of tissue/organ-specific temperature signaling circuitry downstream of photobody dynamics. Our results thus provide direct cell biology evidence supporting an early temperature signaling mechanism via dynamic assembly/disassembly of individual photobodies possessing distinct thermostabilities.
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Hahm, J., Kim, K., Qiu, Y., Chen, M.. 2020-02-12. Increases in ambient temperature progressively disassemble Arabidopsis phytochrome B from individual photobodies with distinct thermostabilities. https://doi.org/10.1101/2020.02.11.930990
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