Suppr超能文献

药用重要红树林物种海漆(Excoecaria agallocha L.)的离体繁殖方案。

Protocol for in vitro propagation of Excoecaria agallocha L., a medicinally important mangrove species.

作者信息

Srinivasa Rao C, Eganathan P, Anand A, Balakrishna P, Reddy T P

机构信息

M. S. Swaminathan Research Foundation, III Cross Street, Taramani Institutional Area, Taramani, Madras 600 113, India Fax: 99-44-2351319 e-mail:

Department of Genetics, Osmania University, Hyderabad, India, , , , , , IN.

出版信息

Plant Cell Rep. 1998 Aug;17(11):861-865. doi: 10.1007/s002990050498.

Abstract

An in vitro propagation protocol has been developed for Excoecaria agallocha L. (Euphorbiaceae), a mangrove species. Nodal segments were used for axillary shoot proliferation. One shoot from each node of binodal explants was observed 3 weeks after inoculation. The best axillary sprouting was seen on a newly formulated medium containing BA, Zeatin and IBA in concentrations of 13.3 μM, 4.65 μM and 1.23 μM, respectively. The new medium, first used in this study, has a specific composition of major nutrients, MS micronutrients and iron compounds. Nodal segments from rooted cuttings and seedlings responded better than those of mature tree explants. Multiple shoot induction was complemented with efficient shoot elongation, and repeated subculture of binodal segments from axillary shoots resulted in 10-12 shoots per explant in 3 months. Rooting was achieved by growing shoots in the new medium with 0.23 μM IBA. Regenerated plants were successfully acclimatized to the natural environment, and about 85% of plantlets survived under ex vitro conditions. This is the first report of micropropagation in the genus Excoecaria and also in mangrove tree species.

摘要

已为红树林物种海漆(大戟科)开发了一种离体繁殖方案。使用节段进行腋芽增殖。接种3周后观察到双节外植体每个节上有一个芽。在一种新配制的培养基上观察到最佳的腋芽萌发,该培养基分别含有浓度为13.3 μM、4.65 μM和1.23 μM的BA、玉米素和IBA。本研究首次使用的新培养基具有特定的大量营养素、MS微量元素和铁化合物组成。来自生根插条和幼苗的节段比成熟树外植体的节段反应更好。多次芽诱导辅以有效的芽伸长,并且对腋芽的双节段进行重复继代培养,3个月内每个外植体可产生10 - 12个芽。通过在含有0.23 μM IBA的新培养基中培养芽来实现生根。再生植株成功适应了自然环境,约85%的植株在离体条件下存活。这是海漆属以及红树林树种微繁殖的首次报道。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验