2008•ANU Open Research (Australian National University)Requires access

Luciferase as a Reporter of Gene Activity in Plants

Jeff P. Velten, Barry James Pogson, Christopher I. Cazzonelli

Open publisher page 13 citations

Abstract

Reporter gene systems based upon modified luciferase genes isolated from organisms, ranging from bacteria to insects, have proven to be important tools for plant molecular studies. The biochemical characteristics of these genes combine very high sensitivity with the ability to determine reporter activity non-destructively in vivo, allowing many applications in plants that cannot be accomplished using any other single reporter system. The relative ease of in situ detection of the firefly luciferase has made it an especially successful reporter for screening mutants in the model plant genetic system, Arabidopsis thaliana. The rapid turnover rate of luciferase has aided the characterization of promoters and elements that are influenced by time-sensitive factors such as circardian rhythm (diurunal cycles), gene silencing, and environmental stresses. The high sensitivity of luciferase as a reporter has facilitated the analysis and development of synthetic promoters for plant gene expression. Additionally, the biochemical characteristics of different luciferases have allowed their use as in situ indicators of metabolic activity and oxygen levels, as well as direct indicators of in vivo protein-protein interaction. The various applications of luciferase-based reporter systems in plants will be the subject of this review.

About this research paper

What this paper is about

Reporter gene systems based upon modified luciferase genes isolated from organisms, ranging from bacteria to insects, have proven to be important tools for plant molecular studies. The biochemical characteristics of these genes combine very high sensitivity with the ability to determine reporter activity non-destructively in vivo, allowing many applications in plants that cannot be accomplished using any other single reporter system. The relative ease of in situ detection of the firefly luciferase has made it an especially successful reporter for screening mutants in the model plant genetic system, Arabidopsis thaliana. The rapid turnover rate of luciferase has aided the characterization of promoters and elements that are influenced by time-sensitive factors such as circardian rhythm (diurunal cycles), gene silencing, and environmental stresses. The high sensitivity of luciferase as a reporter has facilitated the analysis and development of synthetic promoters for plant gene expression. Additionally, the biochemical characteristics of different luciferases have allowed their use as in situ indicators of metabolic activity and oxygen levels, as well as direct indicators of in vivo protein-protein interaction. The various applications of luciferase-based reporter systems in plants will be the subject of this review.

Why it matters

OpenAlex reports 13 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

Reporter gene systems based upon modified luciferase genes isolated from organisms, ranging from bacteria to insects, have proven to be important tools for plant molecular studies. The biochemical characteristics of these genes combine very high sensitivity with the ability to determine reporter activity non-destructively in vivo, allowing many applications in plants that cannot be accomplished using any other single reporter system. The relative ease of in situ detection of the firefly luciferase has made it an especially successful reporter for screening mutants in the model plant genetic system, Arabidopsis thaliana. The rapid turnover rate of luciferase has aided the characterization of promoters and elements that are influenced by time-sensitive factors such as circardian rhythm (diurunal cycles), gene silencing, and environmental stresses. The high sensitivity of luciferase as a reporter has facilitated the analysis and development of synthetic promoters for plant gene expression. Additionally, the biochemical characteristics of different luciferases have allowed their use as in situ indicators of metabolic activity and oxygen levels, as well as direct indicators of in vivo protein-protein interaction. The various applications of luciferase-based reporter systems in plants will be the subject of this review.

Key concepts: Luciferase, Reporter gene, Bioreporter, Luciferases, Biology, GUS reporter system, Gene, Arabidopsis thaliana

Related papers

Back to paper searchBrowse research topicsOriginal source
Luciferase as a Reporter of Gene Activity in Plants — Research Paper | ScholarLens