| Literature DB >> 28533793 |
Prabhakaran Soundararajan1, Abinaya Manivannan1, Yoon S Cho2, Byoung R Jeong1,2,3.
Abstract
Hyperhydricity is one of the major problems hindering in vitro propagation of Dianthus caryophyllus L. Silicon (Si) is a well-known beneficial element renowned for its stress amelioration properties in plants. This study has demonstrated the physiological and molecular mechanism behind the Si-mediated recovery from hyperhydricity in D. caryophyllus L. 'Green Beauty'. Four weeks old hyperhydric shoots obtained from temporary immersion system were cultured on the Murashige and Skoog medium supplemented with 0 (control), 1.8 mM, or 3.6 mM of potassium silicate (K2SiO3). After 2 weeks of culture, we observed only 20% of hyperhydric shoots were recovered in control. On the other hand hyperhydricity, shoot recovery percentage in 1.8 mM and 3.6 mM of Si were 44% and 36%, respectively. Shoots in control possessed higher lipid peroxidation rate compared to the Si treatments. Similarly, damaged stomata were detected in the control, while Si treatments restored the normal stomatal development. Expressions of superoxide dismutase, guaiacol peroxidase, and catalase varied between the control and Si treatments. Furthermore, a proteomic analysis showed that as compared with the control Si up-regulated 17 and 10 protein spots in abundance at 1.8 and 3.6 mM of Si, respectively. In comparison to the 3.6 mM, 1.8 mM of Si treatment up-regulated 19 proteins and down-regulated 7 proteins. Identified proteins were categorized into six groups according to their biological roles such as ribosomal binding, oxido-reduction, hormone/cell signaling, metal/ion binding, defense, and photosynthesis. The proteomic results revealed that Si actively involved in the various metabolisms to accelerate the recovery of the shoots from hyperhydricity. Thus, the outcomes of this study can be utilized for addressing the molecular insight of hyperhydricity and its recovery mechanism by the supplementation of Si. Therefore, we conclude that active involvement of Si in the regulation and signaling process of proteins at 1.8 mM concentration could be efficient to trigger the reclamation process of hyperhydric carnation shoots.Entities:
Keywords: antioxidant enzymes; proteomics; silicic acid; tissue culture; vitrification
Year: 2017 PMID: 28533793 PMCID: PMC5420596 DOI: 10.3389/fpls.2017.00738
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Concentration of macro-nutrients after 15 days of treatment with different concentrations of Si.
| Element (ppm) | Control | Si 1.8 (mM) | Si 3.6 (mM) |
|---|---|---|---|
| K | 477.4 ± 7.17 | 511.1 ± 4.83 | 446.5 ± 5.00 |
| Ca | 65.5 ± 1.00 | 57.1 ± 0.51 | 52.6 ± 0.51 |
| Mg | 22.3 ± 0.27 | 19.7 ± 0.19 | 19.6 ± 0.17 |
| S | 40.7 ± 0.36 | 39.0 ± 0.22 | 32.4 ± 0.25 |
| P | 47.9 ± 0.21 | 48.4 ± 0.13 | 30.6 ± 0.36 |
Concentration of micro-nutrients after 15 days of treatment with different concentrations of Si.
| Element (ppm) | Control | Si 1.8 (mM) | Si 3.6 (mM) |
|---|---|---|---|
| Na | 19.40 ± 0.197 | 22.1 ± 0.260 | 15.29 ± 0.167 |
| Cu | 0.18 ± 0.002 | 0.25 ± 0.002 | 0.19 ± 0.002 |
| Zn | 1.50 ± 0.003 | 1.48 ± 0.007 | 1.11 ± 0.012 |
| Mn | 1.65 ± 0.008 | 1.53 ± 0.006 | 1.51 ± 0.015 |
| Fe | 3.77 ± 0.024 | 3.77 ± 0.022 | 4.26 ± 0.044 |
| B | 0.66 ± 0.051 | 0.58 ± 0.002 | 0.59 ± 0.008 |
| Mo | 0.07 ± 0.001 | 0.06 ± 0.001 | 0.06 ± 0.005 |
Differentially expressed protein spots identified from the two-dimensional gel electrophoresis of Dianthus caryophyllus L. ‘Green Beauty’ shoots during recovery from hyperhydricity in Murashige and Skoog (MS) medium with or without Si supplementation.
| Spot no.a | Accession number | Nominal mass (Mr)b | Theoretical/Exp. | Protein identification | Species | SC(%)d | Scoree | Foldf |
|---|---|---|---|---|---|---|---|---|
| 1 | Q9B1K8 | 10809 | 2.8/11.10 | 50S ribosomal protein L23 | 39 | 28 | 3.0 | |
| 9 | Q06R73 | 11100 | 2.5/11.02 | 30S ribosomal protein S15 | 31 | 22 | 2.9 | |
| 10 | Q14FC1 | 13613 | 2.05/9.35 | 50S ribosomal protein L14 | 37 | 29 | 4.6 | |
| 14 | Q14FC1 | 13613 | 4.1/9.35 | 50S ribosomal protein L14 | 38 | 32 | 3.3 | |
| 15 | B0Z5A0 | 10376 | 4.6/10.73 | 30S ribosomal protein S15 | 34 | 22 | 2.2 | |
| 12 | Q5XET6 | 54109 | 6.9/9.48 | RNA pseudouridine synthase 3 | 10 | 17 | 4.7 | |
| 20 | Q06R73 | 11100 | 3.9/11.02 | 30S ribosomal protein S15 | 31 | 23 | 1.6 | |
| 22 | Q9B1K8 | 10809 | 6.8/11.10 | 50S ribosomal protein L23 | 33 | 32 | 2.7 | |
| 13 | O04354 | 14604 | 4.2/5.03 | Cytochrome b5 | 27 | 29 | 2.4 | |
| 8 | Q9FLK2 | 7088 | 4.0/8.18 | Probable cytochrome c oxidase subunit 5C-3 | 26 | 12 | 2.9 | |
| 17 | Q9FLK2 | 7088 | 5.2/8.18 | Probable cytochrome c oxidase subunit 5C-3 | 33 | 21 | 2.5 | |
| 29 | P81247 | 2336 | 5.2/9.70 | Cytochrome b-c1 complex subunit 8 | 70 | 13 | 3.7 | |
| 23 | P82657 | 2270 | 6.0/8.48 | Thylakoid lumenal 11 kDa | 81 | 26 | 2.9 | |
| 7 | P80843 | 1236 | 5.5/9.98 | 68 kDa cell wall protein | 45 | 15 | 6.3 | |
| 11 | P86088 | 1006 | 4.4/5.58 | Alpha-amylase 2 | 87 | 16 | 3.0 | |
| 16 | Q9C8Y2 | 20039 | 5.1/5.67 | Protein C2-DOMAIN ABA-RELATED 2 OS | 26 | 38 | 2.0 | |
| 19 | Q9ZWL6 | 83315 | 4.0/7.05 | Ethylene receptor | 31 | 21 | 1.8 | |
| 30 | Q9C8Y2 | 20039 | 4.6/5.67 | Protein C2-DOMAIN ABA-RELATED 2 OS | 61 | 71 | 2.0 | |
| 3 | Q0IMG5 | 8379 | 6.5/5.62 | Metallothionein-like protein 4A OS | 58 | 37 | 2.4 | |
| 4 | Q8RUD6 | 19312 | 3.6/6.30 | Rhodanese-like domain-containing protein 19 | 25 | 25 | 2.2 | |
| 6 | Q9SR25 | 17150 | 4.0/6.30 | Protein AE7-like 2 OS | 20 | 19 | 2.1 | |
| 18 | Q9SR25 | 17150 | 3.4/6.30 | Protein AE7-like 2 OS | 20 | 19 | 2.1 | |
| 21 | Q0IMG5 | 8379 | 5.6/5.62 | Metallothionein-like protein 4A OS | 47 | 34 | 3.7 | |
| 2 | Q3ECL0 | 8482 | 3.5/9.55 | Protein RALF-like 9 OS | 18 | 20 | 1.9 | |
| 5 | Q8VYU8 | 45709 | 1.9/5.67 | Interactor of constitutive active ROPs 5 | 11 | 18 | 1.8 | |
| 27 | Q4VP04 | 9159 | 3.2/8.53 | Defensin-like protein 308 OS | 45 | 24 | 1.6 | |
| 25 | P26985 | 20439 | 7.57/0.95 | Ribulose bisphosphate carboxylase small chain | 53 | 28 | 3.3 | |
| 26 | P27063 | 1647 | 5.5/9.72 | Ribulose bisphosphate carboxylase large chain | 62 | 14 | 2.1 | |
| 28 | A7M975 | 21497 | 9.27/4.10 | Photosystem I assembly protein Ycf4 | 28 | 36 | 1.5 | |
| 24 | Q9LRQ1 | 9603 | 6.6/6.11 | Putative BTB/POZ domain-containing protein | 34 | 20 | 1.7 | |