2000Physiologia PlantarumRequires access

Gibberellins in the control of photoperiodic flower transition in Pharbitis nil

Halina Kulikowska‐Gulewska, Magdalena Majewska, Jan Kopcewicz

Open publisher page 15 citations

Abstract

The role of gibberellins in the photoperiodic flower induction of short‐day plant Pharbitis nil has been investigated. It has been found that the endogenous content of gibberellins in the cotyledons of P. nil is low before and after a 16‐h‐long inductive dark period. During the inductive night the content of gibberellins is high at the beginning of darkness and about the middle of the dark period. Exogenous GA3 when applied to the cotyledons of non‐induced plants does not replace the effect of the inductive night but it can stimulate the intensity of flowering in plants cultivated on suboptimal photoperiods. GA3 could also reverse the inhibitory effect of end‐of‐day far‐red light irradiation on P. nil flowering. 2‐Chloroethyltri‐methylammonium chloride (CCC) applied to the cotyledons during the inductive night also inhibited flowering. GA3 could reverse the inhibitory effect of CCC. The obtained results strongly suggest that gibberellins are involved in the phytochrome controlled transition of P. nil to flowering. Their effect could be additive to that of photoperiodic induction.

About this research paper

What this paper is about

The role of gibberellins in the photoperiodic flower induction of short‐day plant Pharbitis nil has been investigated. It has been found that the endogenous content of gibberellins in the cotyledons of P. nil is low before and after a 16‐h‐long inductive dark period. During the inductive night the content of gibberellins is high at the beginning of darkness and about the middle of the dark period. Exogenous GA3 when applied to the cotyledons of non‐induced plants does not replace the effect of the inductive night but it can stimulate the intensity of flowering in plants cultivated on suboptimal photoperiods. GA3 could also reverse the inhibitory effect of end‐of‐day far‐red light irradiation on P. nil flowering. 2‐Chloroethyltri‐methylammonium chloride (CCC) applied to the cotyledons during the inductive night also inhibited flowering. GA3 could reverse the inhibitory effect of CCC. The obtained results strongly suggest that gibberellins are involved in the phytochrome controlled transition of P. nil to flowering. Their effect could be additive to that of photoperiodic induction.

Why it matters

OpenAlex reports 15 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

The role of gibberellins in the photoperiodic flower induction of short‐day plant Pharbitis nil has been investigated. It has been found that the endogenous content of gibberellins in the cotyledons of P. nil is low before and after a 16‐h‐long inductive dark period. During the inductive night the content of gibberellins is high at the beginning of darkness and about the middle of the dark period. Exogenous GA3 when applied to the cotyledons of non‐induced plants does not replace the effect of the inductive night but it can stimulate the intensity of flowering in plants cultivated on suboptimal photoperiods. GA3 could also reverse the inhibitory effect of end‐of‐day far‐red light irradiation on P. nil flowering. 2‐Chloroethyltri‐methylammonium chloride (CCC) applied to the cotyledons during the inductive night also inhibited flowering. GA3 could reverse the inhibitory effect of CCC. The obtained results strongly suggest that gibberellins are involved in the phytochrome controlled transition of P. nil to flowering. Their effect could be additive to that of photoperiodic induction.

Key concepts: Pharbitis nil, Gibberellin, Phytochrome, Darkness, photoperiodism, Biology, Botany, Flower induction

Related papers

Back to paper searchBrowse research topicsOriginal source
Gibberellins in the control of photoperiodic flower transition in Pharbitis nil — Research Paper | ScholarLens