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Physiological characterization and light response of the CO-concentrating mechanism in the filamentous cyanobacterium Leptolyngbya sp. CPCC 696.

Authors :
Araujo, Elvin
Patel, Jason
Araujo, Charlotte
Rogers, Susan
Short, Steven
Campbell, Douglas
Espie, George
Source :
Photosynthesis Research; Sep2011, Vol. 109 Issue 1-3, p85-101, 17p
Publication Year :
2011

Abstract

We studied the interactions of the CO-concentrating mechanism and variable light in the filamentous cyanobacterium Leptolyngbya sp. CPCC 696 acclimated to low light (15 μmol m s PPFD) and low inorganic carbon (50 μM Ci). Mass spectrometric and polarographic analysis revealed that mediated CO uptake along with both active Na-independent and Na-dependent HCO transport, likely through Na/HCO symport, were employed to concentrate Ci internally. Combined transport of CO and HCO required about 30 kJ mol of energy from photosynthetic electron transport to support an intracellular Ci accumulation 550-fold greater than the external Ci. Initially, Leptolyngbya rapidly induced oxygen evolution and Ci transport to reach 40-50% of maximum values by 50 μmol m s PPFD. Thereafter, photosynthesis and Ci transport increased gradually to saturation around 1,800 μmol m s PPFD. Leptolyngbya showed a low intrinsic susceptibility to photoinhibition of oxygen evolution up to PPFD of 3,000 μmol m s. Intracellular Ci accumulation showed a lag under low light but then peaked at about 500 μmol photons m s and remained high thereafter. Ci influx was accompanied by a simultaneous, light-dependent, outward flux of CO and by internal CO/HCO cycling. The high-affinity and high-capacity CCM of Leptolyngbya responded dynamically to fluctuating PPFD and used excitation energy in excess of the needs of CO fixation by increasing Ci transport, accumulation and Ci cycling. This capacity may allow Leptolyngbya to tolerate periodic exposure to excess high light by consuming electron equivalents and keeping PSII open. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01668595
Volume :
109
Issue :
1-3
Database :
Complementary Index
Journal :
Photosynthesis Research
Publication Type :
Academic Journal
Accession number :
65426244
Full Text :
https://doi.org/10.1007/s11120-011-9663-z