Wei Mengke, Han Chenyang, Zhou Xiujuan, Tong Tianyang, Zhang Jing, Ji Xinmiao, Zhang Peng, Zhang Yanqi, Liu Yan, Zhang Xin, Cai Tiantian, Xie Can
Institutes of Physical Science and Information Technology, Anhui University, Hefei, Anhui, 230039, China.
High Magnetic Field Laboratory, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Science Island, Hefei, Anhui, 230031, China.
Synth Syst Biotechnol. 2024 Apr 15;9(3):522-530. doi: 10.1016/j.synbio.2024.04.009. eCollection 2024 Sep.
The morphology is the consequence of evolution and adaptation. is rod-shaped bacillus with regular dimension of about 1.5 μm long and 0.5 μm wide. Many shape-related genes have been identified and used in morphology engineering of this bacteria. However, little is known about if specific metabolism and metal irons could modulate bacteria morphology. Here in this study, we discovered filamentous shape change of cells overexpressing pigeon MagR, a putative magnetoreceptor and extremely conserved iron-sulfur protein. Comparative transcriptomic analysis strongly suggested that the iron metabolism change and iron accumulation due to the overproduction of MagR was the key to the morphological change. This model was further validated, and filamentous morphological change was also achieved by supplement cells with iron in culture medium or by increase the iron uptake genes such as entB and fepA. Our study extended our understanding of morphology regulation of bacteria, and may also serves as a prototype of morphology engineering by modulating the iron metabolism.
形态是进化和适应的结果。它是杆状芽孢杆菌,尺寸规则,长约1.5微米,宽约0.5微米。许多与形状相关的基因已被鉴定并用于该细菌的形态工程。然而,关于特定代谢和金属离子是否能调节细菌形态知之甚少。在本研究中,我们发现过表达鸽子MagR(一种假定的磁受体和极其保守的铁硫蛋白)的细胞出现丝状形态变化。比较转录组分析强烈表明,由于MagR过量产生导致的铁代谢变化和铁积累是形态变化的关键。该模型得到进一步验证,通过在培养基中补充铁或增加铁摄取基因(如entB和fepA)也实现了丝状形态变化。我们的研究扩展了我们对细菌形态调控的理解,也可能作为通过调节铁代谢进行形态工程的原型。