Adventitious shoot regeneration from leaf segments ofin vitrocultured shoots of the apple rootstock Jork 9
Nathalie Pawlicki, M. Welander
Abstract
Nathalie Pawlicki, M. Welander
Abstract
SUMMARYAdventitious shoot formation was investigated using leaf segments of in vitro cultured shoots of the apple rootstock Jork 9. Regeneration capacity was influenced by the pretreatment of the mother shoots, macroelements, hormone concentrations, the gelling agent and the carbohydrate source. The highest regeneration rate and most shoots per leaf explant resulted from young leaves on a medium based on MS macroelements supplemented with 22 µM BAP and 0.1 µM_NAA together with sorbitol, at concentrations of 165 mM or 220 mM. Sorbitol was more effective than sucrose, glucose, fructose or a combination of these sugars. A cold and dark pretreatment of the shoots enhanced the formation of adventitious shoots.
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SUMMARYAdventitious shoot formation was investigated using leaf segments of in vitro cultured shoots of the apple rootstock Jork 9. Regeneration capacity was influenced by the pretreatment of the mother shoots, macroelements, hormone concentrations, the gelling agent and the carbohydrate source. The highest regeneration rate and most shoots per leaf explant resulted from young leaves on a medium based on MS macroelements supplemented with 22 µM BAP and 0.1 µM_NAA together with sorbitol, at concentrations of 165 mM or 220 mM. Sorbitol was more effective than sucrose, glucose, fructose or a combination of these sugars. A cold and dark pretreatment of the shoots enhanced the formation of adventitious shoots.
Key concepts: Shoot, Sorbitol, Sucrose, Fructose, Rootstock, Explant culture, Regeneration (biology), Botany