Nuclear Phytochrome A Signaling Promotes Phototropism in Arabidopsis
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Cell Biology
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Phototropin photoreceptors (phot1 and phot2 in Arabidopsis thaliana) enable responses to directional light cues (e.g., positive phototropism in the hypocotyl). In Arabidopsis, phot1 is essential for phototropism in response to low light, a response that is also modulated by phytochrome A (phyA), representing a classical example of photoreceptor coaction. The molecular mechanisms underlying promotion of phototropism by phyA remain unclear. Most phyA responses require nuclear accumulation of the photoreceptor, but interestingly, it has been proposed that cytosolic phyA promotes phototropism. By comparing the kinetics of phototropism in seedlings with different subcellular localizations of phyA, we show that nuclear phyA accelerates the phototropic response, whereas in the fhy1 fhl mutant, in which phyA remains in the cytosol, phototropic bending is slower than in the wild type. Consistent with this data, we find that transcription factors needed for full phyA responses are needed for normal phototropism. Moreover, we show that phyA is the primary photoreceptor promoting the expression of phototropism regulators in low light (e.g., PHYTOCHROME KINASE SUBSTRATE1 [PKS1] and ROOT PHOTO TROPISM2 [RPT2]). Although phyA remains cytosolic in fhy1 fhl, induction of PKS1 and RPT2 expression still occurs in fhy1 fhl, indicating that a low level of nuclear phyA signaling is still present in fhy1 fhl.
Xin G, Li L, Wang P, Li X, Han Y, Zhao X Stress Biol. 2023; 2(1):50.
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Genomic basis of parallel adaptation varies with divergence in and its relatives.
Bohutinska M, Vlcek J, Yair S, Laenen B, Konecna V, Fracassetti M Proc Natl Acad Sci U S A. 2021; 118(21).
PMID: 34001609 PMC: 8166048. DOI: 10.1073/pnas.2022713118.
FHY1 and FHY1-LIKE Are Not Required for Phytochrome A Signal Transduction in the Nucleus.
Menon C, Klose C, Hiltbrunner A Plant Commun. 2021; 1(2):100007.
PMID: 33404546 PMC: 7748001. DOI: 10.1016/j.xplc.2019.100007.
Zhao Q, Zhu J, Li N, Wang X, Zhao X, Zhang X J Integr Plant Biol. 2019; 62(5):614-630.
PMID: 30941890 PMC: 7318699. DOI: 10.1111/jipb.12813.
Deetiolation Enhances Phototropism by Modulating NON-PHOTOTROPIC HYPOCOTYL3 Phosphorylation Status.
Sullivan S, Kharshiing E, Laird J, Sakai T, Christie J Plant Physiol. 2019; 180(2):1119-1131.
PMID: 30918082 PMC: 6548275. DOI: 10.1104/pp.19.00206.