Kumar Duvvuri Prasanna, Murthy Sistla D S
Department of Biochemistry, Sri Venkateswara University, Tirupati, India-517502.
J Biochem Mol Biol. 2007 Sep 30;40(5):644-8. doi: 10.5483/bmbrep.2007.40.5.644.
Exposure of algae or plants to irradiance from above the light saturation point of photosynthesis is known as high light stress. This high light stress induces various responses including photoinhibition of the photosynthetic apparatus. The degree of photoinhibition could be clearly determined by measuring the parameters such as absorption and fluorescence of chromoproteins. In cyanobacteria and red algae, most of the photosystem (PS) II associated light harvesting is performed by a membrane attached complex called the phycobilisome (PBS). The effects of high intensity light (1000-4000 micromol photons m(-2) s(-1)) on excitation energy transfer from PBSs to PS II in a cyanobacterium Spirulina platensis were studied by measuring room temperature PC fluorescence emission spectra. High light (3000 micromol photons m(-2) s(-1)) stress had a significant effect on PC fluorescence emission spectra. On the other hand, light stress induced an increase in the ratio of PC fluorescence intensity of PBS indicating that light stress inhibits excitation energy transfer from PBS to PS II. The high light treatment to 3000 micromol photons m(-2) s(-1) caused disappearance of 31.5 kDa linker polypeptide which is known to link PC discs together. In addition we observed the similar decrease in the other polypeptide contents. Our data concludes that the Spirulina cells upon light treatment causes alterations in the phycobiliproteins (PBPs) and affects the energy transfer process within the PBSs.
藻类或植物暴露于高于光合作用光饱和点的光照下被称为高光胁迫。这种高光胁迫会引发包括光合机构光抑制在内的各种反应。通过测量诸如色素蛋白的吸收和荧光等参数,可以清楚地确定光抑制的程度。在蓝细菌和红藻中,大多数与光系统(PS)II相关的光能捕获是由一种称为藻胆体(PBS)的膜附着复合物完成的。通过测量室温下藻蓝蛋白(PC)荧光发射光谱,研究了高强度光(1000 - 4000微摩尔光子·米⁻²·秒⁻¹)对蓝细菌钝顶螺旋藻中从PBS到PS II的激发能量转移的影响。高光(3000微摩尔光子·米⁻²·秒⁻¹)胁迫对PC荧光发射光谱有显著影响。另一方面,光胁迫导致PBS的PC荧光强度比值增加,这表明光胁迫抑制了从PBS到PS II的激发能量转移。3000微摩尔光子·米⁻²·秒⁻¹的高光处理导致已知将PC圆盘连接在一起的31.5 kDa连接多肽消失。此外,我们还观察到其他多肽含量有类似的下降。我们的数据表明,钝顶螺旋藻细胞经光照处理后会导致藻胆蛋白(PBP)发生变化,并影响PBS内的能量转移过程。