首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Paving the way for large-scale micropropagation of Juglans x intermedia using genetically identified hybrid seed
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Paving the way for large-scale micropropagation of Juglans x intermedia using genetically identified hybrid seed

机译:使用遗传鉴定的杂种种子为核桃中间种的大规模微繁殖铺平道路

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This study provides a basic tool for the production of a multiclonal variety of Juglans nigra x J. regia hybrids (J. x intermedia), including optimized in vitro propagation methods and DNA-based techniques for the identification of hybrid seeds. Following identification of hybrid seed material using DNA markers embryo axes dissected from mature nuts were used as primary explants for establishing shoot cultures. The growth of shoot cultures of four hybrid genotypes was compared on two different basal media (Rugini and DKW) with three concentrations (2.2; 4.4; and 8.8 A mu M) of 6-benzylaminopurine (BA), and three gelling agents (Oxoid agar, Kobe agar, Gelrite). Three indole-3-butyric acid (IBA) concentrations (4, 12, and 20 A mu M) were compared for root induction, as well as three media for root expression. In general, the best combination of shoot elongation and production of new axillary shoots was achieved with 4.4 mu M BA and 0.2 mu M IBA in Rugini and in DKW medium. However, shoot elongation in most genotypes was favored when 2.2 mu M BA and 0.2 mu M IBA was used, in both, DKW and Rugini medium. The optimal gelling agent for Juglans hybrid shoot cultures was Kobe agar in Rugini medium. Highest rooting percentages were obtained on DKW medium with 12 A mu M IBA with 5 days in darkness followed by root expression under light on a mixture of gelified A1/4 DKW medium and vermiculite. During acclimatization, more than 75 % of the plantlets continued to grow vigorously.
机译:这项研究为生产胡桃(Jglans nigra x regia)杂种(J. x intermedia)的多克隆品种提供了基本工具,包括优化的体外繁殖方法和基于DNA的技术来鉴定杂种。在使用DNA标记鉴定杂种种子材料后,将从成熟坚果上解剖下来的胚轴用作建立芽培养物的主要外植体。在两种不同的基础培养基(Rugini和DKW)上,分别对三种浓度(2.2、4.4和8.8 AμM)的6-苄基氨基嘌呤(BA)和三种胶凝剂(类琼脂)比较了四种杂种基因型的芽培养物的生长情况。 ,神户琼脂,Gelrite)。比较了三种吲哚-3-丁酸(IBA)浓度(4、12和20 AμM)的根诱导,以及三种培养基的根表达。通常,在Rugini和DKW培养基中,使用4.4μM BA和0.2μM IBA可以达到最佳的枝条伸长和新腋生芽的组合。但是,在DKW和Rugini培养基中,当使用2.2μM BA和0.2μM IBA时,大多数基因型的枝条伸长均受到支持。 Juglans杂芽培养的最佳胶凝剂是Rugini培养基中的Kobe琼脂。在具有12 AμM IBA的DKW培养基中,在黑暗中5天,然后在光照下在胶凝的A1 / 4 DKW培养基和ver石的混合物上进行根表达,获得最高的生根百分比。在适应过程中,超过75%的小苗继续旺盛生长。

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