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selection of transgenic sugarcane callus utilizing a plant gene encoding a mutant form of acetolactate synthase. | LitMetric

selection of transgenic sugarcane callus utilizing a plant gene encoding a mutant form of acetolactate synthase.

In Vitro Cell Dev Biol Plant

Institute for Plant Biotechnology, Department of Genetics, University of Stellenbosch, Stellenbosch, 7602 South Africa.

Published: April 2013

Selection genes are routinely used in plant genetic transformation protocols to ensure the survival of transformed cells by limiting the regeneration of non-transgenic cells. In order to find alternatives to the use of antibiotics as selection agents, we followed a targeted approach utilizing a plant gene, encoding a mutant form of the enzyme acetolactate synthase, to convey resistance to herbicides. The sensitivity of sugarcane callus ( spp. hybrids, cv. NCo310) to a number of herbicides from the sulfonylurea and imidazolinone classes was tested. Callus growth was most affected by sulfonylurea herbicides, particularly 3.6 μg/l chlorsulfuron. Herbicide-resistant transgenic sugarcane plants containing mutant forms of a tobacco acetolactate synthase () gene were obtained following biolistic transformation. Post-bombardment, putative transgenic callus was selectively proliferated on MS medium containing 3 mg/l 2,4-dichlorophenoxyacetic acid (2,4-D), 20 g/l sucrose, 0.5 g/l casein, and 3.6 μg/l chlorsulfuron. Plant regeneration and rooting was done on MS medium lacking 2,4-D under similar selection conditions. Thirty vigorously growing putative transgenic plants were successfully -acclimatized and established under glasshouse conditions. Glasshouse spraying of putative transgenic plants with 100 mg/l chlorsulfuron dramatically decreased the amount of non-transgenic plants that had escaped the selection regime. PCR analysis showed that six surviving plants were -positive and that five of these expressed the mutant gene. This report is the first to describe a selection system for sugarcane transformation that uses a selectable marker gene of plant origin targeted by a sulfonylurea herbicide.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607717PMC
http://dx.doi.org/10.1007/s11627-013-9493-0DOI Listing

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