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Cryopreservation of In Vitro-Grown Plant Apical Shoot Tips by Vitrification and Encapsulation-Vitrification

机译:通过玻璃化和包封玻璃化冷冻保存体外生长的植物根尖的技巧

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摘要

In vitro-grown apical shoot tips of Gentiana were successfully cryopreserved by vitrification (V) and encapsulation-vitrification (EV) protocols. We optimized and compared the V and EV protocols. Although both protocols resulted in a relatively high survival rate, the EV protocol seemed to have several distinct advantages. First, the survival rate of shoot tips cryopreserved by the EV protocol was much greater than that by the V protocol under optimized conditions. Second, the range of optimum treatment period by vitrification solution (PVS2 solution) was considerably wider with the EV protocol than with the V protocol. Third, after rewarming from liquid nitrogen temperature, the cryopreserved shoot tips showed more vigorous growth for the EV protocol than the V protocol. With the optimum EV protocol, we succeeded to cryopreserve shoot tips from 10 different lines of Gentiana and uniformly obtained high survival rate. Thus, the EV protocol appears to be promising for cryopreservation of a wide range of plant germplasm.
机译:通过玻璃化(V)和包囊玻璃化(EV)协议成功地冷冻保存了龙胆的体外顶梢。我们优化并比较了V和EV协议。尽管两种协议都导致相对较高的生存率,但EV协议似乎具有几个明显的优势。首先,在最佳条件下,通过EV协议冷冻保存的梢梢的存活率要比通过V协议冷冻保存的梢高。其次,EV方案的玻璃化溶液(PVS2溶液)的最佳处理时间范围比V方案的宽得多。第三,从液氮温度重新加热后,与V协议相比,低温保存的芽尖显示EV协议的生长更为强劲。利用最佳的EV方案,我们成功地从10个不同的龙胆属品系中冻存了芽梢,并一致地获得了较高的成活率。因此,EV方案似乎有望用于多种植物种的低温保存。

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