Insights into the chemical composition of Equisetum hyemale by high resolution Raman imaging
Open Access
- 5 December 2007
- journal article
- research article
- Published by Springer Nature in Planta
- Vol. 227 (5) , 969-980
- https://doi.org/10.1007/s00425-007-0671-3
Abstract
Equisetaceae has been of research interest for decades, as it is one of the oldest living plant families, and also due to its high accumulation of silica up to 25% dry wt. Aspects of silica deposition, its association with other biomolecules, as well as the chemical composition of the outer strengthening tissue still remain unclear. These questions were addressed by using high resolution (<1 μm) Confocal Raman microscopy . Two-dimensional spectral maps were acquired on cross sections of Equisetum hyemale and Raman images calculated by integrating over the intensity of characteristic spectral regions. This enabled direct visualization of differences in chemical composition and extraction of average spectra from defined regions for detailed analyses, including principal component analysis (PCA) and basis analysis (partial least square fit based on model spectra). Accumulation of silica was imaged in the knobs and in a thin layer below the cuticula. In the spectrum extracted from the knob region as main contributions, a broad band below 500 cm^−1 attributed to amorphous silica, and a band at 976 cm^−1 assigned to silanol groups, were found. From this, we concluded that these protrusions were almost pure amorphous, hydrated silica. No silanol group vibration was detected in the silicified epidermal layer below and association with pectin and hemicelluloses indicated. Pectin and hemicelluloses (glucomannan) were found in high levels in the epidermal layer and in a clearly distinguished outer part of the hypodermal sterome fibers. The inner part of the two-layered cells revealed as almost pure cellulose, oriented parallel along the fiber.Keywords
This publication has 61 references indexed in Scilit:
- Identification and quantification of valuable plant substances by IR and Raman spectroscopyPublished by Elsevier ,2006
- Spatial tissue distribution of polyacetylenes in carrot rootThe Analyst, 2005
- Identification of secondary metabolites in medicinal and spice plants by NIR-FT-Raman microspectroscopic mappingThe Analyst, 2004
- Role of silicon in enhancing the resistance of plants to biotic and abiotic stressesSoil Science and Plant Nutrition, 2004
- Fourier transform Raman and infrared spectroscopy of pectinsCarbohydrate Polymers, 2003
- Cycling silicon – the role of accumulation in plantsNew Phytologist, 2003
- Near-infrared–Fourier-transform–Raman microspectroscopic imaging of flax stemsVibrational Spectroscopy, 1999
- A Bound Form of Silicon in Glycosaminoglycans and PolyuronidesProceedings of the National Academy of Sciences, 1973
- Silicification of developing internodes in the perennial scouring rush (Equisetum hyemale var. affine)Developmental Biology, 1973
- Anatomy of the Aerial Axes of Equisetum kansanumBotanical Gazette, 1939