Natural variants of photosystem II subunit D1 tune photochemical fitness to solar intensity.
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In Metabolic Engineering of Eukaryotic Microalgae: Potential and Challenges Come with Great DiversityMetabolic design for cyanobacterial chemical synthesis.Chlamydomonas as a model for biofuels and bio-products production.Production of recombinant proteins in microalgae at pilot greenhouse scale.The Regulation of Light Sensing and Light-Harvesting Impacts the Use of Cyanobacteria as Biotechnology Platforms.Natural isoforms of the Photosystem II D1 subunit differ in photoassembly efficiency of the water-oxidizing complex.Enhancing (crop) plant photosynthesis by introducing novel genetic diversity.Comparison of D1´- and D1-containing PS II reaction centre complexes under different environmental conditions in Synechocystis sp. PCC 6803.The Photosystem II D1-K238E mutation enhances electrical current production using cyanobacterial thylakoid membranes in a bio-photoelectrochemical cell.Enhancing photosynthesis in plants: the light reactions.A Hard Day's Night: Diatoms Continue Recycling Photosystem II in the Dark
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P2860
Natural variants of photosystem II subunit D1 tune photochemical fitness to solar intensity.
description
2012 nî lūn-bûn
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name
Natural variants of photosyste ...... al fitness to solar intensity.
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Natural variants of photosyste ...... al fitness to solar intensity.
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type
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Natural variants of photosyste ...... al fitness to solar intensity.
@en
Natural variants of photosyste ...... al fitness to solar intensity.
@nl
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Natural variants of photosyste ...... al fitness to solar intensity.
@en
Natural variants of photosyste ...... al fitness to solar intensity.
@nl
P2093
P2860
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P1476
Natural variants of photosyste ...... cal fitness to solar intensity
@en
P2093
G Charles Dismukes
Gennady M Ananyev
Mario A Cornejo
Stephen P Mayfield
Susan S Golden
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P304
P356
10.1074/JBC.M112.394668
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P577
2012-12-27T00:00:00Z