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An improved thin cell layer culture system for efficient clonal propagation and in vitro withanolide production in a medicinal plant Withania coagulans Dunal

机译:一种改进的薄细胞层培养系统,用于有效的克隆繁殖和在药用植物中含有丹尼亚豆果植物的含有多丙酯的体外生产

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摘要

In vitro micropropagation based on transverse thin cell layer (tTCL), which utilizes a very small number of cells or tissues, has now emerged as a powerful tool in plant tissue differentiation and regeneration. In this study, intense, fast rate shoot multiplication has been achieved utilizing thin cell layer explants for endangered pharmaceutical plant Withania coagulans Dunal (family Solanaceae) having high hypoglycemic potential. To develop an efficient protocol for rapid in vitro propagation of W. coagulans stem node, shoot apical meristem (SAM), and tTCL were used as explants and inoculated in different strength of MS medium. The tTCL explant showed high frequency of shoot regeneration and was also affected by the concentration of plant growth regulators. The full strength solid MS medium was optimal for shoot regeneration (31.94 +/- 1.39%) and the highest percent of shoots (93.05 +/- 2.77) were observed in MS medium fortified with 2.0 mgl(-1) BAP and 0.5 mg(l-1) NAA. In contrast to tTCL, SAM cultured on the same medium showed significantly lower multiplication rate with only 1.16 +/- 0.08 average shoots per responsive explants. The best rooting of the regenerated shoots was achieved in half strength liquid MS medium supplemented with 2mgl(-1) IBA. Plants were successfully transferred to the field after acclimatization with a survival rate of 90.6%. Monomorphic nature of ISSR and RAPD markers in this study confirmed the genetic fidelity of the in vitro raised tTCL clones. Quantification of withanolides content through high performance liquid chromatography (HPLC) showed 1.4 fold increases in withaferin A content and 1.6 fold withanolide A content in acclimatized field grown plants compared to field grown (wild type) plants. In acclimatized field grown plants the over-expression of SQS gene further attested the improved withanolide production in tTCL micropropagated plants having valuable anti-diabetic potential. The current study reveals the fast rate, cost effective micropropagation and conservation of W. coagulans through tTCL technique for its use as anti-diabetic agent at commercial level.
机译:基于横向薄细胞层(TTCL)的体外微迁移,其利用非常少量的细胞或组织,现在已经成为植物组织分化和再生的强大工具。在这项研究中,利用濒危药物植物的薄细胞层外植物进行了强烈的快速射击倍增植物,其濒危药物植物具有高降血性潜力。为了开发一种高效的方案,用于W.凝固豆荚节点的快速体外繁殖,射击顶端分类(SAM),TTCL被用作外植体并以不同的MS培养基强度接种。 TTCL外植体显示出高次芽再生频率,也受植物生长调节剂浓度的影响。全强度固体MS培养基对于芽再生最佳(31.94 +/- 1.39%),并在强化2.0mg1(-1)BAP和0.5mg( L-1)NAA。与TTCL相比,在同一培养基上培养的SAM显示出显着较低的繁殖率,每次响应性外植体只有1.16 +/- 0.08平均芽。再生芽的最佳生根在补充有2mgL(-1)IBA的半强度液态MS培养基中获得。植物成功转移到田地后,以90.6%的存活率。本研究中的ISSR和RAPD标记的单声道性质证实了体外升高的TTCL克隆的遗传保真度。通过高效液相色谱(HPLC)的甘蔗酸酯含量的定量显示为1.4倍,含量含量为1.4倍,与野生植物(野生型)植物相比,在适应的田间生长植物中含有1.6倍。在适应的野外生长的植物中,SQS基因的过表达进一步证明了在具有有价值的抗糖尿病潜力的TTCL微鼠植物中的改善的泛醇生产。目前的研究揭示了通过TTCL技术在商业水平的用作抗糖尿病患者的TTCL技术的快速速率,具有成本效益的微扫描和W.凝固素。

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