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Less is more: strategies to remove marker genes from transgenic plants

Date Issued
April 23, 2013
Author(s)
Yau, Yuan-Yeu
Stewart, C. Neal  
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/50489
Abstract

Selectable marker genes (SMGs) and selection agents are useful tools in the production of transgenic plants by selecting transformed cells from a matrix consisting of mostly untransformed cells. Most SMGs express protein products that confer antibiotic- or herbicide resistance traits, and typically reside in the end product of genetically-modified (GM) plants. The presence of these genes in GM plants, and subsequently in food, feed and the environment, are of concern and subject to special government regulation in many countries. The presence of SMGs in GM plants might also, in some cases, result in a metabolic burden for the host plants. Their use also prevents the re-use of the same SMG when a second transformation scheme is needed to be performed on the transgenic host. In recent years, several strategies have been developed to remove SMGs from GM products while retaining the transgenes of interest. This review describes the existing strategies for SMG removal, including the implementation of site specific recombination systems, TALENs and ZFNs. This review discusses the advantages and disadvantages of existing SMG-removal strategies and explores possible future research directions for SMG removal including emerging technologies for increased precision for genome modification.

Subjects

Biosafety

Clean-gene technology...

Co-transformation

Homologous recombinat...

Intra-chromosomal rec...

Marker-free

Meganuclease

Negative selection

Site-specific recombi...

TAL effector nuclease...

Transposons

Zinc finger nuclease

Disciplines
Plant Sciences
Recommended Citation
BMC Biotechnology 2013, 13:36 doi:10.1186/1472-6750-13-36
Embargo Date
July 10, 2013
File(s)
Thumbnail Image
Name

1472_6750_13_36.pdf

Size

1.9 MB

Format

Adobe PDF

Checksum (MD5)

dd43f57fc675b86e8f2100e146bc2b67


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