ptxD/Phi as alternative selectable marker system for genetic transformation for bio-safety concerns: a review

Author:

Dormatey Richard1,Sun Chao1,Ali Kazim12,Fiaz Sajid3,Xu Derong1,Calderón-Urrea Alejandro4,Bi Zhenzhen1,Zhang Junlian1,Bai Jiangping1

Affiliation:

1. Gansu Provincial Key Laboratory of Aridland Crop Science/College of Agronomy, Gansu Agricultural University, Landzhou, China

2. National Institute for Genomics and Advanced Biotechnology, National Agricultural Research Centre, Park Road, Islamabad, Pakistan

3. Department of Plant Breeding and Genetics, The University of Haripur, Haripur, Pakistan

4. Department of Biology, College of Science and Mathematics, California State University, Fresno, CA, USA

Abstract

Antibiotic and herbicide resistance genes are the most common marker genes for plant transformation to improve crop yield and food quality. However, there is public concern about the use of resistance marker genes in food crops due to the risk of potential gene flow from transgenic plants to compatible weedy relatives, leading to the possible development of “superweeds” and antibiotic resistance. Several selectable marker genes such as aph, nptII, aaC3, aadA, pat, bar, epsp and gat, which have been synthesized to generate transgenic plants by genetic transformation, have shown some limitations. These marker genes, which confer antibiotic or herbicide resistance and are introduced into crops along with economically valuable genes, have three main problems: selective agents have negative effects on plant cell proliferation and differentiation, uncertainty about the environmental effects of many selectable marker genes, and difficulty in performing recurrent transformations with the same selectable marker to pyramid desired genes. Recently, a simple, novel, and affordable method was presented for plant cells to convert non-metabolizable phosphite (Phi) to an important phosphate (Pi) for developing cells by gene expression encoding a phosphite oxidoreductase (PTXD) enzyme. The ptxD gene, in combination with a selection medium containing Phi as the sole phosphorus (P) source, can serve as an effective and efficient system for selecting transformed cells. The selection system adds nutrients to transgenic plants without potential risks to the environment. The ptxD/Phi system has been shown to be a promising transgenic selection system with several advantages in cost and safety compared to other antibiotic-based selection systems. In this review, we have summarized the development of selection markers for genetic transformation and the potential use of the ptxD/Phi scheme as an alternative selection marker system to minimize the future use of antibiotic and herbicide marker genes.

Funder

Special Fund for Discipline Construction of Gansu Agricultural University, Lanzhou China

Special Fund for Talents of Gansu agricultural University, China

National Natural Science Foundation of China

Gansu Provincial Department of Education Fund

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference222 articles.

1. Phosphite: a novel P fertilizer for weed management and pathogen control;Achary;Plant Biotechnology Journal,2017

2. Improved FLP recombinase, FLPe, efficiently removes marker gene from transgene locus developed by Cre-lox mediated site-specific gene integration in rice;Akbudak;Molecular biotechnology,2011

3. Golden Rice–five years on the road–five years to go?;Al-Babili;Trends in Plant Science,2005

4. Genomics of Agrobacterium–plant interaction: an approach to refine the plant transformation technology;Anand,2010

5. Genome editing in cereals: approaches, applications and challenges;Ansari;International Journal of Molecular Sciences,2020

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