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Structural basis and evolution of the photosystem I–light|harvesting ...


Structural basis and evolution of the photosystem I–light-harvesting ...

Structural basis and evolution of the photosystem I–light-harvesting supercomplex of cryptophyte algae

Structural basis and evolution of the photosystem I-light-harvesting ...

Cryptophyte plastids originated from a red algal ancestor through secondary endosymbiosis. Cryptophyte photosystem I (PSI) associates with ...

Structural basis and evolution of the photosystem I-light-harvesting ...

Structural basis and evolution of the photosystem I-light-harvesting supercomplex of cryptophyte algae. Zhao, Long-Sheng, Wang, Peng, Li, Kang, Zhang, Quan ...

Structure, Function, and Evolution of Photosystem I-Light Harvesting ...

This chapter describes our current understanding on the structure and function of PS I from cyanobacteria, red algae, green algae, and land plants.

Structural Diversity of Photosystem I and Its Light-Harvesting System ...

PSII mediates the electrons' transfer from water to the plastoquinone pool and produces electrons, protons, and molecular oxygen, whereas PSI ...

Structural basis for assembly and function of a diatom photosystem I ...

Photosynthetic light-harvesting complexes (LHCs) play a pivotal role in collecting solar energy for photochemical reactions in ...

Structural basis and evolution of the photosystem I–light-harvesting ...

Abstract Cryptophyte plastids originated from a red algal ancestor through secondary endosymbiosis. Cryptophyte photosystem I (PSI) associates with ...

Structural Diversity of Photosystem I and Its Light-Harvesting System ...

Photosystem I (PSI) is one of the most efficient photoelectric apparatus in nature, converting solar energy into condensed chemical energy ...

Structural Diversity of Photosystem I and Its Light-Harvesting System ...

The PSI structures of oxygenic photosynthetic organisms, namely cyanobacteria, eukaryotic algae, and plants, have undergone great variation ...

Plant Photosystem I Design in the Light of Evolution - ScienceDirect

Photosystem I (PSI) is a membrane protein complex that catalyzes sunlight-driven transmembrane electron transfer as part of the photosynthetic machinery.

Structural Diversity in Eukaryotic Photosynthetic Light Harvesting

Through evolution and natural selection, photosynthetic organisms have flourished in almost all aquatic and terrestrial environments. This is ...

Structural basis for the absence of low-energy chlorophylls in ... - eLife

Oxygenic photosynthetic reactions convert light energy into chemical energy and produce molecular oxygen, thereby maintaining the aerobic life ...

The structure and function of eukaryotic photosystem I - ScienceDirect

Eukaryotic photosystem I consists of two functional moieties: the photosystem I core, harboring the components for the light-driven charge separation and the ...

The structural basis for light acclimation in phycobilisome ... - Nature

Photosynthetic organisms adapt to changing light conditions by manipulating their light harvesting complexes. Biophysical, biochemical ...

Molecular diversity and evolution of far-red light-acclimated ...

The analysis suggests that FRL-specific photosystem I subunits arose relatively late during the evolution of cyanobacteria when compared with ...

Structural basis of light‐harvesting in the photosystem II core complex

In the present review, the recent explosive increase in available structural information about the PSII core complex based on X-ray ...

Evolution of Thylakoid Structural Diversity - Annual Reviews

Structural basis and evolution of the photosystem I-light-harvesting supercomplex of cryptophyte algae. . Plant Cell 35:(7):2449–63.

Structural basis and evolution of the photosystem I–light-harvesting ...

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The structure of plant photosystem I super-complex at 2.8 Å resolution

The structure includes 16 subunits and more than 200 prosthetic groups, which are mostly light harvesting pigments. The complete structures of ...

Light Harvesting in Fluctuating Environments: Evolution and ... - MDPI

Light harvesting takes place in the inner chloroplast membranes (thylakoids) by multi-unit pigment-protein complexes known as photosystems. The photosystems ...