| Literature DB >> 26839041 |
Chao Yuan1, Yu-Hua Guo2, Hai-Ying Wang3, Xiao-Jun Ma2, Tao Jiang2, Jun-Ling Zhao1, Zhong-Mei Zou2, Gang Ding2.
Abstract
Three new polyketides myxotritones A-C (2-4), together with a new natural product 7,8-dihydro-7R,8S-dihydroxy-3,7-dimethyl-2-benzopyran-6-one (1) were obtained from the endolichenic fungus Myxotrichum sp. by using OMSAC (One Strain, Many Compounds) method. The planar structures of these new compounds were determined by NMR experiment and HRESIMS data, and the absolute configuration of 1 was established by X-ray diffraction, and the stereochemistry of the new compounds 2-4 were determined by same biosynthesis origin, and similar CD spectra with 1. Allelopathic test showed that compound 4 significantly retarded root elongation of Arabidopsis thaliana seed, indicating that this fungus might contribute to the defense of its host lichen. From the view of biosynthetic pathway, all four compounds 1-4 might be originated from Non-Reduced Polyketide synthase (NR-PKS).Entities:
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Year: 2016 PMID: 26839041 PMCID: PMC4738244 DOI: 10.1038/srep19350
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Diverse skeleton polyketides isolated from the endolichenic fungus Myxotrichum sp.
Figure 2Structures of compounds (1–4).
Figure 3X-ray crystallographic structure of (1).
Figure 4Key HMBC correlations of myxotritone (A–C)(2–4).
Figure 5Experimental ECD of compounds (1–4).
Figure 6Possible pathway for the biosynthesis of (1–4).
Figure 7Effect of compounds (1–4) on seedling growth of A. thaliana.
(A) The growth of A.thaliana on Petri dishes with different concentrations of compound (4) at 8, 16 and 32 μg/mL, and DMSO was used as blank control with the same volume. (B) The inhibition on A.thaliana root growth of compounds (1–4) at different concentrations.
1H (600MHz) and 13C NMR (150 MHz) spectroscopic data (MeOH-d4) of myxotritone A–C (2–4).
| No. | 2 | 3 | 4 | |||
|---|---|---|---|---|---|---|
| 1 | 145.3 | 7.48, d (1.8) | 145.9 | 7.57, d (1.8) | 145.3 | 7.47, t (1.2) |
| 2 | ||||||
| 3 | 161.1 | 161.6 | 162.3 | |||
| 4 | 104.2 | 6.69, s | 105.3 | 7.07, s | 104.9 | 6.39, s |
| 5 | 111.6 | 111.9 | 104.7 | 5.37, d (1.2) | ||
| 6 | 199.4 | 201.1 | 200.1 | |||
| 7 | 76.0 | 76.0 | 76.5 | |||
| 8 | 71.5 | 4.44, d (2.4) | 71.4 | 4.47, d (1.8) | 72.1 | 4.54, d (2.4) |
| 9 | 18.4 | 2.28, s | 18.6 | 2.34, s | 59.9 | 4.29, s |
| 10 | 17.5 | 1.11, s | 17.5 | 1.15, s | 17.7 | 1.16, s |
| 4a | 144.3 | 146.2 | 146.7 | |||
| 8a | 121.1 | 121.5 | 121.4 | |||
| 1′ | 170.5 | 170.2 | ||||
| 3′ | 69.1 | 5.28, d (15.6) 5.15, d (15.6) | 69.0 | 5.32, d (15.6) 5.28, d (15.6) | ||
| 4′ | 116.8 | 115.7 | ||||
| 5′ | 161.2 | 160.7 | ||||
| 6′ | 119.4 | 120.5 | ||||
| 7′ | 156.3 | 157.5 | ||||
| 8′ | 7.9 | 2.16, s | 61.7 | 4.05, s | ||
| 9′ | 61.0 | 3.90, s | 66.8 | 4.60, s | ||
| 10′ | 21.1 | 3.59, s | 19.0 | 3.79, d (14.4) 3.53, d (14.4) | ||
| 11′ | 57.3 | 3.40, s | ||||
| 3′a | 147.2 | 148.2 | ||||
| 7′a | 107.8 | 107.9 | ||||