Impact of Salinity on the Energy Transfer between Pigment–Protein Complexes in Photosynthetic Apparatus, Functions of the Oxygen-Evolving Complex and Photochemical Activities of Photosystem II and Photosystem I in Two IPaulownia/I Lines

The present study shows the effect of salinity on the functions of thylakoid membranes from two hybrid lines of Paulownia: Paulownia tomentosa x fortunei and Paulownia elongate x elongata, grown in a Hoagland solution with two NaCl concentrations (100 and 150 mM) and different exposure times (10 and...

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Veröffentlicht in:International journal of molecular sciences 2023-02, Vol.24 (4)
Hauptverfasser: Stefanov, Ma, Rashkov, Georgi D, Yotsova, Ekaterina K, Dobrikova, Anelia G, Apostolova, Emilia L
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Sprache:eng
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Zusammenfassung:The present study shows the effect of salinity on the functions of thylakoid membranes from two hybrid lines of Paulownia: Paulownia tomentosa x fortunei and Paulownia elongate x elongata, grown in a Hoagland solution with two NaCl concentrations (100 and 150 mM) and different exposure times (10 and 25 days). We observed inhibition of the photochemical activities of photosystem I (DCPIH[sub.2] → MV) and photosystem II (H[sub.2]O → BQ) only after the short treatment (10 days) with the higher NaCl concentration. Data also revealed alterations in the energy transfer between pigment-protein complexes (fluorescence emission ratios F[sub.735]/F[sub.685] and F[sub.695/]F[sub.685]), the kinetic parameters of the oxygen-evolving reactions (initial S[sub.0]-S[sub.1] state distribution, misses (α), double hits (β) and blocked centers (S[sub.B])). Moreover, the experimental results showed that after prolonged treatment with NaCl Paulownia tomentosa x fortunei adapted to the higher concentration of NaCl (150 mM), while this concentration is lethal for Paulownia elongata x elongata. This study demonstrated the relationship between the salt-induced inhibition of the photochemistry of both photosystems and the salt-induced changes in the energy transfer between the pigment-protein complexes and the alterations in the Mn cluster of the oxygen-evolving complex under salt stress.
ISSN:1422-0067
DOI:10.3390/ijms24043108