PubMed · 42583802
DNA-binding activity of PIF7 links phytochrome B signaling to plant responses to vegetation proximity.
Abstract
PHYTOCHROME INTERACTING FACTORs (PIFs) are transcription factors that act as central signaling hubs in light-regulated processes. All PIFs contain an active phytochrome B-binding motif and a DNA-binding basic helix-loop-helix domain. In the shade-avoider Arabidopsis thaliana, PIF7 is a major promoter of hypocotyl elongation in response to vegetation proximity, becoming active when released from phytochrome B via its active phytochrome B-binding motif. Here we show that PIF7 promotes seedling elongation in other species, including the shade-avoider tomato and the shade-tolerant Cardamine hirsuta, suggesting that PIF7 has retained some of its key functional domains across diverse plants. Through complementation analyses using PIF7 variants lacking either the active phytochrome B-binding or basic helix-loop-helix domain, we demonstrate that, unlike PIF3, PIF7 versions unable to bind phytochrome B remain active regardless of light conditions, whereas loss of DNA-binding capacity fully disrupts PIF7 function. Our results further suggest that phytochrome B interaction imposes a dual regulatory control over PIF7, modulating both its abundance and its phosphorylation state (ie its ability to bind and regulate target genes).
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Marta Diaz-Lopez, Pedro Pastor-Andreu, Wenting Qin, Angela Sanchez-Garcia, Esteban Burbano-Erazo, Laura Valverde, Sandi Paulišić, Manuel Rodriguez-Concepcion, Jordi Moreno-Romero, Jaume F Martinez-Garcia. 2026-09-01. DNA-binding activity of PIF7 links phytochrome B signaling to plant responses to vegetation proximity.. https://doi.org/10.1093/plphys%2Fkiag602
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