Ultraviolet-B acclimation is supported by functionally heterogeneous phenolic peroxidases.

Sci Rep

Department of Plant Biology, Faculty of Sciences, University of Pécs, Ifjúság u. 6, Pecs, 7624, Hungary.

Published: October 2020

Tobacco plants were grown in plant chambers for four weeks, then exposed to one of the following treatments for 4 days: (1) daily supplementary UV-B radiation corresponding to 6.9 kJ m d biologically effective dose (UV-B), (2) daily irrigation with 0.1 mM hydrogen peroxide, or (3) a parallel application of the two treatments (UV-B + HO). Neither the HO nor the UV-B treatments were found to be damaging to leaf photosynthesis. Both single factor treatments increased leaf HO contents but had distinct effects on various HO neutralising mechanisms. Non-enzymatic HO antioxidant capacities were increased by direct HO treatment only, but not by UV-B. In contrast, enzymatic HO neutralisation was mostly increased by UV-B, the responses showing an interesting diversity. When class-III peroxidase (POD) activity was assayed using an artificial substrate (ABTS, 2,2'-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid)), both treatments appeared to have a positive effect. However, only UV-B-treated leaves showed higher POD activities when phenolic compounds naturally occurring in tobacco leaves (chlorogenic acid or quercetin) were used as substrates. These results demonstrate a substrate-dependent, functional heterogeneity in POD and further suggest that the selective activation of specific isoforms in UV-B acclimated leaves is not triggered by excess HO in these leaves.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7530754PMC
http://dx.doi.org/10.1038/s41598-020-73548-5DOI Listing

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