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Reporter genes are a type of protein-coding gene that are often tagged to a gene of interest. Once inside a target cell, reporter genes usually produce visually identifiable characteristics like fluorescence and luminescence when expressed along with the gene of interest. Thus, reporter genes “report” the presence or absence of genes of interest in an organism, determine the gene expression pattern, or track the physical location of a DNA segment or protein in the cell.
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Co-expression of Multiple Chimeric Fluorescent Fusion Proteins in an Efficient Way in Plants
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Multiparameter in vivo imaging in plants using genetically encoded fluorescent indicator multiplexing.

Rainer Waadt1,2, Jörg Kudla2, Hannes Kollist1

  • 1Institute of Technology, University of Tartu, Nooruse 1, Tartu 50411, Estonia.

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Genetically encoded fluorescent indicators (GEFIs) enable multiplexing for simultaneous, multiparameter analysis of plant physiology in living tissues. This advanced biosensing approach offers new insights into dynamic biological processes.

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Area of Science:

  • Plant Biology
  • Molecular Biology
  • Biochemistry

Background:

  • Biological processes in plants occur across diverse spatiotemporal scales.
  • Understanding plant physiology requires analyzing processes from organismic to molecular levels in intact, living tissues.
  • Fluorescent protein (FP)-based in vivo biosensing using genetically encoded fluorescent indicators (GEFIs) is a key technology.

Purpose of the Study:

  • To provide an update on established direct FP-based biosensors in plants.
  • To discuss the functional principles of GEFIs and their application in multiplexing.
  • To highlight biological findings from GEFI-based multiparameter analyses and discuss challenges.

Main Methods:

  • Utilizing genetically encoded fluorescent indicators (GEFIs) for in vivo biosensing.
  • Employing GEFI multiplexing for simultaneous recording of multiple indicators.
  • Conducting plate-reader-based analyses for multiparameter measurements in living plants.

Main Results:

  • Established direct FP-based biosensors allow monitoring of ion, redox, sugar, hormone, ATP, and phosphatidic acid dynamics, and protein kinase activities.
  • GEFI multiplexing enables in vivo multiparameter analyses by simultaneously recording various biological processes.
  • Numerous biological findings have been achieved using GEFI-based multiplexing approaches.

Conclusions:

  • GEFI-based multiplexing represents a powerful approach for in vivo multiparameter analyses in plants.
  • This methodology advances the understanding of dynamic biological processes at cellular and molecular levels.
  • Further development and application of GEFI biosensors will continue to yield significant biological insights.