Created 2024-12-20T23:47:47+00:00 by LN Anderson ; Last updated 2025-05-09T15:55:34+00:00 S. elongatus PCC 7942 Circadian Control Bioproduction Metabolomics (PB-DP5) The purpose of this experiment was to evaluate how circadian clock regulation impacts carbon partitioning between storage, growth, and...
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Created 2024-12-20T23:47:47+00:00 by LN Anderson ; Last updated 2025-05-09T15:55:34+00:00 S. elongatus PCC 7942 Circadian Control Bioproduction Transcriptomics (PB-DP3) The purpose of this experiment was to evaluate how circadian clock regulation impacts carbon partitioning between storage, growth...
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Created on 2024-10-16T17:27:40+00:00 by LN Anderson ; Last updated 2025-08-01T15:13:46+00:00. S. elongatus PCC 7942 LiP and TPP Structural Proteomics (JM-PB-DP3) The purpose of this experiment was to investigate structural alterations in proteins involved in central carbon metabolism and...
Currently pending public release.
Currently pending public release.
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Last updated by LN Anderson on 2025-09-03T17:50:50+00:00 S. elongatus PCC 7942 Carbon Metabolism Proteomics (MC-DP2) The purpose of this experiment was to understand the regulatory dynamics of carbon fixation in S. elongatus PCC 7942 under light and dark treatment conditions using a tandem mass tag...
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Currently pending public release.
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This study investigates how circadian clock regulation impacts carbon partitioning between storage, growth, and product synthesis in Synechococcus elongatus PCC 7942 in providing insights for potential strategies for enhanced bioproduction. In our analysis we explore circadian regulatory rewiring of...
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Primary publication pre-print. Cite as: arXiv:2410.09346 [q-bio.MN]
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The research goal of this project is to establish model synthetic microbial communities to understand the rules regulating their biological function in order to utilize them as next generation bioproduction platforms capable of reducing carbon and nitrogen footprints in biomanufacturing processes.
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4