| Title | lipid metabolism |
|---|---|
| Description | To optimize squalene retention, we systematically engineered membrane morphology and modified lipid metabolism. Compared with the control group, different lipid subclasses exhibited characteristic changes, overexpression of plsC, murG, and clsC significantly elevated phosphatidylethanolamine (PE) content; in contrast, overexpression of dgs led to a marked decrease in PE levels with a concurrent substantial increase in FA content, accounting for 95 % of the total lipid increment. |
| Organism | Escherichia coli |
| Data Type | Lipidome Data by Mass Spectrometry (MS) |
| Data Accessibility | Open-access |
| BioProject | PRJCA038058 |
| Release Date | 2025-07-26 |
| Submitter | Jiangming Zhu (zhujiangming@cemps.ac.cn) |
| Organization | CAS Center for Excellence in Molecular Plant Sciences / Institute of Plant Physiology and Ecology |
| Submission Date | 2025-04-01 |
HTTP download speed may be slow. It is highly recommended that you download the dataset using a dedicated FTP tool (such as FileZilla Client).
| File ID | File Title | Number/Samples | File Type | File Size | File Suffix | Download |
|---|---|---|---|---|---|---|
| OMIX009638-01 | Absolute Quantitative lipidomome for lipid metabolism. | 1 | Lipidome Data by Mass Spectrometry (MS) | 173.1 KB | xlsx |
| Paper Title | Journal Name | Publish Time | Accession | Citing Type |
|---|---|---|---|---|
| Metabolic engineering of Escherichia coli for squalene overproduction | Synthetic and Systems Biotechnology | 2025-06 | OMIX009638 | Deposit |