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Growth,fluorescence, photosynthetic O2 production and pigment content of salt adapted cultures of Arthrospira (Spirulina) platensis
Authors:Rym Ben Dhiab  Hatem Ben Ouada  Hamadi Boussetta  Fabrice Franck  Amor Elabed  Michel Brouers
Affiliation:(1) Laboratoire de Biotechnologie Marine, Institut National des Sciences et Technologies de la mer, Route de Khniss, BP 59, Monastir, 5000, Tunisia;(2) Laboratoire de Biochimie et de Toxicologie, école Supérieure d’Horticulture, 4042 Chott Mariem, Sousse, Tunisia;(3) Laboratoire de Biochimie et de Photobiologie, Institut de Botanique, Université de Liège, B22, Liege, 4000, Belgium
Abstract:The effect of salt concentration (NaCl) on growth, fluorescence, photosynthetic activities and pigment content of the cyanobacterium Arthrospira platensis has been investigated over 15 days. It has been observed that high NaCl concentration induces an increase of the growth, photosynthetic efficiency (α), phycobilin/chlorophyll ratio and a slight decrease of dark respiration and compensation points. Moreover, high NaCl concentration enhances photosystem II (PSII) activity compared to photosystem I (PSI). Results show that the phycobilin-PSII energy transfer compared to the chlorophyll-PSII (F695,600/F695,440) increases. However, data obtained about the maximal efficiency of PSII photochemistry are controversial. Indeed, the Fv/Fm ratio decreases in salt adapted cultures, while at the same time the trapping flux per PSII reaction center (TR0/RC) and the probability of electron transport beyond QA (0) remain unchanged at the level of the donor and the acceptor sites of PSII. This effect can be attributed to the interference of phycobilin fluorescence with Chl a when performing polyphasic transient measurements.
Keywords:Arthrospira platensis   Cyanobacteria  Fluorescence  Photosynthetic activity  Photosynthetic pigments  Salt stress
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