International audienceThe most ubiquitous cyanobacteria, Synechococcus, have colonized different marine thermal niches through the evolutionary specialization of lineages adapted to different ranges of temperature seawater. We used the strains of Synechococcus temperature ecotypes to study how light utilization has evolved in the function of temperature. The tropical Synechococcus (clade II) was unable to grow under 16 °C but, at temperatures >25 °C, induced very high growth rates that relied on a strong synthesis of the components of the photosynthetic machinery, leading to a large increase in photosystem cross-section and electron flux. By contrast, the Synechococcus adapted to subpolar habitats (clade I) grew more slowly but was able to ...
International audienceMarine Synechococcus play a key role in global oceanic primary productivity. T...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...
International audienceThe most ubiquitous cyanobacteria, Synechococcus, have colonized different mar...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
Temperature is an important factor influencing the distribution of marine picocyanobacteria. However...
International audienceMarine Synechococcus play a key role in global oceanic primary productivity. T...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...
International audienceThe most ubiquitous cyanobacteria, Synechococcus, have colonized different mar...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceMarine Synechococcus cyanobacteria constitute a monophyletic group that displa...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
International audienceThe wide latitudinal distribution of marine Synechococcus cyanobacteria partly...
Temperature is an important factor influencing the distribution of marine picocyanobacteria. However...
International audienceMarine Synechococcus play a key role in global oceanic primary productivity. T...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...
In this study, we develop a mechanistic understanding of how temperature affects growth and photosyn...