| Literature DB >> 30744547 |
Runjie Song1, Jinglong Wang2, Lu Sun1, Yajing Zhang1, Zhenghui Ren1, Baoyu Zhao1, Hao Lu3.
Abstract
BACKGROUND: The indolizidine alkaloid-swainsonine is produced by an endophytic fungus Alternaria oxytropis, which was isolated from locoweeds. Swainsonine has many biological activities such as anti-tumorigenic, anti-viral and bacteriostatic. However, the full complement of metabolites produced by Alternaria oxytropis is not known. This study is a chemical analysis of Alternaria oxytropis metabolites, which not only unravels the potential compounds from the fermentation broth but also in which solvent are they extracted, facilitating industrial application.Entities:
Keywords: Alkaloid; Alternaria oxytropis; Endophytic fungus; Locoweeds; Metabolites
Mesh:
Substances:
Year: 2019 PMID: 30744547 PMCID: PMC6369557 DOI: 10.1186/s12866-019-1408-8
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Fig. 1Summary of chemical substances in Alternaria oxytropis fermentation broth. a 34 identical compounds isolated from the petroleum ether phase and chloroform phase of Alternaria oxytropis (Additional file 1: Table S1). b 18 identical compounds isolated from petroleum ether phase and ethyl acetate phase of Alternaria oxytropis (Additional file 1: Table S2). c 21 identical compounds isolated from chloroform phase and ethyl acetate phase of Alternaria oxytropis (Additional file 1: Table S3). d 13 identical compounds isolated from three phases of Alternaria oxytropis (Additional file 1: Table S4)
LC-MS analysis of JZ1–4 segment of Alternaria oxytropis
LC-MS analysis of JZ5 segment of Alternaria oxytropis
| No. | Molecular formula | Theoretical value | NL |
|---|---|---|---|
| 1 | C10H17NO2 = 183 | 184.1332053 | 7.55E4 |
| 2 | C10H15NO3 = 197 | 198.1124699 | 1.87E5 |
| 3 | C12H17NO4 = 239 | 240.1230345 | 9.21E5 |
| 4 | C10H17NO3 = 199 | 200.1281199 | 1.07 E5 |
| 5 | C12H19NO4 = 241 | 242.1386846 | 7.56 E6 |
| 6 | C10H17NO4 = 215 | 216.1230345 | 5.35E4 |
| 7 | C12H19NO5 = 257 | 258.1335992 | 3.47E5 |
| 8 | C14H21NO6 = 299 | 300.1441639 | 1.19E8 |
| 9 | C10H17NO5 = 231 | 232.1179491 | 3.32E4 |
| 10 | C12H19NO6 = 273 | 274.1285138 | 1.56E5 |
| 11 | C14H21NO7 = 315 | 316.1390785 | 1.93E6 |
| 12 | C16H23NO8 = 357 | 358.1496431 | 4.00E4 |
Note: maximum signal strength greater than 1.00E5 is the allowable range of error
Fig. 2Flowchart of chemical composition analysis of metabolites of Alternaria oxytropis. a The 12 L total fermentation broth were dissolved with appropriate amount of methanol (V = 1:1) overnight at 4 °C, the 23 L supernatant was filtered three times after addition of the alcohol extract. b The methanol and water in the supernatant are volatilized to obtain concentrated substances of Alternaria oxytropis fermentation broth. c The 150 g concentrate is added with water for the subsequent extraction of petroleum ether, chloroform, ethyl acetate and n-butanol. d Packing the column after mixing ten times the weight of the petroleum ether extract with petroleum ether; The petroleum ether phase extract is dissolved in methanol and mixed with the same quality of silica to form a powder, and then subjected to gradient elution with petroleum ether, petroleum ether: acetone (V:V = 7:3, 6:4). e The silica is mixed with chloroform and added to the column with 10 times the weight of the petroleum ether extract; the chloroform phase extract is dissolved in methanol and mixed with the same quality of silica to form a powder, and then subjected to gradient elution with chloroform, chloroform: acetone (V:V = 5:5, 10:13). f The method is the same as e, using chloroform: methanol: aqueous ammonia: water (V:V:V:V = 70:26:2:2) for elution. g The method is the same as e, chloroform: methanol: ammonia: water (9:1:0.1:0.1,8:1:0.1:0.1, 7:2:0.1:0.1, 70:26:2:2) for elution. h and i The purified samples were dissolved in methanol for GC-MS and LC-MS detection. The three independent experiments are presented