Key Laboratory of Marine Genetics and Breeding (Ocean University of China), Ministry of Education, Qingdao 266003, Shandong, China.
Key Laboratory of Marine Genetics and Breeding (Ocean University of China), Ministry of Education, Qingdao 266003, Shandong, China.
Gene. 2022 Aug 5;834:146573. doi: 10.1016/j.gene.2022.146573. Epub 2022 May 21.
Arthrospira platensis is a kind of filament cyanobacteria, which is mainly helical with a few linear. The shape of the filaments, such as the length and the pitch, may change with the changes in the environment. Natural Arthrospira platensis FACHB793 is linear, although it has become helical due to a mutation introduced in the process of cultivation. To study the molecular mechanism responsible for the morphological changes of the filaments, two samples were isolated from a natural mutant of Arthrospira platensis FACHB793, which were helical shaped (named A793_H) and linear shaped (named A793_L). Transcriptome sequencing, GO and KEGG enrichment analysis showed that the expression of genes related to or involved in peptidoglycan biosynthesis, beta lactam resistance, photosynthetic antenna protein expression, bacterial secretion, and ABC transporter activity changed between the two samples. The expression of murE and murG in the peptidoglycan biosynthesis pathway and that of oppD in beta lactam resistance were all down-regulated in the helical filaments, which may be related to the longer cell wall and higher peptidoglycan synthesis in linear filaments than helical filaments. In helical filaments, the up-regulation of tatC gene expression in bacterial secretion may be related to the secretion of peptidoglycan degrading enzymes, which may help to change the shape from linear to helical. Moreover, apcA and cpcA in photosynthetic antenna protein expression and nrt and nirA in nitrogen metabolism were all down regulated in the helical filaments, which may be due to the deformed shape of A. platensis FACHB793, resulting in decreased photosynthetic activity in helical filaments. This research provides a foundation for elucidating the possible morphogenetic mechanism of Arthrospira platensis.
钝顶螺旋藻是一种丝状蓝藻,主要呈螺旋状,少数呈直线状。藻丝的形状,如长度和螺距,可能会随着环境的变化而改变。天然钝顶螺旋藻 FACHB793 是直线状的,尽管在培养过程中由于突变而变成了螺旋状。为了研究导致藻丝形态变化的分子机制,从天然钝顶螺旋藻 FACHB793 的突变体中分离出两个样本,它们分别呈螺旋状(命名为 A793_H)和直线状(命名为 A793_L)。转录组测序、GO 和 KEGG 富集分析表明,两个样本之间与肽聚糖生物合成、β内酰胺抗性、光合天线蛋白表达、细菌分泌和 ABC 转运体活性相关的基因表达发生了变化。肽聚糖生物合成途径中 murE 和 murG 的表达以及β内酰胺抗性中的 oppD 的表达在螺旋藻丝中均下调,这可能与直线藻丝比螺旋藻丝具有更长的细胞壁和更高的肽聚糖合成有关。在螺旋藻丝中,细菌分泌中 tatC 基因表达的上调可能与肽聚糖降解酶的分泌有关,这有助于将形状从直线变为螺旋。此外,光合天线蛋白表达中的 apcA 和 cpcA 以及氮代谢中的 nrt 和 nirA 在螺旋藻丝中均下调,这可能是由于 FACHB793 螺旋藻的形状变形,导致螺旋藻丝的光合作用活性降低。本研究为阐明钝顶螺旋藻可能的形态发生机制提供了基础。