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  • Transplastomics in Arabidopsis: progress toward developing an efficient method.

Transplastomics in Arabidopsis: progress toward developing an efficient method.

Methods in molecular biology (Clifton, N.J.) (2011-08-09)
Kerry Ann Lutz, Arun Azhagiri, Pal Maliga
ABSTRACT

Protocols developed for plastome engineering in Nicotiana tabacum rely on biolistic delivery of the transforming DNA to chloroplasts in intact leaf tissue; integration of the foreign DNA into the plastid genome by homologous recombination via flanking plastid DNA (ptDNA) targeting regions; and gradual dilution of non-transformed ptDNA during cultivation in vitro. Plastid transformation in Arabidopsis was obtained by combining the tobacco leaf transformation protocol with Arabidopsis-specific tissue culture and plant regeneration protocols. Because the leaf cells in Arabidopsis are polyploid, this protocol yielded sterile plants. Meristematic cells in a shoot apex or cells of a developing embryo are diploid. Therefore, we developed a regulated embryogenic root culture system that will generate diploid tissue for plastid transformation. This embryogenic culture system is created by steroid-inducible expression of the BABY BOOM transcription factor. Plastid transformation in Arabidopsis will enable the probing of plastid gene function, and the characterization of posttranscriptional mechanisms of gene regulation and the regulatory interactions of plastid and nuclear genes.

MATERIALS
Product Number
Brand
Product Description

Supelco
Spectinomycin dihydrochloride pentahydrate, VETRANAL®, analytical standard
Sigma-Aldrich
Spectinomycin dihydrochloride pentahydrate, powder, BioReagent, suitable for cell culture
Sigma-Aldrich
Spectinomycin dihydrochloride pentahydrate, powder, γ-irradiated
Sigma-Aldrich
Spectinomycin dihydrochloride pentahydrate, potency: ≥603 μg per mg