Weaker photosynthetic acclimation to fluctuating than to corresponding steady UVB radiation treatments in grapevines

Author:

Su‐Zhou Chenxing123ORCID,Durand Maxime2ORCID,Aphalo Pedro J.2ORCID,Martinez‐Abaigar Javier4ORCID,Shapiguzov Alexey25ORCID,Ishihara Hirofumi2ORCID,Liu Xu13ORCID,Robson T. Matthew26ORCID

Affiliation:

1. College of Enology, Northwest A&F University Yangling Shaanxi China

2. Organismal and Evolutionary Biology (OEB), Viikki Plant Science Centre (ViPS), Faculty of Biological and Environmental Sciences University of Helsinki Helsinki Finland

3. Shaanxi Engineering Research Center for Viti‐Viniculture Yangling Shaanxi China

4. Faculty of Science and Technology University of La Rioja Spain

5. Natural Resources Institute Finland (Luke), Production Systems Finland

6. National School of Forestry, University of Cumbria Ambleside UK

Abstract

AbstractThe effects of transient increases in UVB radiation on plants are not well known; whether cumulative damage dominates or, alternately, an increase in photoprotection and recovery periods ameliorates any negative effects. We investigated photosynthetic capacity and metabolite accumulation of grapevines (Vitis vinifera Cabernet Sauvignon) in response to UVB fluctuations under four treatments: fluctuating UVB (FUV) and steady UVB radiation (SUV) at similar total biologically effective UVB dose (2.12 and 2.23 kJ m−2 day−1), and their two respective no UVB controls. We found a greater decrease in stomatal conductance under SUV than FUV. There was no decrease in maximum yield of photosystem II (Fv/Fm) or its operational efficiency (ɸPSII) under the two UVB treatments, and Fv/Fm was higher under SUV than FUV. Photosynthetic capacity was enhanced under FUV in the light‐limited region of rapid light‐response curves but enhanced by SUV in the light‐saturated region. Flavonol content was similarly increased by both UVB treatments. We conclude that, while both FUV and SUV effectively stimulate acclimation to UVB radiation at realistic doses, FUV confers weaker acclimation than SUV. This implies that recovery periods between transient increases in UVB radiation reduce UVB acclimation, compared to an equivalent dose of UVB provided continuously. Thus, caution is needed in interpreting the findings of experiments using steady UVB radiation treatments to infer effects in natural environments, as the stimulatory effect of steady UVB is greater than that of the equivalent fluctuating UVB.

Funder

Academy of Finland

China Scholarship Council

Publisher

Wiley

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