4.4 Article

The physiological links of the increased photosystem II activity in moderately desiccated Porphyra haitanensis (Bangiales, Rhodophyta) to the cyclic electron flow during desiccation and re-hydration

Journal

PHOTOSYNTHESIS RESEARCH
Volume 116, Issue 1, Pages 45-54

Publisher

SPRINGER
DOI: 10.1007/s11120-013-9892-4

Keywords

Cyclic electron flow; Desiccation; Photosystem I and II; Porphyra haitanensis

Categories

Funding

  1. Key Project of 863 Program of China [2012AA100806]
  2. Special Project for 973 Program [2011CB411908]
  3. 863 Program of China [2012AA100811-5]
  4. Marine Project [201105023-7]
  5. National Natural Science Foundation of China [41176134]
  6. Prospective Joint Research Project of Jiangsu Province [BY2011188]

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Photosynthetic electron flow changed considerably during desiccation and re-hydration of the intertidal macroalgae Porphyra haitanensis. Activities of both photosystem (PSI) and photosystem (PSII) increased significantly at moderate desiccation levels. Whereas PSII activity was abolished at an absolute water content (AWC) < 24 %, PSI remained active with progressive decreases in AWC to values as low as 16 %. This result suggested that cyclic electron flow around PSI was still active after inactivation of linear electron flow following severe desiccation. Moreover, the PSI activity was restored more rapidly than that of PSII upon re-hydration. Pretreatment of the blades with 3-(3',4'-dichlorophenyl)-1,1-dimethylurea (DCMU) suppressed PSII activity following desiccation to an AWC of similar to 16 % AWC. Cyclic electron flow around PSI decreased markedly in blades pretreated with DCMU than in blades without pretreatment of DCMU during re-hydration in seawater containing DCMU. All results suggested that the activity of PSII under desiccation conditions plays an important role in the operation of cyclic electron flow during desiccation and its recovery during re-hydration. Therefore, we proposed the PSII activity during desiccation could eventually lead to the accumulation of NADPH, which could serve as electron donor for P700(+) and promote its recovery during re-hydration, thereby favoring the operation of cyclic electron flow.

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