Related Experiment Video
Updated: Jul 4, 2025

09:45
Co-expression of Multiple Chimeric Fluorescent Fusion Proteins in an Efficient Way in Plants
Published on: July 1, 2018
9.7K
TALE-based organellar genome editing and gene expression in plants
Jer-Young Lin1,2, Yu-Chang Liu1, Yan-Hao Tseng2
1Agricultural Biotechnology Research Center, Academia Sinica, Tainan, 71150, Taiwan.
Plant Cell Reports
|February 9, 2024
Summary
Transcription activator-like effector (TALE)-based editors offer a new method for engineering plant organellar genomes. This review details recent advancements in TALE-based organellar genome editing, overcoming limitations of other techniques.
Area of Science:
- Plant molecular biology
- Genetics
- Biotechnology
Background:
- Gene editing is crucial for plant research and biotechnology.
- CRISPR/Cas9 is widely used for nuclear genome editing but faces delivery challenges in plant organelles.
- Conventional chloroplast transformation is species-limited and technically challenging.
Purpose of the Study:
- To review recent developments in TALE-based organellar genome editing in plants.
- To highlight TALE-based editors as an alternative to existing methods for organelle genome engineering.
- To discuss the advantages of TALE technology for plant organelle modification.
Main Methods:
- Review of current literature on TALE-based genome editing in plant organelles.
- Discussion of Agrobacteria-mediated nuclear transformation for TALE delivery.
- Analysis of TALE editor targeting and expression in plant organelles.
Main Results:
- TALE-based editors can be effectively delivered and expressed in plant organelles.
- TALE technology circumvents limitations associated with CRISPR/Cas9 delivery to organelles.
- TALE-based editing offers a viable alternative for engineering chloroplast and potentially mitochondrial genomes.
Conclusions:
- TALE-based editors present a promising alternative for engineering plant organellar genomes.
- This technology overcomes challenges in chloroplast transformation and the lack of direct mitochondrial transformation methods in plants.
- Recent developments show significant progress in TALE-based organellar genome editing applications.
Related Concept Videos
Transgenic Plants
7.2K
Recombinant DNA technology called transgenesis is often used to add a foreign gene or remove a detrimental gene from an organism. Such genetically modified organisms are called transgenic organisms.
The first-ever transgenic plant was a tobacco plant developed in 1983 that showed resistance against the tobacco mosaic virus. Since then, many transgenic plants have been developed and commercialized for improving the agricultural, ornamental, and horticultural value of a crop plant. Transgenic...
The first-ever transgenic plant was a tobacco plant developed in 1983 that showed resistance against the tobacco mosaic virus. Since then, many transgenic plants have been developed and commercialized for improving the agricultural, ornamental, and horticultural value of a crop plant. Transgenic...
7.2K
What is Genetic Engineering?
74.1K
Overview
74.1K
Export of Mitochondrial and Chloroplast Genes
3.7K
A eukaryotic cell can have up to three different types of genetic systems: nuclear, mitochondrial, and chloroplast. During evolution, organelles have exported many genes to the nucleus; this transfer is still ongoing in some plant species. Approximately 18% of the Arabidopsis thaliana nuclear genome is thought to be derived from the chloroplast’s cyanobacterial ancestor, and around 75% of the yeast genome derived from the mitochondria’s bacterial ancestor. This export has occurred...
3.7K
Transgenic Organisms
31.2K
Overview
31.2K
Plant Breeding and Biotechnology
18.9K
Crop cultivation has a long history in human civilization, with records showing the cultivation of cereal plants beginning at around 8000 BC. This early plant breeding was developed primarily to provide a steady supply of food.
18.9K

