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首页> 外文期刊>American Journal of Plant Sciences >In Vitro Propagation Potential via Somatic Embryogenesis of the Two Maturing Early Cultivars of European Chestnut (Castanea sativa Mill.)
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In Vitro Propagation Potential via Somatic Embryogenesis of the Two Maturing Early Cultivars of European Chestnut (Castanea sativa Mill.)

机译:两种欧洲早熟品种(Castanea sativa Mill。)通过体细胞胚发生的体外繁殖潜能。

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Turkey ranks the third in the production of chestnuts in the world having an important place both in domestic and global markets. However, the chestnut production and the number of trees have been diminishing in recent years. Therefore, in vitro propagation of the chestnut, in addition to the classical propagation techniques, should be applied. Especially the propogation of the early maturing cultivars and production of the quality chestnuts will provide a better income to the producer. Here, somatic embryo production and regeneration from the immature cotyledons of the early maturing cultivars of the European chestnut (Castanea sativa Mill), Haciibis and Karamehmet, were studied using the somatic embryogenesis, one of the in vitro propagation techniques. To induce the somatic embryogenesis, 168 different combinations were applied to both cultivars. The somatic embryogenesis rate in Haciibis cultivar, in which the interactions were observed among the applications, was found to be 9.9% while it was 11.1% for the Karamehmet cultivar. Dessication, cold treatment, gibberellic acid (GA3) and benzyladenine (BA) + naphthaleneacetic acid (NAA) applications were performed on the regeneration of the somatic embryos, and 40% conversion to plant was obtained with desiccation together with BA + NAA supplementation to the medium.
机译:土耳其在全球栗子生产中排名第三,在国内和全球市场上都占有重要地位。然而,近年来栗子的产量和树木的数量一直在减少。因此,除了经典的繁殖技术外,还应采用板栗的体外繁殖。特别是早熟品种的繁殖和优质栗子的生产将为生产者提供更好的收入。在这里,使用体细胞胚发生技术(一种体外繁殖技术)研究了欧洲板栗(Castanea sativa Mill),Haciibis和Karamehmet早熟品种的未成熟子叶的体细胞胚生产和再生。为了诱导体细胞胚发生,将168种不同的组合应用于两个品种。在应用之间观察到相互作用的Haciibis品种的体细胞胚发生率为9.9%,而Karamehmet品种为11.1%。在体细胞胚的再生过程中进行了脱水,冷处理,赤霉素(GA3)和苄腺嘌呤(BA)+萘乙酸(NAA)的应用,并通过干燥以及BA + NAA的补充获得了40%的转化率。中。

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