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PMID: 24424489 Published · ppublish English Journal Article

Photosystem II function and herbicide binding sites during photoinhibition of spinach chloroplasts in-vivo and in-vitro.

Photosynthesis research ·Vol. 21 ·No. 1 ·1989-07-00 ·Pages 17-26

Chow WS, Osmond CB, Huang LK

Abstract

The time courses of some Photosystem II (PS II) parameters have been monitored during in-vivo and in-vitro photoinhibition of spinach chloroplasts, at room temperature and at 10 °C or 0 °C. Exposing leaf discs of low-light grown spinach at 25 °C to high light led to photoinhibition of chloroplasts in-vivo as manifested by a parallel decrease in the number of functional PS II centres, the variable chlorophyll fluorescence at 77K (F v /F m ), and the number of atrazine-binding sites. When the photoinhibitory treatment was given at 10 °C, the former two parameters declined in parallel but the loss of atrazine-binding sites occurred more slowly and to a lesser extent. During in-vitro photoinhibition of chloroplast thylakoids at 25 °C, the loss of functional PS II centres proceeded slightly more rapidly than the loss of atrazine-binding sites, and this difference in rate was further increased when the thylakoids were photoinhibited at 0 °C. During the recovery phase of leaf discs (up to 9 h) the increases in F v /F m preceded that of the number of functional PS II centres, while only a further decline in the number of atrazine-binding sites was observed. The recovery of variable chlorophyll fluorescence and the concentration of functional PS II centres occurred more rapidly at 25 °C than at 10 °C. These results suggest that the photoinhibition of PS II function is a relatively temperature-independent early photochemical event, whereas the changes in the concentration of herbicide-binding sites appear to be a more complex biochemical process which can occur with a delayed time course.

Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Chow W S
Division of Plant Industry, CSIRO, G.P.O. Box 1600, 2601, Canberra, A.C.T., Australia.
Osmond C B
Huang L K
References (13)
13 references, click to expand
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Article Info
Journal
Photosynthesis research
Abbr.
Photosynth Res
ISSN
0166-8595
Published
1989-07-00
Pages
17-26
Language
English
Region
Netherlands
NLM ID
100954728
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