COP1-Mediated Degradation of BBX22/LZF1 Optimizes Seedling Development in Arabidopsis

Author:

Chang Chiung-Swey Joanne1,Maloof Julin N.1,Wu Shu-Hsing1

Affiliation:

1. Institute of Plant and Microbial Biology (C.-S.J.C., S.-H.W.) and Molecular and Biological Agricultural Sciences Program, Taiwan International Graduate Program (C.-S.J.C., S.-H.W.), Academia Sinica, Taipei 11529, Taiwan; Graduate Institute of Biotechnology and Department of Life Sciences, National Chung-Hsing University, Taichung 402, Taiwan (C.-S.J.C., S.-H.W.); Department of Plant Biology, Coll

Abstract

Abstract Light regulates multiple aspects of growth and development in plants. Transcriptomic changes govern the expression of signaling molecules with the perception of light. Also, the 26S proteasome regulates the accumulation of positive and negative regulators for optimal growth of Arabidopsis (Arabidopsis thaliana) in the dark, light, or light/dark cycles. BBX22, whose induction is both light regulated and HY5 dependent, is a positive regulator of deetiolation in Arabidopsis. We found that during skotomorphogenesis, the expression of BBX22 needs to be tightly regulated at both transcriptional and posttranslational levels. During photomorphogenesis, the expression of BBX22 transiently accumulates to execute its roles as a positive regulator. BBX22 protein accumulates to a higher level under short-day conditions and functions to inhibit hypocotyl elongation. The proteasome-dependent degradation of BBX22 protein is tightly controlled even in plants overexpressing BBX22. An analysis of BBX22 degradation kinetics shows that the protein has a short half-life under both dark and light conditions. COP1 mediates the degradation of BBX22 in the dark. Although dispensable in the dark, HY5 contributes to the degradation of BBX22 in the light. The constitutive photomorphogenic development of the cop1 mutant is enhanced in cop1BBX22ox plants, which show a short hypocotyl, high anthocyanin accumulation, and expression of light-responsive genes. Exaggerated light responsiveness is also observed in cop1BBX22ox seedlings grown under short-day conditions. Therefore, the proper accumulation of BBX22 is crucial for plants to maintain optimal growth when grown in the dark as well as to respond to seasonal changes in daylength.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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