1990Photochemistry and PhotobiologyRequires access

PHYTOCHROME‐MEDIATED PHOTOTROPISM IN Adiantum PROTONEMATA‐I. PHOTOTROPISM AS A FUNCTION OF THE LATERAL Pfr GRADIENT*

Moritoshi Iino, Kohji Shitanishi, Akeo Kadota, Masamitsu Wada

Open publisher page 11 citations

Abstract

Abstract— Phytochrome‐mediated phototropism of the protonema of the fern Adiantum capillus‐veneris was studied in view of the hypothesis that phototropism is controlled by the gradient of Pfr (phytochrome in the far‐red‐absorbing form) across the short axis of the protonema. Fluence‐response relationships were investigated using a microbeam irradiation technique that allowed simultaneous stimulation of the two sides of the subapical portion of the protonema with different fluences of red light. Mathematical models describing the tropic response as a function of fluence were derived from the hypothesis in consideration of the minimal phototransformation kinetics of phytochrome. and the fitness of the functions to the experimental data was examined. The analytical results were then evaluated in view of the photochemical properties of phytochrome known from the literature. It is concluded that the extent of the tropic response is determined by the difference in the Pfr concentrations between the two sides of the protonemal cell. It is further suggested that, even if phytochrome exists as a dimer in vivo, the physiological unit of phytochrome is the monomer.

About this research paper

What this paper is about

Abstract— Phytochrome‐mediated phototropism of the protonema of the fern Adiantum capillus‐veneris was studied in view of the hypothesis that phototropism is controlled by the gradient of Pfr (phytochrome in the far‐red‐absorbing form) across the short axis of the protonema. Fluence‐response relationships were investigated using a microbeam irradiation technique that allowed simultaneous stimulation of the two sides of the subapical portion of the protonema with different fluences of red light. Mathematical models describing the tropic response as a function of fluence were derived from the hypothesis in consideration of the minimal phototransformation kinetics of phytochrome. and the fitness of the functions to the experimental data was examined. The analytical results were then evaluated in view of the photochemical properties of phytochrome known from the literature. It is concluded that the extent of the tropic response is determined by the difference in the Pfr concentrations between the two sides of the protonemal cell. It is further suggested that, even if phytochrome exists as a dimer in vivo, the physiological unit of phytochrome is the monomer.

Why it matters

OpenAlex reports 11 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

Abstract— Phytochrome‐mediated phototropism of the protonema of the fern Adiantum capillus‐veneris was studied in view of the hypothesis that phototropism is controlled by the gradient of Pfr (phytochrome in the far‐red‐absorbing form) across the short axis of the protonema. Fluence‐response relationships were investigated using a microbeam irradiation technique that allowed simultaneous stimulation of the two sides of the subapical portion of the protonema with different fluences of red light. Mathematical models describing the tropic response as a function of fluence were derived from the hypothesis in consideration of the minimal phototransformation kinetics of phytochrome. and the fitness of the functions to the experimental data was examined. The analytical results were then evaluated in view of the photochemical properties of phytochrome known from the literature. It is concluded that the extent of the tropic response is determined by the difference in the Pfr concentrations between the two sides of the protonemal cell. It is further suggested that, even if phytochrome exists as a dimer in vivo, the physiological unit of phytochrome is the monomer.

Key concepts: Phytochrome, Protonema, Phototropism, Botany, Biophysics, Fern, Far-red, Biology

Related papers

Back to paper searchBrowse research topicsOriginal source
PHYTOCHROME‐MEDIATED PHOTOTROPISM IN Adiantum PROTONEMATA‐I. PHOTOTROPISM AS A FUNCTION OF THE LATERAL Pfr GRADIENT* — Research Paper | ScholarLens