| Literature DB >> 25426490 |
Daniel Wefers1, Catrin E Tyl2, Mirko Bunzel1.
Abstract
Arabinans and galactans are neutral pectic side chains and an important part of the cell walls of dicotyledonous plants. To get a detailed insight into their fine structure, various oligosaccharides were isolated from quinoa, potato galactan, and sugar beet pulp after enzymatic treatment. LC-MS(2) and one- and two-dimensional NMR spectroscopy were used for unambiguous structural characterization. It was demonstrated that arabinans contain β-(1→3)-linked arabinobiose as a side chain in quinoa seeds, while potato galactan was comprised of β-(1→4)-linked galactopyranoses which are interspersed with α-(1→4)-linked arabinopyranoses. Additionally, an oligosaccharide with two adjacent arabinofuranose units O2-substituted with two ferulic acid monomers was characterized. The isolated oligosaccharides gave further insight into the structures of pectic side chains and may have an impact on plant physiology and dietary fiber fermentation.Entities:
Keywords: NMR; arabinans; cell wall; ferulic acid; galactans; oligosaccharides; pectin; polysaccharides
Year: 2014 PMID: 25426490 PMCID: PMC4226231 DOI: 10.3389/fchem.2014.00100
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1CID MS.
.
| R-α | 5.25 | 4.03 | 4.04 | 4.23 | 3.76/3.83 |
| 101.92 | 82.07 | 76.60 | 82.04 | 67.35 | |
| R-β | 5.30 | 4.10 | 4.09 | 3.94 | 3.76/3.83 |
| 96.18 | 76.80 | 75.04 | 79.92 | 67.35 | |
| A | 5.10/5.11 | 4.29 | 4.11 | 4.29 | 3.85/3.95 |
| 108.19 | 79.94 | 82.69 | 82.05 | 67.02 | |
| T | 5.09 | 4.13 | 3.95 | 4.10 | 3.82/3.70 |
| 108.15 | 81.74 | 77.26 | 84.69 | 61.86 | |
| a | 5.19 | 4.37 | 3.96 | 4.16 | 3.72/3.84 |
| 107.87 | 80.38 | 84.48 | 83.43 | 61.79 | |
| b | 5.08 | 4.12 | 4.04 | 3.90 | 3.72/3.82 |
| 102.26 | 77.02 | 74.95 | 82.73 | 63.78 | |
Figure 2HMBC spectrum and structure of compound 1. Diagnostic long range correlations are marked and explained in the text.
Figure 4HMBC spectrum and structure of compound 2. Diagnostic long range correlations are marked and explained in the text.
Figure 6HMQC spectrum and structure of compound 3. Signals in the anomeric region are assigned and explained in the text.
Figure 3CID MS.
Figure 5CID MS.
| R-α | 5.27 (4.0) | 3.86 | 3.96 | 4.23 | 4.12 | 3.72/3.83 |
| 93.04 | 69.23 | 70.40 | 79.49 | 70.47 | 61.62 | |
| R-β | 4.60 (8.0) | 3.58 | 3.76 | 4.17 | 3.76 | 3.72/3.83 |
| 97.17 | 72.92 | 74.14 | 78.47 | 74.14 | 61.62 | |
| A | 4.64 (8.0) | 3.66 | 3.78 | 4.14 | 3.71 | 3.79 |
| 105.12 | 72.75 | 74.12 | 78.17 | 75.48 | 61.61 | |
| T | 4.57 (8.0) | 3.62 | 3.65 | 69.25 | 3.68 | 3.77/3.79 |
| 105.47 | 71.77 | 73.09 | 3.91 | 75.86 | 61.59 | |
| a | 4.60 (8.0) | 3.68 | 3.73 | 4.08 | 3.64/4.21 | – |
| 105.22 | 72.58 | 73.58 | 78.92 | 66.72 | ||
| R-α | 5.13 (2.3) | 3.93 | 3.91 | 4.13 | 3.62/3.80 | – | – | – | – | – |
| 102.38 | 82.64 | 77.31 | 82.01 | 67.95 | ||||||
| R-β | 5.17 (4.4) | 3.93 | 3.91 | 3.82 | 3.62/3.80 | – | – | – | – | – |
| 96.69 | 75.86 | 77.31 | 80.58 | 67.95 | ||||||
| A | 5.06/5.05 | 5.02 | 4.20 | 4.21 | 3.73/3.87 | – | – | – | – | – |
| 106.37 | 84.31 | 76.14 | 83.64 | 66.53 | ||||||
| T | 5.11 | 5.07 | 4.06 | 4.08 | 3.63/3.75 | – | – | – | – | – |
| 106.45 | 84.57 | 76.17 | 84.84 | 61.72 | ||||||
| FA | – | 7.20 | – | n.d. | 6.77 (8.0) | 7.07 (8.0) | 7.59 (16.0) | 6.33 (16.0) | – | 3.80 |
| n.d. | 111.56 | 149.02 | n.d. | 116.29 | 124.26 | 147.30 | 113.49 | n.d. | 55.97 | |
| FB | – | 7.12 | – | n.d. | 6.77 (8.0) | 6.99 (8.0) | 7.54 (16.0) | 6.27 (16.0) | – | 3.78 |
| n.d. | 111.40 | 149.00 | n.d. | 116.32 | 124.13 | 147.32 | 113.42 | n.d. | 55.97 | |
The corresponding structures including the descriptors are shown in Figures 2, 4, 6. Chemical shifts are given in ppm, coupling constants in Hz. n.d., not determined.