| Literature DB >> 28282853 |
María Isabel Duran1, Cesar González2, Alison Acosta3, Andrés F Olea4, Katy Díaz5, Luis Espinoza6.
Abstract
Brassinosteroids (BRs) are plant hormones that promote growth in different plant organs and tissues. The structural requirements that these compounds should possess to exhibit this biological activity have been studied. In this work, a series of known BR analogs 5-15, were synthesized starting from hyodeoxycholic acid 4, and maintaining the alkyl side chain as cholic acid or its methyl ester. The growth-promoting effects of brassinolide (1) and synthesized analogs were evaluated by using the rice lamina inclination assay at concentrations ranging from 1 × 10-8-1 × 10-6 M. Our results indicate that in this concentration range the induced bending angle of rice seedlings increases with increasing concentration of BRs. Analysis of the activities, determined at the lowest tested concentration, in terms of BR structures shows that the 2α,3α-dihydroxy-7-oxa-6-ketone moiety existing in brassinolide is required for the plant growing activity of these compounds, as it has been proposed by some structure-activity relationship studies. The effect of compound 8 on cell elongation was assessed by microscopy analysis, and the results indicate that the growth-promoting effect of analog 8 is mainly due to cell elongation of the adaxial sides, instead of an increase on cell number.Entities:
Keywords: brassinosteroid analogs; lamina inclination test; plant-growth regulators; synthesis
Mesh:
Substances:
Year: 2017 PMID: 28282853 PMCID: PMC5372532 DOI: 10.3390/ijms18030516
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Figure 1Brassinolide (1), castasterone (2), typhasterol (3) and hyodeoxycholic acid (4).
Figure 2Brassinosteroid analogs obtained from hyodeoxycholic acid (4).
Scheme 1Synthesis of hyodeoxycholic acid derivatives 5, 7, 9 and brassinosteroid analogs 6, 10, 12, 13 and 15. Reagents and conditions: (a) Tf2O/DMAO/CH2Cl2, 0 °C, 24 h.; (b) OsO4 4%/NMO, acetone, r.t., 72 h.; (c) Ac2O/DMAP, CH2Cl2/py, r.t., 30 min.; (d) (CF3SO2)2/H2O2/CHCl3, 0 °C, 24 h.; (e) K2CO3 15% (aqueous solution)/CH3OH, reflux, 1 h. Derivative 5 has been previously reported [26].
δ13C-RMN (CDCl3, 100.6 MHz) for compounds 10, 12, 13 and 15.
| C | 10 | 12 * | 13 | 15 * |
|---|---|---|---|---|
| 1 | 33.69 | 34.04 | 31.74 | 32.40 |
| 2 | 27.84 | 28.90 | 27.37 | 28.51 |
| 3 | 68.48 | 65.49 | 69.43 | 66.95 |
| 4 | 29.79 | 33.39 | 32.86 | 36.57 |
| 5 | 42.64 | 42.88 | 79.53 | 81.59 |
| 6 | 176.11 | 179.68 | 174.73 | 178.28 |
| 7 | 70.47 | 71.75 | 38.02 | 38.79 |
| 8 | 39.43 | 40.79 | 34.70 | 36.36 |
| 9 | 58.43 | 59.49 | 57.91 | 59.09 |
| 10 | 36.18 | 37.25 | 39.58 | 40.88 |
| 11 | 22.15 | 23.26 | 22.09 | 23.27 |
| 12 | 39.64 | 41.01 | 39.52 | 40.97 |
| 13 | 42.66 | 43.82 | 42.61 | 43.87 |
| 14 | 55.81 | 57.12 | 56.00 | 57.46 |
| 15 | 25.17 | 28.83 | 25.15 | 28.51 |
| 16 | 24.80 | 25.76 | 24.75 | 26.32 |
| 17 | 51.52 | 52.54 | 55.37 | 56.54 |
| 18 | 11.79 | 12.21 | 11.67 | 12.15 |
| 19 | 14.58 | 14.93 | 11.48 | 11.83 |
| 20 | 35.32 | 36.62 | 35.18 | 36.62 |
| 21 | 18.14 | 18.63 | 18.04 | 18.62 |
| 22 | 30.81 | 31.95 | 30.66 | 31.97 |
| 23 | 31.03 | 32.15 | 30.90 | 32.12 |
| 24 | 174.59 | 178.09 | 174.39 | 178.20 |
| CH3O | 51.46 | - | 51.39 | - |
| CH3 | 170.32 | - | 170.02 | - |
| 21.38 | - | 21.19 | - |
* The 13C-NMR spectrum of compounds 12 and 15 was recorded in CD3OD solution.
Figure 3Major observed 2JHC (red arrows) and 3JHC (blue arrows) correlations of hydrogens H-5α and H-7 for compound 10 (7-oxalactone derivative (a)) and compound 13 (6-oxolactone derivative (b)).
Figure 4Rice-lamina assay using the second leaf lamina joints of excised leaf segments treated with brassinolide (1) and more active BR analogs at 1 × 10−6, 1 × 10−7 and 1 × 10−8 M. Scale bars = 2 cm.
Effect of brassinolide and analogs 5, 6, 8, 12 and 15, on the lamina inclination of rice seedlings.
| BRs | Angle Degrees between Laminae and Sheaths (°) (± Standard Error) | ||
|---|---|---|---|
| Concentration (M) | |||
| Compounds | 1 × 10−6 | 1 × 10−7 | 1 × 10−8 |
| 11 ± 2.5 | 1 ± 0.0 | 0 ± 0.0 | |
| 47 ± 4.7 | 29 ± 4.5 | 0 ± 1.0 | |
| 49 ± 2.0 | 29 ± 6.3 | 7 ± 2.4 | |
| 26 ± 2.5 | 26 ± 2.5 | 15 ± 0.0 | |
| 23 ± 6.0 | 18 ± 8.7 | 10 ± 0.0 | |
| Brassinolide (C+) | 64 ± 4.8 | 30 ± 4.1 | 28 ± 2.9 |
| Control (C−) | 20 ± 0 | ||
Figure 5Changes induced by analog 8 in mesophyll cell length in second lamina of rice plants. Longitudinal sections of adaxial sides of the second leaf lamina joint: (a) negative control; (b) in the presence of analog 8. Optic Microscope 40×, Scale of bars = 20 µm.