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首页> 外文期刊>Industrial Crops and Products >Conservation and storage of Curcuma amada Roxb. synseeds on Luffa sponge matrix and RAPD analysis of the converted plantlets.
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Conservation and storage of Curcuma amada Roxb. synseeds on Luffa sponge matrix and RAPD analysis of the converted plantlets.

机译:Curcuma amada Roxb的保存和存储。在丝瓜海绵基质上进行合成,并对转化的幼苗进行RAPD分析。

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Curcuma amada Roxb. (family Zingiberaceae), is gaining global attention as potential source of new drug molecule(s) as it is credited with compounds having remarkable pharmacological properties. Recognizing the risk of loss of genetic variability of C. amada in response to imprudent exploitation of the natural resources coupled with unsystematic cultivation practices, preservation of its genetic resources has attracted the current research attention. The present study exploited the multifarious properties of Luffa sponge (i.e. sound physical strength, stability in texture/shape over wide pH range and repeated autoclaving, cost effective availability, etc.) as a novel matrix for synthetic seed conservation. In this study, we have evaluated the consequences of the presence of two fungicides, namely - bavistin and rosebengal, in the gel matrix as well as in the Luffa sponge for conservation of contamination free germplasm of C. amada. A maximum of 50% and 75% regrowth could be recorded amongst rosebengal and bavistin containing synthetic seeds respectively after 4 weeks of plating on plant growth regulator-free MS medium. Further growth of the encapsulated microshoots was significantly impeded by the presence of rosebengal within the synthetic seeds. On the contrary, the bavistin containing synthetic seeds demonstrated five times better regeneration ability to contamination-free shoots. A total of 78% survival was achieved upon transfer of these healthy plantlets to glass-house. RAPD fingerprinting revealed 84.62% genetic similarity between randomly selected synthetic seed derived plantlets. This report strengthened the vital conservation approach of C. amada using inexpensive Luffa sponge as storage matrix and bavistin for eradication of contaminations.
机译:天竺葵 Roxb。 (姜科)家族作为新药分子的潜在来源而受到全球关注,因为它被认为具有出色的药理特性。认识到丧失iC基因变异性的风险。 amada 为应对对自然资源的不当开发以及不系统的耕作方式,其遗传资源的保存引起了当前的研究关注。本研究利用了 Luffa 海绵的多种特性(即良好的物理强度,在宽pH范围内质地/形状的稳定性以及反复高压灭菌,经济有效的可用性等)作为合成种子的新型基质保护。在这项研究中,我们评估了凝胶基质以及 Luffa 海绵中两种杀菌剂,即bavistin和rosebengal的存在,以保护无污染种质的后果。 C。天田。在无植物生长调节剂的MS培养基上平板接种4周后,分别在含玫瑰红和bavistin的合成种子中分别记录到最多50%和75%的再生长。合成种子中玫瑰红的存在显着阻碍了封装的微枝的进一步生长。相反,含有合成种子的巴维斯汀具有比无污染芽高出五倍的再生能力。将这些健康的小苗转移到温室后,总生存率达到了78%。 RAPD指纹图谱显示,随机选择的合成种子衍生小植株之间的遗传相似性为84.62%。该报告加强了 C的重要保护方法。 amada 使用廉价的 Luffa 海绵作为存储基质和bavistin来消除污染物。

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