Pollari Maija, Ruotsalainen Virpi, Rantamäki Susanne, Tyystjärvi Esa, Tyystjärvi Taina
Plant Physiology and Molecular Biology, Department of Biology, University of Turku, FI-20014 Turku, Finland.
J Bacteriol. 2009 Jun;191(12):3992-4001. doi: 10.1128/JB.00132-09. Epub 2009 Apr 10.
In cyanobacteria, gene expression is regulated mainly at the level of transcription initiation, which is mediated by the RNA polymerase holoenzyme. The RNA polymerase core is catalytically active, while the sigma factor recognizes promoter sequences. Group 2 sigma factors are similar to the principal sigma factor but are nonessential. Group 2 sigma factors SigB and SigD are structurally the most similar sigma factors in Synechocystis sp. strain PCC 6803. Under standard growth conditions, simultaneous inactivation of sigB and sigD genes did not affect the growth, but the photosynthesis and growth of the DeltasigBD strain were slower than in the control strain at double light intensity. Light-saturated electron transfer rates and the fluorescence and thermoluminescence measurements showed that photosynthetic light reactions are fully functional in the DeltasigBD strain, but absorption and 77 K emission spectra measurements suggest that the light-harvesting system of the DeltasigBD strain does not acclimate normally to higher light intensity. Furthermore, the DeltasigBD strain is more sensitive to photoinhibition under bright light because impaired upregulation of psbA genes leads to insufficient PSII repair.
在蓝细菌中,基因表达主要在转录起始水平受到调控,这是由RNA聚合酶全酶介导的。RNA聚合酶核心具有催化活性,而σ因子识别启动子序列。第2组σ因子与主要σ因子相似,但并非必需。第2组σ因子SigB和SigD在集胞藻PCC 6803菌株中是结构上最相似的σ因子。在标准生长条件下,sigB和sigD基因的同时失活不影响生长,但在双倍光强下,ΔsigBD菌株的光合作用和生长比对照菌株慢。光饱和电子传递速率以及荧光和热发光测量表明,光合光反应在ΔsigBD菌株中功能完全正常,但吸收光谱和77 K发射光谱测量表明,ΔsigBD菌株的光捕获系统不能正常适应更高的光强。此外,ΔsigBD菌株在强光下对光抑制更敏感,因为psbA基因上调受损导致PSII修复不足。