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Ex situ conservation of Ruscus aculeatus L. - ruscogenin biosynthesis, genome-size stability and propagation traits of tissue-cultured clones

机译:猕猴桃的异位保存-皂甙元的生物合成,基因组大小的稳定性和组织培养克隆的繁殖特性

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摘要

Ruscus aculeatus L. is a perennial semi-shrub with distinctive leaf-like branches (cladodes). Rhizomes and roots contain steroidal saponins (ruscogenins) that are used in medicine and cosmetics for their anti-inflammatory, venotonic and antihaemorroidal activity. Problematic cultivation of the species causes in many countries unsustainable over-collection from the wild. Tissue culture propagation of R. aculeatus was carried out for conservation and propagation purposes. The impact of the clonal origin (genotype) on the ruscogenin biosynthesis, genome-size stability and propagation traits and morpho-physiological response to long-term cultivation in vitro was studied. Production of ruscogenins in fully developed regenerants was quantified by high-performance liquid chromatography (HPLC). Genome-size stability of the clones was assessed by flow cytometry. Slow growth and prolonged lag-phase were characteristic for the whole propagation cycle. Produced plantlets with well-defined organs were suitable for direct ex vitro planting. Genome DNA content of all clones was stable and comparable to native plants. Ruscogenin biosynthesis was clone-specific, presenting distinctive profiles of the cultures. Our results imply that clone origin and culture type might influence saponin biosynthesis in Ruscus. These traits should be considered in the ex situ conservation of the genetic diversity of this species and by production of planting material as well.
机译:Ruscus aculeatus L.是多年生半灌木,有独特的叶状分支(cladodes)。根茎和根含有类固醇皂苷(ruscogenins),由于其抗炎,血管收缩和抗类痔活性而被用于药物和化妆品中。该物种的有问题的种植在许多国家导致野外不可持续的过度采集。为保存和繁殖目的进行了刺a的组织培养繁殖。研究了克隆来源(基因型)对ruscogenin生物合成,基因组大小的稳定性和繁殖特性以及体外长期培养的形态生理响应的影响。通过高效液相色谱法(HPLC)对完全发育的再生剂中糖精蛋白的产生进行定量。通过流式细胞术评估克隆的基因组大小稳定性。生长缓慢和滞后期延长是整个繁殖周期的特征。产生的器官明确的小植株适合直接体外种植。所有克隆的基因组DNA含量稳定,可与天然植物相比。芸香苷元的生物合成是克隆特异性的,呈现出独特的培养特征。我们的结果表明克隆来源和培养类型可能会影响红景天皂苷的生物合成。在异地保护该物种的遗传多样性以及种植材料的生产中,应考虑这些特性。

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