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Prochlorococcus is an abundant, cosmopolitan, marine cyanobacterium with ecotypes that vary temporally and spatially across oligotrophic regions of the global ocean. This group of organisms can serve as a model system to understand the accumulation of organic compounds synthesized by primary produce...
2018-10-23 | MTBLS567 | MetaboLights

We compared changes induced by the addition of 100 nM and 5 mM glucose on the proteome and metabolome complements in Synechococcus sp. strains WH8102, WH7803, and BL107 and Prochlorococcus sp. strains MED4, SS120, and MIT9313, grown either under standard light conditions or in d...

2023-02-06 | MTBLS5462 | MetaboLights
RNA-Seq technique was used to obtain the transcriptome map of Prochlorococcus MED4, including operons, untranslated regions, non-coding RNAs, and novel genes. Genome-wide expression profiles revealed that three factors contribute to core genome stabilization. First, a negative correlation between ge...
ORGANISM(S): Prochlorococcus marinus subsp. pastoris str. CCMP1986 
Not available
ORGANISM(S): Prochlorococcus marinus str. MIT 9312;Prochlorococcus marinus MIT9313 
Cyanobacteria Prochlorococcus marinus subsp. pastoris str. CCMP1986 (MED4) and Prochlorococcus marinus str. MIT 9313 (MIT9313) are oceanic oxygenic phototrophs, where MED4 is abundant in surface waters (~0-50 meters) and MIT9313 is abundant at depths of ~100 meters. To explore nitrogen-regulated cha...
ORGANISM(S): Prochlorococcus marinus 
Ultraviolet stress in light/dark synchronized cells of the marine cyanobacterium Prochlorococcus marinus PCC9511
ORGANISM(S): Prochlorococcus marinus 
Carbon fixation plays a central role in determining cellular redox poise, increasingly understood to be a key parameter in cyanobacterial physiology. In the cyanobacterium Prochlorococcus--—the most abundant phototroph in the oligotrophic oceans--—the carbon-concentrating mechanism (CCM) is reduced...
ORGANISM(S): Prochlorococcus marinus subsp. pastoris str. CCMP1986 
We compared changes, induced by the addition of 100 nM and 5 mM glucose in the proteome and metabolome complements in several strains of Synechococcus and Prochlorococcus, growing either under standard light conditions or darkness. Our results demonstrate that glucose is being metabolized by these c...
ORGANISM(S): Prochlorococcus marinus subsp. marinus str. CCMP1375 
2023-01-05 | PXD035660 | Pride
Prochlorococcus Genome sequencing and assembly
Prochlorococcus is the most abundant photosynthetic organism on Earth, contributing significantly to the global primary production and playing a prominent role in biogeochemical cycles. Prochlorococcus requires the capability to accommodate to environmental changes in order to proliferate in oligotr...
ORGANISM(S): Prochlorococcus marinus subsp. marinus str. CCMP1375 
2017-05-03 | PXD005745 | Pride
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