2014TURKISH JOURNAL OF BOTANYRequires access

Phytolith analysis of Poa pratensis (Poaceae) leaves

Z. Szabó, Szilvia Kovács, Ákos Pető

Open publisher page 21 citations

Abstract

Phytoliths in Poa pratensis L. (Poaceae) leaf blades and sheaths are described in this study. The role of plant opal particles-known as phytoliths-is considerable in taxonomical studies, and their long-term preservation in sediments makes them a useful tool in the reconstruction of ancient plant communities and plant-human interactions. All together, 2244 phytoliths were counted and analyzed in 25 plant samples (5 shoots of 5 specimens and approximately 500-600 phytoliths per specimen). The biogenic silica content of P. pratensis leaves was determined at 2.61%, and 27 morphotypes have been described using the International Code for Phytolith Nomenclature. Two morphotypes are described for the first time in this study. Long cells (elongate psilate and sinuate morphotypes) and short cells (rondel-trapeziform elongated and rounded morphotypes) are frequently present in this species. Differences in morphotype frequency and significant differences in a few simple morphometric data (length, width, height) of long cells and short cells were found among specimens, which suggests that these features vary depending on environmental factors and the maturity of leaf tissues.

About this research paper

What this paper is about

Phytoliths in Poa pratensis L. (Poaceae) leaf blades and sheaths are described in this study. The role of plant opal particles-known as phytoliths-is considerable in taxonomical studies, and their long-term preservation in sediments makes them a useful tool in the reconstruction of ancient plant communities and plant-human interactions. All together, 2244 phytoliths were counted and analyzed in 25 plant samples (5 shoots of 5 specimens and approximately 500-600 phytoliths per specimen). The biogenic silica content of P. pratensis leaves was determined at 2.61%, and 27 morphotypes have been described using the International Code for Phytolith Nomenclature. Two morphotypes are described for the first time in this study. Long cells (elongate psilate and sinuate morphotypes) and short cells (rondel-trapeziform elongated and rounded morphotypes) are frequently present in this species. Differences in morphotype frequency and significant differences in a few simple morphometric data (length, width, height) of long cells and short cells were found among specimens, which suggests that these features vary depending on environmental factors and the maturity of leaf tissues.

Why it matters

OpenAlex reports 21 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Phytoliths in Poa pratensis L. (Poaceae) leaf blades and sheaths are described in this study. The role of plant opal particles-known as phytoliths-is considerable in taxonomical studies, and their long-term preservation in sediments makes them a useful tool in the reconstruction of ancient plant communities and plant-human interactions. All together, 2244 phytoliths were counted and analyzed in 25 plant samples (5 shoots of 5 specimens and approximately 500-600 phytoliths per specimen). The biogenic silica content of P. pratensis leaves was determined at 2.61%, and 27 morphotypes have been described using the International Code for Phytolith Nomenclature. Two morphotypes are described for the first time in this study. Long cells (elongate psilate and sinuate morphotypes) and short cells (rondel-trapeziform elongated and rounded morphotypes) are frequently present in this species. Differences in morphotype frequency and significant differences in a few simple morphometric data (length, width, height) of long cells and short cells were found among specimens, which suggests that these features vary depending on environmental factors and the maturity of leaf tissues.

Key concepts: Phytolith, Poaceae, Botany, Biology, Poa pratensis, Inflorescence, Pollen

Related papers

Back to paper searchBrowse research topicsOriginal source
Phytolith analysis of Poa pratensis (Poaceae) leaves — Research Paper | ScholarLens