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  • Evidence for PSII donor-side damage and photoinhibition induced by cadmium treatment on rice (Oryza sativa L.).

Evidence for PSII donor-side damage and photoinhibition induced by cadmium treatment on rice (Oryza sativa L.).

Journal of photochemistry and photobiology. B, Biology (2006-03-17)
Cristina Pagliano, Marco Raviolo, Francesca Dalla Vecchia, Roberto Gabbrielli, Cristina Gonnelli, Nicoletta Rascio, Roberto Barbato, Nicoletta La Rocca
ABSTRACT

The effects of cadmium (from 7.5 to 75 microM) on chloroplasts of rice were studied at the structural and biochemical level. Loss of pigments, reduction of thylakoids and decrease in oxygen evolution and Fv/Fm ratio occur in leaves following cadmium treatment. However, the amount of photosystem II reaction center proteins and that of its light harvesting complex is not affected, indicating that cadmium does not adversely influence the structural organization of this photosystem. In thylakoids isolated from cadmium-treated plants a loss in the capability to reduce 2,6-dichlorophenolindophenol is observed, which is partially restored if diphenylcarbazide is used as an electron donor, indicating that cadmium affects water splitting activity. In thylakoids isolated from control plants and treated with cadmium, diphenylcarbazide preserves most of the photosystem II activity lost after incubation with cadmium; most of the S(2) multiline electron paramagnetic resonance signal from the manganese cluster is lost, whereas the TyrD(+) and other signals are retained. Light-induced photosystem II damage, in vitro, is promoted by Cd-treatment as deduced from the mobility shift of the D1 protein observed by immunoblot.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
1,5-Diphenylcarbazide, reagent grade
Sigma-Aldrich
1,5-Diphenylcarbazide, ACS reagent
Sigma-Aldrich
1,5-Diphenylcarbazide, JIS special grade
Supelco
1,5-Diphenylcarbazide, reag. Ph. Eur., ≥98.0%, for metal titration