首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Encapsulation technology for short-term preservation and germplasm distribution of the African mahogany Khaya senegalensis.
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Encapsulation technology for short-term preservation and germplasm distribution of the African mahogany Khaya senegalensis.

机译:非洲桃花心木塞内加尔人的短期保存和种质分布的封装技术。

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A protocol was developed for short-term preservation and distribution of the medicinal and timber plantation tree, Khaya senegalensis, using alginate-encapsulated shoot tips. The study assessed the effects of culture medium, storage temperature, auxin concentration and planting substrate on shoot regrowth or conversion into plantlets of four different clones. Optimal shoot growth was obtained, with high frequencies (92-100%) of shoot emergence, on Murashige and Skoog (MS) culture media containing 4.4 micro M benzyladenine (BA). Encapsulated shoot tips survived longer at 25 degrees C than at 4 degrees C, with viability of 73-88% after 8 weeks. Conversion into plantlets was achieved on half-strength MS medium by pre-culture treatment of shoot tips with 49-490 micro M indole-3-butyric acid (IBA) before encapsulation. Treatment with 245 micro M IBA provided 52-98% conversion, and 90-95% of plantlets survived acclimatisation under nursery conditions. To eliminate the in vitro culture step after encapsulation, synthetic seeds were allowed to pre-convert before sowing directly onto a range of ex vitro non-sterile substrates. Highest frequencies of plantlet formation from pre-converted synthetic seeds (42-86%) were obtained by transferring synthetic seeds to organic compost, and these plantlets exhibited almost 100% survival in the nursery without mist irrigation. Pre-conversion is a novel and convenient method for producing synthetic seeds that are suitable for distribution to commercial nurseries
机译:开发了一种协议,用于使用藻酸盐封装的梢尖来短期保存和分配药用和木材种植树塞内加尔种。该研究评估了培养基,储存温度,植物生长素浓度和种植基质对四个不同克隆的枝条再生或转化为幼苗的影响。在含有4.4 micro M苄基腺嘌呤(BA)的Murashige和Skoog(MS)培养基上,以高频率(92-100%)的芽萌芽获得了最佳的芽生长。封装的芽梢在25摄氏度下的存活时间比在4摄氏度下更长,在8周后的生存力为73-88%。在包封前,用49-490 micro M吲哚-3-丁酸(IBA)对茎尖进行预培养处理,从而在半强度MS培养基上实现了向小植株的转化。 245 micro M IBA处理可提供52-98%的转化率,而90-95%的小苗在苗圃条件下能适应环境。为了消除包封后的体外培养步骤,可将合成种子进行预转化,然后直接播种到一系列体外非无菌底物上。通过将合成种子转移到有机堆肥中,从预先转化的合成种子形成植株的频率最高(42-86%),并且这些苗在没有喷雾灌溉的苗圃中表现出几乎100%的存活率。预转化是一种生产合成种子的新颖便捷的方法,适合分发给商业苗圃

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