| Literature DB >> 28510924 |
Shih-Hung Huang1, Rishi Kishore Vishwakarma1, Tzu-Tai Lee2, Hsiao-Sung Chan1, Hsin-Sheng Tsay3,4.
Abstract
BACKGROUND: Gentiana scabra is commonly known as 'Longdan' is an important herb in traditional Chinese medicines, commonly used for the treatment of inflammation, anorexia, indigestion and gastric infections. Iridoids and secoiridoids are main bioactive compounds which attributed to the pharmacological properties of this plant. The use of hairy root cultures as an excellent alternative for the production of pharmaceutically important metabolites in less time period with ensured quality of raw materials.Entities:
Keywords: Gentiana scabra; Hairy root culture; Iridoids and secoiridoids; Plant growth regulators
Year: 2014 PMID: 28510924 PMCID: PMC5430378 DOI: 10.1186/1999-3110-55-17
Source DB: PubMed Journal: Bot Stud ISSN: 1817-406X Impact factor: 2.787
Figure 1-mediated hairy root culture in . (a) Induction of hairy roots from leaves cut end (b) cultured on WPM solid medium 4-weeks (c) cultured on WPM solid medium 8-weeks and (d) cultured on B5 liquid medium 4-weeks. Scale bar = 1.0 cm.
Figure 2Growth patterns of total 24 transformed hairy root clones of . on WPM solid medium compared to non-transformed (Nt) clone. Dry weights (in mg) are of the 8 weeks old grown cultures. Values are the mean ± SD from three replicates.
Figure 3Molecular characterization of transgenic hairy roots. PCR confirmation of some selected transgenic hairy roots of G. scabra showing the amplification of (a) rol B gene amplification (780 bp) (b) and rol C gene amplification (540 bp). Lane M: Molecular weight marker; Lane Nt: non-transgenic line; Lane No. 1–5: transformed hairy root lines; P: positive control.
Figure 4The growth course of hairy root of . in liquid B5 medium. Observations were recorded (dry weight in mg) after 8-weeks of culture.
Figure 5Effect of different culture periods on the production of iridoids and secoiridoids in hairy roots of . . Values are the mean ± SD from three replicates.
Effect of different PGRs on hairy root production and secondary metabolite accumulation in in liquid B5 medium*
| PGR constituents (1 mg/L) | Average dry weight after 4 weeks (mg)** | Weight gain (folds) | Loganic acid (mg/g of dw)** | Sertiamarin (mg/g of dw)** | Gentiopicroside (mg/g of dw)** |
|---|---|---|---|---|---|
| 0 | 188.67 ± 8.08 a | 35.60 | 0.78 ± 0.11 c | 1.70 ± 0.24 c | 43.26 ± 2.28 b |
| IBA | 148.00 ± 9.54 b | 27.92 | 2.86 ± 0.09 b | 1.36 ± 0.12 d | 32.66 ± 1.71 c |
| NAA | 154.00 ± 20.78 b | 29.06 | 1.53 ± 0.17 d | 2.68 ± 0.06 a | 55.19 ± 0.74 a |
| TDZ | 115.67 ± 5.86 c | 21.82 | ND | 0.35 ± 0.01 e | 10.03 ± 0.13 d |
| Zeatin | 156.50 ± 16.26 b | 29.53 | 4.20 ± 0.02 a | 2.43 ± 0.07 b | 51.88 ± 0.89 a |
*B5 basal salts supplemented with 3% sucrose. Observations were recorded after 4 weeks of culture.
**Values are the means ± standard deviation (n = 3). Means within column followed by the same letter are not significantly different at the 5% probability level (p ≤ 0.05) by LSD (least significant difference) test.
dw: Dry weight.
ND: Non detectable.
Comparative analysis of secondary metabolite contents of greenhouse-grown plant and commercial herbs of
| Source | Loganic acid (mg/g of dw)** | Sertiamarin (mg/g of dw)** | Gentiopicroside (mg/g of dw)** |
|---|---|---|---|
| Root from greenhouse grown plant | 0.64 ± 0.06 | 4.42 ± 0.03 | 30.25 ± 0.12 |
| 4.13 ± 0.29 | ND | 7.90 ± 0.52 | |
| 6.94 ± 0.37 | 1.06 ± 0.04 | 40.89 ± 1.78 |
**Values are the means ± standard deviation (n = 3). Means followed by the same letter are not significantly different at the 5% probability level (p ≤ 0.05) by LSD (least significant difference) test.
dw: Dry weight.
ND: Non detectable.