AbstractPhotosynthetic purple bacteria have developed sophisticated processes to adapt their photosynthetic unit towards changes in light illumination in which the cells grow. Some purple bacteria show pronounced modification of their PSU from changing the composition and content of photosynthetic pigments, i.e. carotenoids, to replacing different composition of polypeptides that alter the Qy absorption bands of bacteriochlorophyll. Adjusting the spectrum by shifting spectral band position or tuning absorption intensity of spectral band are keys to collect light energy at specific ecological niches they inhabit. Furthermore photoprotection system will ensure the complex from damage
Properties of specific prokaryotic groups Physiological groups The anoxygenic phototrophic pur...
This chapter presents a discussion of what can be determined about how the purple photosynthetic bac...
AbstractA peripheral light-harvesting complex from the aerobic purple bacterium Roseobacter (R.) den...
AbstractPhotosynthetic purple bacteria have developed sophisticated processes to adapt their photosy...
AbstractA typical purple bacterial photosynthetic unit consists of two types of light-harvesting com...
Improvements to photosynthetic efficiency could be achieved by manipulating pigment biosynthetic pat...
ABSTRACT Photosynthesisprovides an example of a natural process that has been optimized during evolu...
Typical purple bacterial photosynthetic units consist of light harvesting one/reaction centre ‘core’...
The LH1 complex is the major light-harvesting antenna of purple photosynthetic bacteria. Its role i...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
Carotenoids are important photosynthetic pigments that play key roles in light harvesting and energy...
AbstractTwo spectral forms of the peripheral light-harvesting complex (LH2) from the purple sulfur p...
Purple bacteria are metabolically-fiexible organisms that have been used widely in the study of the ...
Improvements to photosynthetic efficiency could be achieved by manipulating pigment biosynthetic pat...
Purple photosynthetic bacteria achieve remarkably high light harvesting efficiency, thus reconciling...
Properties of specific prokaryotic groups Physiological groups The anoxygenic phototrophic pur...
This chapter presents a discussion of what can be determined about how the purple photosynthetic bac...
AbstractA peripheral light-harvesting complex from the aerobic purple bacterium Roseobacter (R.) den...
AbstractPhotosynthetic purple bacteria have developed sophisticated processes to adapt their photosy...
AbstractA typical purple bacterial photosynthetic unit consists of two types of light-harvesting com...
Improvements to photosynthetic efficiency could be achieved by manipulating pigment biosynthetic pat...
ABSTRACT Photosynthesisprovides an example of a natural process that has been optimized during evolu...
Typical purple bacterial photosynthetic units consist of light harvesting one/reaction centre ‘core’...
The LH1 complex is the major light-harvesting antenna of purple photosynthetic bacteria. Its role i...
AbstractUphill energy transfer in the LH2-containing purple bacteria Rhodopseudomonas acidophila, Rh...
Carotenoids are important photosynthetic pigments that play key roles in light harvesting and energy...
AbstractTwo spectral forms of the peripheral light-harvesting complex (LH2) from the purple sulfur p...
Purple bacteria are metabolically-fiexible organisms that have been used widely in the study of the ...
Improvements to photosynthetic efficiency could be achieved by manipulating pigment biosynthetic pat...
Purple photosynthetic bacteria achieve remarkably high light harvesting efficiency, thus reconciling...
Properties of specific prokaryotic groups Physiological groups The anoxygenic phototrophic pur...
This chapter presents a discussion of what can be determined about how the purple photosynthetic bac...
AbstractA peripheral light-harvesting complex from the aerobic purple bacterium Roseobacter (R.) den...