期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Establishment of high frequency shoot regeneration system in Himalayan poplar(Populus ciliata Wall. ex Royle) from petiole explants using Thidiazuron cytokinin as plant growth regulator 被引量:4
1
作者 G. Aggarwal A. Gaur D. K. Srivastava 《Journal of Forestry Research》 SCIE CAS CSCD 2015年第3期651-656,共6页
Populus species are important resources for industry and in scientific study on biological and agricul- tural systems. Our objective was to enhance the frequency of plant regeneration in Himalayan poplar (Populus cil... Populus species are important resources for industry and in scientific study on biological and agricul- tural systems. Our objective was to enhance the frequency of plant regeneration in Himalayan poplar (Populus ciliata wall. ex Royle). The effect of TDZ alone and in combi- nation with adenine and NAA was studied on the regen- eration potential of petiole explants. The explants were excised from Himalayan poplar plants grown in glass- houses. After surface sterilization the explants were cul- tured on shoot induction medium. High percentage shoot regeneration (86 %) was recorded on MS medium sup- plemented with 0.004 mg L-1 TDZ and 79.7 mg L-1 adenine. The regenerated shoots for elongation and multi- plication were transferred to MS + 0.5 mg L-1 BAP + 0.2 mg L-1 IAA + 0.3 mg L-1 GA3. Root re- generation from shoots developed in vitro was observed on MS medium supplemented with 0.10 mg L-1 IBA. Hi- malayan poplar plantlets could be produced within 2 months after acclimatization in a sterile mixture of sand and soil. We developed a high efficiency plant regeneration protocol from petiole explants of P. ciliata. 展开更多
关键词 In vitro regeneration petiole explants Growth regulator THIDIAZURON Populus ciliata
下载PDF
不同基因型甜菜叶柄的组织培养及植株的再生 被引量:3
2
作者 卫群 张剑峰 《中国糖料》 1998年第4期21-24,共4页
本文报导了6种不同基因型甜菜叶柄的离体培养结果。实验通过预培养、诱导分化培养,获得了再生植株,建立了甜菜快速繁殖程序。结果表明:甜菜幼苗先经MSB附加一定量的6-苄氨基嘌呤(6-BA)和萘乙酸(NAA)组合的培养基中... 本文报导了6种不同基因型甜菜叶柄的离体培养结果。实验通过预培养、诱导分化培养,获得了再生植株,建立了甜菜快速繁殖程序。结果表明:甜菜幼苗先经MSB附加一定量的6-苄氨基嘌呤(6-BA)和萘乙酸(NAA)组合的培养基中预培养,再取叶柄(带叶片)转入MS附加6-BA和NAA的培养基中诱导分化,不定芽发生频率为18.3%~47.5%,不同基因型材料,诱导率不同。采用MSB或MS大量元素减半,附加一定量的萘乙酸生根培养基,诱导生根率在80%以上,移栽成活率高达10%。 展开更多
关键词 甜菜 叶柄外植体 离体培养 植株再生
下载PDF
五叶地锦离体培养及植株再生
3
作者 尹凌波 陈颖 +2 位作者 孙振元 杨学军 赵梁军 《林业科学研究》 CSCD 北大核心 2008年第1期96-100,共5页
以五叶地锦(Parthenocissus quinquefolia)子叶柄、下胚轴、叶片为外植体进行离体培养,以1/2 MS、B5和Heller为基本培养基,附加不同浓度的细胞分裂素(6-BA,KT,TDZ)及生长素(NAA)诱导下胚轴直接再生不定芽。实验结果表明,暗处理30 d,靠... 以五叶地锦(Parthenocissus quinquefolia)子叶柄、下胚轴、叶片为外植体进行离体培养,以1/2 MS、B5和Heller为基本培养基,附加不同浓度的细胞分裂素(6-BA,KT,TDZ)及生长素(NAA)诱导下胚轴直接再生不定芽。实验结果表明,暗处理30 d,靠近下胚轴的子叶柄接种在1/2 MS+0.3 mg.L-16-BA培养基上,其不定芽分化率最高达64.67%;下胚轴接种在1/2 MS+2.0 mg.L-1KT+0.05 mg.L-1NAA和Heller+0.5 mg.L-1BA+0.1 mg.L-1NAA培养基上,其不定芽分化率接近,达到24%左右;无菌苗的叶片接种在B5+0.5 mg.L-1TDZ+0.05 mg.L-1NAA培养基上,其不定芽分化率达17.7%。芽增殖培养基为1/2 MS+0.5 mg.L-16-BA+0.1 mg.L-1NAA增殖系数为3~5,1/2 MS+0.5 mg.L-1IBA+500 mg.L-1活性炭适于再生幼苗的生根,生根苗经移栽全部成活。 展开更多
关键词 五叶地锦 子叶柄 下胚轴 叶片 植株再生
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部