摘要
为提高山药离体繁殖的速度,缩短繁殖周期,以铁棍山药(Dioscorea opposita cv.‘Tiegun’)带腋芽茎段为材料,对类原球茎的诱导、增殖、分化与植株再生进行了研究。结果表明,铁棍山药类原球茎诱导的最适培养基为MS+1.0 mg·L^(–1)TDZ+30 g·L^(–1)蔗糖,增殖的最适培养基为MS+9 mg·L^(–1) 6-BA+30 g·L^(–1)蔗糖,分化的最适培养基为MS+2 mg·L^(–1) KT+0.02mg·L^(–1) NAA+30 g·L^(–1)蔗糖,最适生根培养基为1/4MS+0.05 mg·L^(–1) NAA+1.0 mg·L^(–1) PP333+15 g·L^(–1)蔗糖,生根率达80%,移栽成活率可达85%。类原球茎的诱导形成及植株再生体系的建立为怀山药种苗的快速繁殖提供了一条新途径。
To improve the speed of in vitro propagation of Dioscorea opposita and shorten the breeding cycle, we used nodal segments with axillary buds of D. opposita cv. ‘Tiegun' as the starting material. The optimal conditions for protocorm-like body(PLB) induction, proliferation, differentiation and plantlet regeneration were analyzed. The optimal culture medium for PLB induction was MS+1.0 mg·L^–1 TDZ+30 g·L^–1 sucrose, the optimal culture medium for PLB proliferation was MS+9 mg·L^–1 6-BA+30 g·L^–1 sucrose, and the optimal culture medium for PLB differentiation was MS+2 mg·L^–1 KT+0.02 mg·L^–1 NAA+30 g·L^–1 sucrose. In culture medium containing 1/4 MS+0.05 mg·L^–1 NAA+1.0 mg·L^–1 PP333+15 g·L^–1 sucrose, the rooting rate of regenerated plantlets from PLBs was 80%, and the survival rate of regenerated plantlets was up to 85% after being sown in soil. The induction of protocorm like bodies and the establishment of plant regeneration system provide a new way for rapid propagation of D. opposita seedlings.
作者
李瑞雪
李纪强
蒲腾飞
张晓丽
赵喜亭
李俊华
李明军
Ruixue Li;Jiqiang Li;Tengfei Pu;Xiaoli Zhang;Xiting Zhao;Junhua Li;Mingjun Li(College of Life Sciences, Henan Normal University, Xinxiang 453007, China;Engineering Technology Research Center of Nursing and Utilization of Genuine Chinese Crude Drugs in Henan Province, Xinxiang 453007, China;SHenan Province En- gineering Laboratory of Green Medicinal Plant Biotechnology, Xinxiang 453007, China)
出处
《植物学报》
CAS
CSCD
北大核心
2018年第3期334-340,共7页
Chinese Bulletin of Botany
基金
国家自然科学基金(No.81274019)
国家中医药管理局中医药行业科研专项子课题(No.201407005-08)
河南省创新型科技人才队伍建设工程(No.C20130037)
关键词
铁棍山药
诱导
植株再生
增殖
类原球茎
Dioscorea opposita
induction
plant regeneration
proliferation
protocorm-like body