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Plant Microtechnique with Resin: Towards Plant Histolomics

Plants · 19 Feb 2026 · 10.3390/plants15040643

Abstract

Plant microtechnique involves a sequence of skill-intensive histological procedures that often yield poorly reproducible images and limited quantitative information. Nevertheless, it provides an essential cellular and tissue context needed to understand biological functions. In this work, we present an optimized resin-based microtechnique that replaces paraffin embedding, incorporates a chemically activated adhesive treatment for glass slides, and develop a trichrome stain for resin sections. All these improvements enhanced section stability and image reproducibility, enabled a broader color palette with sharp contrast of tissues, cells and organelles, and selected ultrastructural features using light microscopy. Based on these preparations, a quantitative micrograph analysis workflow was developed based on image segmentation and feature extraction using MATLAB (R2024a) and Adobe Photoshop (CS6). This approach enables the measurement of a wide range of morphometric and compositional features, generating structured histological datasets that we refer to as plant histolomes. As an illustrative application, this workflow was applied to leaves from several model plants species and integrated multiple anatomical traits into a composite feature, the “C4 Kranz-anatomy level”, enabling quantitative comparison along the C3-C4 anatomical transition. The resin-based microtechnique and the histolomics framework developed in this work provide a robust and reproducible basis for the quantitative plant histology, bridging classical microscopy with a data-driven tissue analysis.

Plant phenotyping relevance

樹脂包埋・染色による植物組織画像の再現性向上と、画像セグメンテーション/特徴抽出による形態・組成形質の定量化が研究の中心であり、植物フェノタイピング手法の開発・検証・適用に該当する。

abstractIn this work, we present an optimized resin-based microtechnique
abstracta quantitative micrograph analysis workflow was developed based on image segmentation and feature extraction
abstractThis approach enables the measurement of a wide range of morphometric and compositional features
abstractenabling quantitative comparison along the C3-C4 anatomical transition

Code and data availability

植物フェノタイピング解析を再現する公開資産であることを、入力本文と直接リンクから確認できなかったため保留しました。

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