Gupta Anjali, Pandey Priyul, Gupta Rinkesh, Tiwari Sapna, Singh Shailendra Pratap
Department of Botany, Centre of Advanced Study in Botany, Institute of Science, Banaras Hindu University, Varanasi, UP 221005 India.
Physiol Mol Biol Plants. 2023 Dec;29(12):1915-1930. doi: 10.1007/s12298-023-01386-6. Epub 2023 Nov 18.
Cyanobacteria are ancestors of chloroplast and perform oxygen-evolving photosynthesis similar to higher plants and algae. However, an obligatory requirement of photons for their growth results in the exposure of cyanobacteria to varying light conditions. Therefore, the light environment could act as a signal to drive the developmental processes, in addition to photosynthesis, in cyanobacteria. These Gram-negative prokaryotes exhibit characteristic light-dependent developmental processes that maximize their fitness and resource utilization. The development occurring in response to radiance (photomorphogenesis) involves fine-tuning cellular physiology, morphology and metabolism. The best-studied example of cyanobacterial photomorphogenesis is chromatic acclimation (CA), which allows a selected number of cyanobacteria to tailor their light-harvesting antenna called phycobilisome (PBS). The tailoring of PBS under existing wavelengths and abundance of light gives an advantage to cyanobacteria over another photoautotroph. In this work, we will provide a comprehensive update on light-sensing, molecular signaling and signal cascades found in cyanobacteria. We also include recent developments made in other aspects of CA, such as mechanistic insights into changes in the size and shape of cells, filaments and carboxysomes.
蓝细菌是叶绿体的祖先,进行类似于高等植物和藻类的放氧光合作用。然而,光子对其生长的必需需求导致蓝细菌暴露于不同的光照条件下。因此,除光合作用外,光照环境还可作为一种信号来驱动蓝细菌的发育过程。这些革兰氏阴性原核生物表现出典型的光依赖性发育过程,以最大化其适应性和资源利用。响应辐射发生的发育(光形态建成)涉及对细胞生理、形态和代谢的精细调节。蓝细菌光形态建成研究得最充分的例子是色适应(CA),它使特定数量的蓝细菌能够调整其称为藻胆体(PBS)的光捕获天线。在现有波长和光照强度下对PBS进行调整,使蓝细菌相对于其他光合自养生物具有优势。在这项工作中,我们将全面更新蓝细菌中发现的光感知、分子信号传导和信号级联。我们还纳入了CA其他方面的最新进展,例如对细胞、丝状体和羧酶体大小和形状变化的机制性见解。