Department of Microbiology, Faculty of Science, Chulalongkorn University, Phayathai Road, Pathumwan, Bangkok, 10330, Thailand.
Faculty of Design, Kyushu University, Fukuoka, 815-8540, Japan.
Sci Rep. 2022 Aug 12;12(1):13190. doi: 10.1038/s41598-022-17406-6.
Substantial evidence has been accumulated about the molecular basis underlying halotolerance; however, insights into the regulatory networks for relevant genes and mechanisms of their interplay remain elusive. Here, we present a comprehensive transcriptome investigation, using RNA sequencing, of specific metabolic pathways and networks in a halotolerant cyanobacterium, Halothece sp. PCC7418, including the circadian rhythm profile. Dissecting the transcriptome presented the intracellular regulation of gene expressions, which was linked with ion homeostasis, protein homeostasis, biosynthesis of compatible solutes, and signal transduction, for adaptations to high-salinity environments. The efficient production and distribution of energy were also implicated in this acclimation process. Furthermore, we found that high-salinity environments had a dramatic effect on the global transcriptional expression regulated by the circadian clock. Our findings can provide a comprehensive transcriptome for elucidating the molecular mechanisms underlying halotolerance in cyanobacteria.
关于耐盐性的分子基础已经积累了大量证据;然而,对于相关基因的调控网络及其相互作用机制的深入了解仍难以捉摸。在这里,我们使用 RNA 测序对耐盐蓝藻 Halothece sp. PCC7418 中的特定代谢途径和网络进行了全面的转录组研究,包括昼夜节律谱。对转录组的剖析揭示了与离子稳态、蛋白质稳态、相容溶质生物合成和信号转导相关的基因表达的细胞内调控,以适应高盐环境。高效的能量产生和分配也与这一适应过程有关。此外,我们发现高盐环境对生物钟调控的全局转录表达有显著影响。我们的研究结果可以为阐明蓝藻耐盐性的分子机制提供一个全面的转录组。