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Plant regeneration via direct somatic embryogenesis from leaf explants of Tolumnia Louise Elmore ‘Elsa’

机译:植物再生通过直接体细胞胚胎发生,从托莱斯·莱里·埃尔莫尔'Elsa'的叶片外植物

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摘要

Abstract Background Tolumnia genus (equitant Oncidium) is a group of small orchids with vivid flower color. Thousands of hybrids have been registered on Royal Horticulture Society and showed great potential for ornamental plant market. The aim of this study is to establish an efficient method for in vitro propagation. Results Leaf explants taken from in vitro-grown plants were used to induce direct somatic embryogenesis on a modified 1/2 MS medium supplemented with five kinds of cytokinins, 2iP, BA, kinetin, TDZ and zeatin at 0.3, 1 and 3 mg l−1 in darkness. TDZ at 3 mg l−1 gave the highest percentage of explants with somatic globular embryos after 90 days of culture. It was found that 2,4-D and light regime highly retarded direct somatic embryogenesis and showed 95–100% of explant browning. Histological observations revealed that the leaf cells divided into meristematic cells firstly, followed by somatic proembryos, and then somatic globular embryos. Eventually, somatic embryos developed a bipolar structure with the shoot apical meristem and the root meristem. Scanning electron microscopy observations showed that the direct somatic embryogenesis from leaf explants was asynchronously. The somatic embryos were found on the leaf tip, the adaxial surface and also the mesophyll through a cleft, and it reflected the heterogeneity of the explant. The 90-day-old globular embryos were detached from the parent explants and transferred onto a hormone-free 1/2 MS medium in light condition for about 1 month to obtain 1-cm-height plantlets. After another 3 months for growth, the plantlets were potted with Sphagnum moss and were acclimatized in a shaded greenhouse. After 1 month of culture, the survival rate was 100%. Conclusions In this report, a protocol for efficient regenerating a Tolumnia orchid, Louise Elmore ‘Elsa’, was established via direct somatic embryogenesis and might reveal an alternative approach for mass propagation of Tolumnia genus in orchid industry.
机译:抽象背景Tolumnia属(赤仙花石)是一群与生动的花色的小兰花。皇家园艺学会已经注册了成千上万的混合动力车,并为观赏植物市场表现出极大的潜力。本研究的目的是建立一种有效的体外繁殖方法。结果从体外生长的植物中取出的叶片外植体在补充有五种细胞素,2IP,Ba,kinetin,TDZ和Zeeatin的改性的1/2 ms培养基上诱导直接体细胞胚胎发生,在0.3,1和3mg l- 1在黑暗中。 3毫克L-1的TDZ为90天培养后的体细胞球体胚胎的百分比最高。发现2,4-D和轻型制度高度延迟直接体细胞胚胎发生,并显示出95-100%的脱蛋白褐变。组织学观察显示,叶片首先将叶片分为共聚合物,其次是体细胞序列,然后是体细胞球状胚胎。最终,体细胞胚胎与拍摄顶端公司和根业企业产生双极结构。扫描电子显微镜观察结果表明,叶片外植体的直接体细胞胚胎发生异步。在叶尖,对叶片表面和叶片通过裂隙中发现了体细胞胚,并反映了外植体的异质性。将90天常见的球状胚胎从亲本外植体中脱离,并在轻质条件下转移到一种激素的1/2 ms培养基上约1个月以获得1cm高度的小植物。再过3个月的生长后,植物用斯巴格氏苔盆栽盆栽,并在阴影温室内适应。培养1个月后,存活率为100%。结论在本报告中,通过直接体细胞胚胎发生建立了一种有效再生托尔莫尔兰花的议定书,并可通过直接体细胞胚胎发生建立,并可能揭示兰花行业托别血症大众繁殖的替代方法。

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