Involvement of the Light Signalling Components HY5 and BIC1,2 and SPA1 in Plant Responses to Elevated Daytime UV-B Doses
Pavel Pashkovskiy, Anna Abramova, Mikhail Vereshchagin, Vladimir V. Kuznetsov, Vladimir D. Kreslavski

TL;DR
This study explores how plants respond to increased UV-B light, focusing on the roles of HY5, BIC1,2, and SPA1 proteins in Arabidopsis.
Contribution
The study reveals distinct roles of HY5, BIC1,2, and SPA1 in plant UV-B tolerance and antioxidant responses.
Findings
HY5 is crucial for maintaining photosynthesis and antioxidant responses under UV-B exposure.
SPA1 mutants showed the highest accumulation of UV-protective pigments after UV-B treatment.
BIC1,2 mutants exhibited higher photosynthetic rates after 24 hours of UV-B exposure.
Abstract
Plants respond to ultraviolet B radiation (280–320 nm) with an integrated reaction that includes the reception of the acting stress factor, followed by the generation of reactive oxygen species and damage to macromolecules and membrane structures, as well as changes in cellular metabolism and the formation of protective systems. However, the involvement of key UV-B–related signalling components such as HY5, SPA1 and BIC1 or BIC2 proteins in physiological, biochemical and molecular responses remains insufficiently understood. The effects of 8, 16 and 24 h of UV-B exposure (within an 8 h photoperiod over three days) on the net photosynthetic rate (Pn), chlorophyll fluorescence parameters Y(II) and Fv/Fm, reflecting the functional state of PSII, nonphotochemical quenching (NPQ), pigment contents (Chl(a+b), carotenoids, anthocyanins and UV-absorbing pigments (UAPs) and the expression of key…
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Taxonomy
TopicsLight effects on plants · Plant Gene Expression Analysis · Plant Stress Responses and Tolerance
