Yoshikawa Katsunori, Ogawa Kenichi, Toya Yoshihiro, Akimoto Seiji, Matsuda Fumio, Shimizu Hiroshi
Department of Bioinformatic Engineering, Graduate School of Information Science and Technology, Osaka University, Suita, Osaka, Japan.
Department of Chemistry, Graduate School of Science, Kobe University, Kobe, Hyogo, Japan.
Commun Biol. 2021 Mar 16;4(1):343. doi: 10.1038/s42003-021-01875-y.
Increased tolerance to light stress in cyanobacteria is a desirable feature for their applications. Here, we obtained a high light tolerant (Tol) strain of Synechocystis sp. PCC6803 through an adaptive laboratory evolution, in which the cells were repeatedly sub-cultured for 52 days under high light stress conditions (7000 to 9000 μmol m s). Although the growth of the parental strain almost stopped when exposed to 9000 μmol m s, no growth inhibition was observed in the Tol strain. Excitation-energy flow was affected because of photosystem II damage in the parental strain under high light conditions, whereas the damage was alleviated and normal energy flow was maintained in the Tol strain. The transcriptome data indicated an increase in isiA expression in the Tol strain under high light conditions. Whole genome sequence analysis and reverse engineering revealed two mutations in hik26 and slr1916 involved in high light stress tolerance in the Tol strain.
提高蓝藻对光胁迫的耐受性是其应用中一个理想的特性。在此,我们通过适应性实验室进化获得了一株集胞藻PCC6803的高光耐受(Tol)菌株,在该进化过程中,细胞在高光胁迫条件(7000至9000 μmol m s)下反复传代培养52天。尽管亲本菌株在暴露于9000 μmol m s时生长几乎停止,但在Tol菌株中未观察到生长抑制。在高光条件下,由于亲本菌株中光系统II受损,激发能流动受到影响,而在Tol菌株中这种损伤得到缓解且维持了正常的能量流动。转录组数据表明,在高光条件下Tol菌株中isiA表达增加。全基因组序列分析和反向工程揭示了Tol菌株中参与高光胁迫耐受性的hik26和slr1916中的两个突变。