Application of a light emitting diode based autofluorescence removal system to improve fluorescence imaging in plant tissues

Autofluorescence derived from plant tissues, originating from cell walls, chloroplasts, and various endogenous pigments, often interferes with fluorescence imaging and hampers quantitative analysis. Although numerous fluorescence-based techniques have been developed for plant cell studies, autofluorescence remains a persistent technical obstacle. An LED-based autofluorescence removal system (TiYO), originally developed for animal neural tissues, has recently been shown to selectively reduce tissue autofluorescence without compromising specific fluorescence signals. In this study, we examined whether this system can be applied to plant materials.

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Publication Details

Journal
Plant Biotechnology
Published
2026-09-16
DOI
https://doi.org/10.5511/plantbiotechnology.26.0527a
Primary Topic
Photodynamic Therapy Research Studies
Type
article
Field-Weighted Citation Impact
0.00
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article

Application of a light emitting diode based autofluorescence removal system to improve fluorescence imaging in plant tissues

Mitsuru Yashiro, Tomoko Abe, Aki Makanae, Hiroto Kitano et al.
Plant Biotechnology
Photodynamic Therapy Research Studies
article

Application of a light emitting diode based autofluorescence removal system to improve fluorescence imaging in plant tissues

Mitsuru Yashiro, Tomoko Abe, Aki Makanae, Hiroto Kitano, Shigenobu Toné, Akira Kuriyama, Iyo Li, Ryo Terajima
article en

Abstract

Autofluorescence derived from plant tissues, originating from cell walls, chloroplasts, and various endogenous pigments, often interferes with fluorescence imaging and hampers quantitative analysis. Although numerous fluorescence-based techniques have been developed for plant cell studies, autofluorescence remains a persistent technical obstacle. An LED-based autofluorescence removal system (TiYO), originally developed for animal neural tissues, has recently been shown to selectively reduce tissue autofluorescence without compromising specific fluorescence signals. In this study, we examined whether this system can be applied to plant materials.

Plant Biotechnology
Tokyo Denki University (JP), Gene Therapy Laboratory (FR)
Openalex Percentile: Top 11%
Photodynamic Therapy Research Studies
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Application of a light emitting diode based autofluorescence removal system to improve fluorescence imaging in plant tissues — Mitsuru Yashiro, Tomoko Abe, et al. · Plant Biotechnology (2026) | TGRS Research Map | TGRS