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Liquid culture and transformation of hinoki cypress (Chamaecyparis obtusa Sieb. et Zucc.)
Authors:Katsuaki Ishii
Affiliation:(1) Forestry and Forest Products Research Institute, 305-8687 Ibaraki, Japan
Abstract:Hinoki cypress (Chamaecyparis obtusa) is one of the most important timber resource forest trees in Japan. Because seed production from a seed orchard of hinoki cypress is not constant every year, micropropagation from a limited amount of material is useful. Up to now, the conventional tissue culture method using solid medium has been used. Here a new method using liquid culture in tubes rotated vertically is described. Shoot primordium of hinoki cypress was inoculated in Campbell and Durzan’s (CD) liquid medium containing different cytokinins (6-benzylaminopurine (BAP), Zeatin, thidiazurone (TDZ)), and the container tubes were rotated vertically around the axis at 2 times / min. Culture room temperature was 25°C and light condition was 16 h photoperiod per day of fluorescent lamps. Zeatin at 1μM concentration was the best for maintaining the shoot primordium production and TDZ induced callus on the surface of the shoot primordia. After shoot primordium multiplication in the liquid culture, they were transplanted to agar medium for shoot elongation. A high concentration of agar (up to 16 g/L) or AVF (anti vitrification factor from Dr. Nairn, 1995) was effective to prevent vitrification of the shoots. Transformation of shoot primordium was done using particle bombardment with vectors containingβ-glucuronidase (GUS) gene or herbicide resistance gene (bar). Positive result for transient transformation was observed with the histo-chemical study for transformation with GUS. Integration of a useful herbicidebar gene into the shoot primordium culture system was also tried and stably transformed plants were obtained. This is the first report of stable transformation of Japanese conifer using practically useful gene. The generous supply of AVF-B from Dr. B.J. Nairn, Tasman Forestry, NZ is also appreciated.
Keywords:bar    Chamaecyparis obtusa   GUS  tissue culture  transformation
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