How do cryptochromes and UVR8 interact in natural and simulated sunlight?

Author:

Rai Neha1ORCID,Neugart Susanne2ORCID,Yan Yan1ORCID,Wang Fang1ORCID,Siipola Sari M1ORCID,Lindfors Anders V3,Winkler Jana Barbro4ORCID,Albert Andreas4ORCID,Brosché Mikael1ORCID,Lehto Tarja5ORCID,Morales Luis O1ORCID,Aphalo Pedro J1ORCID

Affiliation:

1. Organismal and Evolutionary Biology Research Programme, Viikki Plant Science Center, University of Helsinki, Helsinki, Finland

2. Research Area of Plant Quality and Food Security, Leibniz Institute of Vegetable and Ornamental Crops e. V., 14979 Grossbeeren, Germany

3. Finnish Meteorological Institute, Helsinki, Finland

4. Research Unit Environmental Simulation, Helmholtz Zentrum München, Ingolstädter Landstrasse, Neuherberg, Germany

5. School of Forest Sciences, University of Eastern Finland, Joensuu, Finland

Abstract

AbstractCryptochromes (CRYs) and UV RESISTANCE LOCUS 8 (UVR8) photoreceptors perceive UV-A/blue (315–500 nm) and UV-B (280–315 nm) radiation in plants, respectively. While the roles of CRYs and UVR8 have been studied in separate controlled-environment experiments, little is known about the interaction between these photoreceptors. Here, Arabidopsis wild-type Ler, CRYs and UVR8 photoreceptor mutants (uvr8-2, cry1cry2 and cry1cry2uvr8-2), and a flavonoid biosynthesis-defective mutant (tt4) were grown in a sun simulator. Plants were exposed to filtered radiation for 17 d or for 6 h, to study the effects of blue, UV-A, and UV-B radiation. Both CRYs and UVR8 independently enabled growth and survival of plants under solar levels of UV, while their joint absence was lethal under UV-B. CRYs mediated gene expression under blue light. UVR8 mediated gene expression under UV-B radiation, and in the absence of CRYs, also under UV-A. This negative regulation of UVR8-mediated gene expression by CRYs was also observed for UV-B. The accumulation of flavonoids was also consistent with this interaction between CRYs and UVR8. In conclusion, we provide evidence for an antagonistic interaction between CRYs and UVR8 and a role of UVR8 in UV-A perception.

Funder

European Plant Phenotyping Network and Academy of Finland

Academy of Finland

EDUFI

Suomen Kulttuurirahasto

EMBO

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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