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Plant Regeneration from In Vitro Cultured Hypocotyl Explants of Euonymus japonicus Cu zhi

Plant Regeneration from In Vitro Cultured Hypocotyl Explants of Euonymus japonicus Cu zhi

作     者:SHANG Ai-qin CAI han YAN Xiao-jie HU Hai-zi ZHAO Liang-jun 

作者机构:Department of Ornamental Horticulture and Landscape Architecture China Agricultural University Beijing 100094 P.R.China College of Horticulture Hebei Agricultural University Baoding 071001 P.R.China Department of Horticulture College of Agriculture Yangzhou University Yangzhou 225009 P.R.China 

出 版 物:《Agricultural Sciences in China》 (中国农业科学(英文版))

年 卷 期:2006年第5卷第3期

页      面:196-201页

学科分类:09[农学] 

基  金:Beijing Municipal Science and Technology Commission  BMSTC  (H020620 11 01 30) 

主  题:Euonymus japonicus Cu zhi hypocotyl explants adventitious shoots plant regeneration 

摘      要:Adventitious shoots were successfully regenerated from hypocotyl explants of in vitro cultures of Euonymus japonicus Cu zhi. Hypocotyl slices were cultured on Murashige and Skoog (MS) and B5 basal medium supplemented with varied concentration of different plant growth-regulators, e.g., α-naphthaleneacetic acid (NAA) and indole-3-butyric acid (IBA) in combination with 6-benzylaminopurine (6-BA) and kinetin. The study showed that shoots could be directly regenerated from hypocotyl explants without the intervening callus phase; MS medium was more suitable for adventitious shoots regeneration. The ability of hypocotyls segments to produce shoots varied depending upon their position on the seedlings. The highest regeneration rate was obtained with hypocotyl segments near to the cotyledon cultured on MS basal medium supplemented with 1.5 mg L^-1 6-BA and 0.05 mg L^-1 NAA (63.64%). The regenerated shoots were readily elongated on the same medium as used for multiplication and rooted on half-strength MS basal medium supplemented with 1.0 mg L^-1 IBA and 100 mg L^-1 activated carbon. After being transferred to greenhouse conditions, 96% of the plantlets were successfully acclimatized. This regeneration system is applied for genetic transformation now.

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