Department of Biology, University of the Pacific, Stockton, CA 95211, USA.
Microbiology (Reading). 2021 Nov;167(11). doi: 10.1099/mic.0.001111.
Hormogonia are motile filaments produced by many filamentous cyanobacteria that function in dispersal, phototaxis and the establishment of nitrogen-fixing symbioses. The gene regulatory network promoting hormogonium development is initiated by the hybrid histidine kinase HrmK, which in turn activates a sigma factor cascade consisting of SigJ, SigC and SigF. In this study, cappable-seq was employed to define the primary transcriptome of developing hormogonia in the model filamentous cyanobacterium ATCC 29133 in both the wild-type, and , and mutant strains 6 h post-hormogonium induction. A total of 1544 transcriptional start sites (TSSs) were identified that are associated with protein-coding genes and are expressed at levels likely to lead to biologically relevant transcripts in developing hormogonia. TSS expression among the sigma-factor deletion strains was highly consistent with previously reported gene expression levels from RNAseq experiments, and support the current working model for the role of these genes in hormogonium development. Analysis of SigJ-dependent TSSs corroborated the presence of the previously identified J-Box in the -10 region of SigJ-dependent promoters. Additionally, the data presented provides new insights on sequence conservation within the -10 regions of both SigC- and SigF-dependent promoters, and demonstrates that SigJ and SigC coordinate complex co-regulation not only of hormogonium-specific genes at different loci, but within an individual operon. As progress continues on defining the hormogonium gene regulatory network, this data set will serve as a valuable resource.
类菌形体是许多丝状蓝藻产生的可运动丝状体,在分散、趋光性和固氮共生关系的建立中发挥作用。促进类菌形体发育的基因调控网络由混合组氨酸激酶 HrmK 启动,HrmK 反过来又激活由 SigJ、SigC 和 SigF 组成的σ 因子级联反应。在这项研究中,cappable-seq 被用于定义模型丝状蓝藻 ATCC 29133 中发育中的类菌形体的初级转录组,包括野生型、 和 缺失突变体菌株在类菌形体诱导后 6 小时。共鉴定出 1544 个转录起始位点 (TSS),这些 TSS 与编码蛋白的基因相关,并且在发育中的类菌形体中表达的水平可能导致具有生物学意义的转录本。σ 因子缺失菌株中的 TSS 表达与之前从 RNAseq 实验中报告的基因表达水平高度一致,并且支持这些基因在类菌形体发育中的作用的当前工作模型。对 SigJ 依赖性 TSS 的分析证实了先前在 SigJ 依赖性启动子的-10 区域中发现的 J-Box 的存在。此外,所提供的数据提供了 SigC-和 SigF 依赖性启动子的-10 区域内序列保守性的新见解,并表明 SigJ 和 SigC 不仅协调不同基因座上类菌形体特异性基因的复杂共调控,而且还协调单个操纵子内的基因的复杂共调控。随着定义类菌形体基因调控网络的工作不断推进,该数据集将成为一个有价值的资源。