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通过茎尖器官发生实现木薯植株的再生。

Regeneration of cassava plants via shoot organogenesis.

作者信息

Li H-Q, Guo J-Y, Huang Y-W, Liang C-Y, Liu H-X, Potrykus I, Puonti-Kaerlas J

机构信息

Institute for Plant Sciences, Swiss Federal Institute of Technology, ETH Zentrum, CH-8092 Zürich, Switzerland Fax no.: +41-1-632-1044 E-mail:

South China Institute of Botany, Academia Sinica, Guagzhou, China, , , , , , CN.

出版信息

Plant Cell Rep. 1998 Mar;17(5):410-414. doi: 10.1007/s002990050416.

Abstract

A novel regeneration system based on direct shoot organogenesis is described for cassava. Plants could be regenerated at high frequency by inducing shoot primordia on explants derived from cotyledons of cassava somatic embryos. After a passage on elongation medium, the regenerated shoots were easily rooted in hormone-free medium and could be successfully transplanted to soil. Using the shoot-organogenesis-based regeneration method, up to eight transplantable plantlets per explant could be regenerated. The system was optimised first for one cassava cultivar, and then its transferability to three other cultivars was demonstrated. This method widens the scope of in vitro regeneration modes of cassava, and is also compatible with Agrobacterium-mediated transformation. To develop an efficient system for production of somatic embryos for regeneration experiments, conditions for inducing primary and cycling somatic embryos were also studied, and highly efficient plant regeneration via germination of somatic embryos was achieved using maltose instead of sucrose in the culture medium, and combining paclobutrazol with 2,4-dichlorophenoxyacetic acid in the embryo induction medium.

摘要

本文描述了一种基于直接芽器官发生的木薯新型再生系统。通过在木薯体细胞胚子叶来源的外植体上诱导芽原基,可高频再生植株。在伸长培养基上继代培养后,再生芽易于在无激素培养基中生根,并能成功移栽到土壤中。采用基于芽器官发生的再生方法,每个外植体最多可再生8株可移栽的植株。该系统首先针对一个木薯品种进行了优化,然后证明了其对其他三个品种的可转移性。该方法拓宽了木薯离体再生模式的范围,并且与农杆菌介导的转化兼容。为了开发一种用于再生实验的高效体细胞胚生产系统,还研究了诱导初级和循环体细胞胚的条件,并且通过在培养基中使用麦芽糖代替蔗糖,以及在胚诱导培养基中将多效唑与2,4-二氯苯氧乙酸结合使用,实现了通过体细胞胚萌发的高效植株再生。

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