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Preparation, Scanning and Analysis of Duckweed Using X-Ray Computed Microtomography.

Frontiers in plant science · 8 Jan 2021 · 10.3389/fpls.2020.617830

Abstract

Quantification of anatomical and compositional features underpins both fundamental and applied studies of plant structure and function. Relatively few non-invasive techniques are available for aquatic plants. Traditional methods such as sectioning are low-throughput and provide 2-dimensional information. X-ray Computed Microtomography (μCT) offers a non-destructive method of three dimensional (3D) imaging in planta , but has not been widely used for aquatic species, due to the difficulties in sample preparation and handling. We present a novel sample handling protocol for aquatic plant material developed for μCT imaging, using duckweed plants and turions as exemplars, and compare the method against existing approaches. This technique allows for previously unseen 3D volume analysis of gaseous filled spaces, cell material, and sub-cellular features. The described embedding method, utilizing petrolatum gel for sample mounting, was shown to preserve sample quality during scanning, and to display sufficiently different X-ray attenuation to the plant material to be easily differentiated by image analysis pipelines. We present this technique as an improved method for anatomical structural analysis that provides novel cellular and developmental information.

Plant phenotyping relevance

水生植物のμCT撮像に向けた試料調製・ハンドリング法を開発し、3D画像から解剖学的・構造的形質を解析する手法を提示しており、植物フェノタイピング手法が中心である。

abstractWe present a novel sample handling protocol for aquatic plant material developed for μCT imaging, using duckweed plants and turions as exemplars, and compare the method against existing approaches.
abstractThis technique allows for previously unseen 3D volume analysis of gaseous filled spaces, cell material, and sub-cellular features.

Code and data availability

The article describes a μCT duckweed phenotyping protocol but contains no public phenotype dataset, image volume, analysis code, or model deposit. The supplementary material contains only microscopy comparison figures and a lookup table, not paper-specific data or code.

No evidence-backed public reproduction asset is currently recorded.

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