| Literature DB >> 30037113 |
Zhuo-Xi Zhang1, Xue-Qiong Yang2, Qing-Yan Zhou3, Bang-Yan Wang4, Ming Hu5, Ya-Bin Yang6, Hao Zhou7, Zhong-Tao Ding8.
Abstract
In this study, the co-culture of Nigrospora oryzae and Beauveria bassiana, the endophytes in the seeds of Dendrobium officinale, were examined for metabolite diversity. Five new azaphilones were isolated, and their structures were determined by spectral analysis. In terms of azaphilones, compound 2 had an unprecedented skeleton, with a bicyclic oxygen bridge. The antifungal selectivities of the metabolite produced by N. oryzae against its co-culture fungus, B. bassiana, and common pathogens exhibited competitive interaction in this mix-culture. Compounds 1 and 2 showed obvious nitric oxide (NO) inhibitory activity with ratios of 37%, and 39%, respectively, at a concentration of 50 μM.Entities:
Keywords: Beauveria bassiana; NO inhibitory activity; Nigrospora oryzae; antifungal selectivity; azaphilone; co-culture
Mesh:
Substances:
Year: 2018 PMID: 30037113 PMCID: PMC6100547 DOI: 10.3390/molecules23071816
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of compounds 1–5.
Figure 2Correlation spectroscopy (COSY) and heteronuclear multiple bond correlation (HMBC) correlations of compounds 1–5, and structures of ketodiol and berkazaphilone A.
13C NMR and 1H NMR data of compounds 1–3.
| Pos. | 1 | 2 | 3 | |||
|---|---|---|---|---|---|---|
| δH | δc | δH | δc | δH | δc | |
| 1 | 7.05 (s) | 149.0 | 5.48 (s) | 104.7 | 5.35 (s) | 89.7 |
| 2 | ||||||
| 3 | 4.76 (m) | 75.6 | 4.56 (m) | 74.3 | 4.68 (t, | 71.3 |
| 4 | 2.75, 3.03 (m) | 33.5 | 2.56, 3.13 (m) | 34.1 | 2.43 (dd, | 33.6 |
| 4a | 149.7 | 151.9 | 156.0 | |||
| 5 | 5.58 (s) | 115.6 | 5.95 (s) | 127.2 | 5.96 (s) | 124.7 |
| 6 | 201.0 | 195.1 | 198.0 | |||
| 7 | 78.3 | 75.2 | 75.0 | |||
| 8 | 4.57 (brs) | 73.1 | 3.79 (brs) | 75.8 | 3.81 (s) | 73.4 |
| 8a | 112.7 | 69.0 | 71.1 | |||
| 9 | 5.53 (dd, | 125.8 | 4.56 (m) | 77.0 | 5.69 (dd, | 128.1 |
| 10 | 6.25 (dd, | 133.6 | 2.75 (d, | 48.0 | 6.27 (dd, | 133.9 |
| 11 | 6.02 (m) | 130.2 | 9.74 (t, | 199.8 | 6.07 (m) | 131.0 |
| 12 | 5.77 (m) | 132.0 | 1.34 (s) | 19.4 | 5.77 (m) | 130.3 |
| 13 | 1.77 (d, | 18.1 | 1.76 (d, | 16.8 | ||
| 14 | 1.18 (s) | 18.8 | 1.37 (s) | 18.9 | ||
13C NMR and 1H NMR data of compounds 4 and 5.
| Pos. | 4 | 5 | ||
|---|---|---|---|---|
| 8 | δH | δc | δH | δc |
| 1 | 6.96 (s) | 147.1 | 5.67 (s) | 87.6 |
| 2 | ||||
| 3 | 4.60 (t, | 80.4 | 4.34 (m) | 66.1 |
| 4 | 4.24 (d, | 67.4 | 1.97, 2.15 (m) | 27.3 |
| 4a | 150.6 | 129.2 | ||
| 5 | 5.77 (s) | 115.1 | 198.4 | |
| 6 | 201.7 | 3.99 (s) | 79.6 | |
| 7 | 77.2 | 79.5 | ||
| 8 | 4.41 (brs) | 73.1 | 4.43 (t, | 73.7 |
| 8a | 111.8 | 152.1 | ||
| 9 | 5.51 (dd, | 124.0 | 5.51 (dd, | 129.5 |
| 10 | 6.31 (dd, | 134.2 | 6.18 (dd, | 131.6 |
| 11 | 6.07 (m) | 130.7 | 5.97 (m) | 130.8 |
| 12 | 5.78 (m) | 130.4 | 5.62 (m) | 129.6 |
| 13 | 1.76 (d, | 16.8 | 1.66 (d, | 16.8 |
| 14 | 1.20 (s) | 17.7 | 0.92 (s) | 12.6 |