B-Box transcription factor BBX28 requires CONSTITUTIVE PHOTOMORPHOGENESIS1 to induce shade-avoidance response in Arabidopsis thaliana

Author:

Saura-Sánchez Maite1ORCID,Gomez-Ocampo Gabriel1ORCID,Pereyra Matías Ezequiel12ORCID,Barraza Carla Eliana1ORCID,Rossi Andrés H2ORCID,Córdoba Juan P2ORCID,Botto Javier Francisco1ORCID

Affiliation:

1. Instituto de Investigaciones Fisiológicas y Ecológicas Vinculadas a la Agricultura (FEVA), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Facultad de Agronomía, Universidad de Buenos Aires (UBA) , Av. San Martín 4453, C1417DSE Ciudad Autónoma de Buenos Aires , Argentina

2. Fundación Instituto Leloir, IIBBA-CONICET , Avenida Patricias Argentinas 435, 1405 Buenos Aires , Argentina

Abstract

Abstract Shade avoidance syndrome is an important adaptive strategy. Under shade, major transcriptional rearrangements underlie the reallocation of resources to elongate vegetative structures and redefine the plant architecture to compete for photosynthesis. BBX28 is a B-box transcription factor involved in seedling de-etiolation and flowering in Arabidopsis (Arabidopsis thaliana), but its function in shade-avoidance response is completely unknown. Here, we studied the function of BBX28 using two mutant and two transgenic lines of Arabidopsis exposed to white light and simulated shade conditions. We found that BBX28 promotes hypocotyl growth under shade through the phytochrome system by perceiving the reduction of red photons but not the reduction of photosynthetically active radiation or blue photons. We demonstrated that hypocotyl growth under shade is sustained by the protein accumulation of BBX28 in the nuclei in a CONSTITUTIVE PHOTOMORPHOGENESIS1 (COP1)-dependent manner at the end of the photoperiod. BBX28 up-regulates the expression of transcription factor- and auxin-related genes, thereby promoting hypocotyl growth under prolonged shade. Overall, our results suggest the role of BBX28 in COP1 signaling to sustain the shade-avoidance response and extend the well-known participation of other members of BBX transcription factors for fine-tuning plant growth under shade.

Funder

University of Buenos Aires

Agencia Nacional de Promoción Científica y Tecnológica of Argentina

Publisher

Oxford University Press (OUP)

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