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Published on: June 4, 2019
Modified ppk Expression Alters Temporal Transcriptional and Phosphorus-Nitrogen Responses to Phosphate Fluctuation in
Sijia Shen1,2, Enci Ye1,2, Tao Li1,3
1Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, China.
Abstract:
Phosphate availability fluctuates widely in aquatic environments, yet how engineering the regulatory context of polyphosphate kinase affects cyanobacterial responses to such fluctuations remains unclear. Here, the wild-type strain of Synechococcus sp. PCC 7002 and Dppk, a modified ppk-expression strain derived from the WT background, were subjected to phosphate starvation followed by phosphate resupply. Dense RT-qPCR sampling was used to resolve rapid ppk-expression dynamics, and time-resolved RNA sequencing was performed at seven stages with four biological replicates per condition. WT displayed rapid, stage-dependent changes in ppk expression, including a pronounced late induction after phosphate resupply, whereas Dppk showed a more moderate temporal pattern. Transcriptome-wide analyses further revealed distinct basal states and response trajectories between the strains. Functional analyses linked these differences to photosynthesis-related processes, phosphate transport, and polyphosphate metabolism. These findings indicate that refactoring ppk expression alters both target-gene kinetics and the temporal organization of the broader phosphate-responsive transcriptional network.
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