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A novel light-dependent selection marker system in plants.

Authors :
Koh, Serry
Kim, Hongsup
Kim, Jinwoo
Goo, Eunhye
Kim, Yun‐Jung
Choi, Okhee
Jwa, Nam‐Soo
Ma, Jun
Nagamatsu, Tomohisa
Moon, Jae Sun
Hwang, Ingyu
Source :
Plant Biotechnology Journal; Apr2011, Vol. 9 Issue 3, p348-358, 11p, 2 Color Photographs, 1 Black and White Photograph, 2 Charts, 1 Graph
Publication Year :
2011

Abstract

Photosensitizers are common in nature and play diverse roles as defense compounds and pathogenicity determinants and as important molecules in many biological processes. Toxoflavin, a photosensitizer produced by Burkholderia glumae, has been implicated as an essential virulence factor causing bacterial rice grain rot. Toxoflavin produces superoxide and HO during redox cycles under oxygen and light, and these reactive oxygen species cause phytotoxic effects. To utilize toxoflavin as a selection agent in plant transformation, we identified a gene, tflA, which encodes a toxoflavin-degrading enzyme in the Paenibacillus polymyxa JH2 strain. TflA was estimated as 24.56 kDa in size based on the amino acid sequence and is similar to a ring-cleavage extradiol dioxygenase in the Exiguobacterium sp. 255-15; however, unlike other extradiol dioxygenases, Mnand dithiothreitol were required for toxoflavin degradation by TflA. Here, our results suggested toxoflavin is a photosensitizer and its degradation by TflA serves as a light-dependent selection marker system in diverse plant species. We examined the efficiencies of two different plant selection systems, toxoflavin/ tflA and hygromycin/hygromycin phosphotransferase ( hpt) in both rice and Arabidopsis. The toxoflavin/ tflA selection was more remarkable than hygromycin/ hpt selection in the high-density screening of transgenic Arabidopsis seeds. Based on these results, we propose the toxoflavin/ tflA selection system, which is based on the degradation of the photosensitizer, provides a new robust nonantibiotic selection marker system for diverse plants. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14677644
Volume :
9
Issue :
3
Database :
Complementary Index
Journal :
Plant Biotechnology Journal
Publication Type :
Academic Journal
Accession number :
59129153
Full Text :
https://doi.org/10.1111/j.1467-7652.2010.00557.x