Centre for Cellular and Molecular Biology, Hyderabad, India.
PLoS One. 2013;8(3):e57860. doi: 10.1371/journal.pone.0057860. Epub 2013 Mar 5.
This study demonstrates the effects of simulated microgravity on E. coli K 12 MG1655 grown on LB medium supplemented with glycerol. Global gene expression analysis indicated that the expressions of hundred genes were significantly altered in simulated microgravity conditions compared to that of normal gravity conditions. Under these conditions genes coding for adaptation to stress are up regulated (sufE and ssrA) and simultaneously genes coding for membrane transporters (ompC, exbB, actP, mgtA, cysW and nikB) and carbohydrate catabolic processes (ldcC, ptsA, rhaD and rhaS) are down regulated. The enhanced growth in simulated gravity conditions may be because of the adequate supply of energy/reducing equivalents and up regulation of genes involved in DNA replication (srmB) and repression of the genes encoding for nucleoside metabolism (dfp, pyrD and spoT). In addition, E. coli cultured in LB medium supplemented with glycerol (so as to protect the cells from freezing temperatures) do not exhibit multiple stress responses that are normally observed when cells are exposed to microgravity in LB medium without glycerol.
本研究展示了模拟微重力对在补充有甘油的 LB 培养基中生长的大肠杆菌 K12 MG1655 的影响。全基因表达分析表明,与正常重力条件相比,模拟微重力条件下有数百个基因的表达发生了显著改变。在这些条件下,适应应激的基因(sufE 和 ssrA)上调,同时编码膜转运蛋白(ompC、exbB、actP、mgtA、cysW 和 nikB)和碳水化合物分解代谢过程(ldcC、ptsA、rhaD 和 rhaS)的基因下调。在模拟重力条件下的增强生长可能是由于能量/还原当量的充足供应以及参与 DNA 复制的基因(srmB)的上调和编码核苷代谢的基因(dfp、pyrD 和 spoT)的抑制。此外,在补充有甘油的 LB 培养基中培养的大肠杆菌(以防止细胞在低温下冻结)不会表现出通常在没有甘油的 LB 培养基中暴露于微重力时观察到的多种应激反应。