2018
DOI: 10.1016/j.algal.2018.10.021
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Recombinant Synechococcus elongatus PCC 7942 for improved zeaxanthin production under natural light conditions

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Cited by 45 publications
(14 citation statements)
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“…This would allow us to obtain genetically modified species of microalgae with ameliorated or decreased enzymatic activities and able to accumulate the desired pigments. Recently, in 2018, Sarnaik et al introduced the exogenous β-carotene oxygenase gene (CrtR) from the strain Synechoccocus elongatus (PCC 7002), to prolong carotenoid pathway toward zeaxanthin production in vivo [110]. Associating the CrtR gene with the insertion of the galactose transporter from Escherichia coli led to respective zeaxanthin yields of 9 mg/g DW and 8 mg/g DW in autotrophic and mixotrophic conditions [110].…”
Section: Recent Applications In Metabolic Engineering For Xanthophylls Productionmentioning
confidence: 99%
See 1 more Smart Citation
“…This would allow us to obtain genetically modified species of microalgae with ameliorated or decreased enzymatic activities and able to accumulate the desired pigments. Recently, in 2018, Sarnaik et al introduced the exogenous β-carotene oxygenase gene (CrtR) from the strain Synechoccocus elongatus (PCC 7002), to prolong carotenoid pathway toward zeaxanthin production in vivo [110]. Associating the CrtR gene with the insertion of the galactose transporter from Escherichia coli led to respective zeaxanthin yields of 9 mg/g DW and 8 mg/g DW in autotrophic and mixotrophic conditions [110].…”
Section: Recent Applications In Metabolic Engineering For Xanthophylls Productionmentioning
confidence: 99%
“…Recently, in 2018, Sarnaik et al introduced the exogenous β-carotene oxygenase gene (CrtR) from the strain Synechoccocus elongatus (PCC 7002), to prolong carotenoid pathway toward zeaxanthin production in vivo [110]. Associating the CrtR gene with the insertion of the galactose transporter from Escherichia coli led to respective zeaxanthin yields of 9 mg/g DW and 8 mg/g DW in autotrophic and mixotrophic conditions [110]. ASX is commercially produced, generally for its human health benefits, and is used as an anti-inflammatory compound and as a skin protector.…”
Section: Recent Applications In Metabolic Engineering For Xanthophylls Productionmentioning
confidence: 99%
“…We initially established a transformation protocol for Phormidium lacuna strains HE10JO and HE10DO by electroporation that was based on protocols for other filamentous cyanobacteria [39][40][41][42]. For integration into cyanobacterial DNA we used homologous recombination, which works efficiently in diverse cyanobacteria such as Synechocystis PCC6803, Synechococcus elongatus PCC7942, or Nostoc Os-1 [43][44][45]. In the transformation vectors, the homologous sequence "sc_7_37" was interrupted by a kanR resistance cassette.…”
Section: Transformation Of Phormidium Lacunamentioning
confidence: 99%
“…Besides, cyanobacterial ux network shows limitations to direct uxes towards acetyl-CoA and the TCA cycle, which restrain their phototrophic production of broad scope molecules such as biofuels and pharmaceutical products [2][3][4][5] . Therefore, researchers have proposed microbial co-culture formats of autotrophic and heterotrophic species that would leverage S. elongatus 2973 for its sucrose-secreting capability to provide the carbon feedstock for heterotrophic synthesis of high value products 6, 7 .…”
Section: Introductionmentioning
confidence: 99%