An efficient droplet-vitrification cryopreservation procedure for high imperatorin-yielding hairy root clones of Urena lobata.

IF 2.3 3区 生物学 Q2 BIOLOGY Cryobiology Pub Date : 2024-12-04 DOI:10.1016/j.cryobiol.2024.105186
Dai Minh Cao, Anh Lan Bui, Le Van Bui, Phuong Ngo Diem Quach
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Abstract

The valuable anti-cancer and anti-inflammatory secondary metabolite, imperatorin, has been found in the hairy roots (HRs) of Urena lobata. However, an increasing number of problems related to cryo-injury and cryoprotectant toxicity could potentially reduce the quality of root clones, highlighting the need to develop a reliable technique for long-term preservation. Based on the impact of the successive steps of the initial droplet-vitrification procedure employed for cryopreservation of HRs using the histological evaluation of plasmolysis, various selected factors were independently investigated. The maximum plasmolysis was observed after the preculture with 0.5 M sucrose (46.59 %) and the dehydration treatment (48.32 %). In the improved cryopreservation procedure, when prolonged preculture for 72 h in liquid WPM with 0.3 M sucrose and dehydration in the appropriate vitrification solution, which included 30 % (w/v) glycerol and 50 % (w/v) sucrose, for 10 min at 0 °C, the plasmolysis in the two steps was significantly reduced in comparison with the untreated control. The cryopreserved HRs could increase their regeneration to 93.3 % and regenerated root length to 4.65 cm. Their growth and imperatorin production were almost the same as those of untreated controls after three to five subsequent subcultures. Our results have demonstrated that our new approach, which only focuses on the key factors that significantly increase the plasmolysis, modifies their level to fit with the HR cells of U. lobata. The early application of the plasmolysis evaluation method may immediately screen the impact of factors on individual root cells instead of spending time and cost evaluating the recovery of root tips at each step to develop an efficient cryopreservation procedure.

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白莲毛状根高产量无性系的高效液滴玻璃化冷冻保存方法。
在白莲毛状根(Urena lobata)中发现了有价值的抗癌和抗炎次生代谢产物欧前胡素。然而,越来越多的与冷冻损伤和冷冻保护剂毒性相关的问题可能会降低根无性系的质量,这突出了开发可靠的长期保存技术的必要性。基于采用细胞质溶解的组织学评价进行hr冷冻保存的初始液滴玻璃化程序的连续步骤的影响,我们独立研究了各种选定的因素。0.5 M蔗糖预培养(46.59%)和脱水处理(48.32%)的酶解率最高。在改进的冷冻保存程序中,在含有0.3 M蔗糖的液体WPM中延长预培养72小时,并在适当的玻璃化溶液中脱水,其中包括30% (w/v)甘油和50% (w/v)蔗糖,在0°C下脱水10分钟,与未处理的对照相比,这两个步骤的质解明显减少。超低温保存的hr再生率可达93.3%,再生根长可达4.65 cm。经过三到五次继代培养后,它们的生长和欧前胡素的产量几乎与未处理的对照组相同。我们的结果表明,我们的新方法,只关注显著增加质解的关键因素,修改它们的水平,以适应U. lobata的HR细胞。早期应用质解评估方法可以立即筛选因素对单个根细胞的影响,而不是花费时间和成本在每个步骤评估根尖的恢复,以开发有效的冷冻保存程序。
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来源期刊
Cryobiology
Cryobiology 生物-生理学
CiteScore
5.40
自引率
7.40%
发文量
71
审稿时长
56 days
期刊介绍: Cryobiology: International Journal of Low Temperature Biology and Medicine publishes research articles on all aspects of low temperature biology and medicine. Research Areas include: • Cryoprotective additives and their pharmacological actions • Cryosurgery • Freeze-drying • Freezing • Frost hardiness in plants • Hibernation • Hypothermia • Medical applications of reduced temperature • Perfusion of organs • All pertinent methodologies Cryobiology is the official journal of the Society for Cryobiology.
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