首页> 外文期刊>Biotechnology Advances: An International Review Journal >Recent advances in the cryopreservation of shoot-derived germplasm of economically important fruit trees of Actinidia, Diospyros, Malus, Olea, Prunus, Pyrus and Vitis.
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Recent advances in the cryopreservation of shoot-derived germplasm of economically important fruit trees of Actinidia, Diospyros, Malus, Olea, Prunus, Pyrus and Vitis.

机译:猕猴桃,柿属,海棠属,油橄榄,油橄榄,李,梨和葡萄的经济上重要的果树的芽衍生种质的低温保存的最新进展。

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This paper presents the advances made over the last decade in cryopreservation of economically important vegetatively propagated fruit trees. Cryopreservation protocols have been established using both dormant buds sampled on field-grown plants and shoot tips sampled on in vitro plantlets. In the case of dormant buds, scions are partially dehydrated by storage at -5 degrees C, and then cooled slowly to -30 degrees C using low cooling rates (c.a. 1 degrees C/h) before immersion in liquid nitrogen. After slow rewarming and rehydration of samples, regrowth takes place either through grafting of buds on rootstocks or excision of apices and inoculation in vitro. In the case of shoot tips of in vitro plantlets, the cryopreservation techniques employed are the following: controlled rate cooling procedures involving slow prefreezing followed by immersion in liquid nitrogen or vitrification-based procedures including encapsulation-dehydration, vitrification, encapsulation-vitrification and droplet-vitrification. The current status of cryopreservation for a series of fruit tree species including Actinidia, Diospyros, Malus, Olea, Prunus, Pyrus and Vitis is presented. Routine application of cryopreservation for long-term germplasm storage in genebanks is currently limited to apple and pear, for which large cryopreserved collections have been established at NCGRP, Fort Collins (USA), using dormant buds and in vitro shoot tips, respectively. However, there are a growing number of examples of pilot scale testing experiments under way for different species in various countries. Progress in the further development and application of cryopreservation techniques will be made through a better understanding of the mechanisms involved in the induction of tolerance to dehydration and cryopreservation in frozen explants.Digital Object Identifier http://dx.doi.org/10.1016/j.biotechadv.2012.09.004
机译:本文介绍了近十年来在冷冻保存经济上重要的无性繁殖果树方面取得的进展。已使用田间生长的植物上采样的休眠芽和体外小植物上采样的芽尖建立了冷冻保存方案。在休眠芽的情况下,接穗通过在-5摄氏度下储存而部分脱水,然后在浸入液氮之前使用低冷却速率(约1摄氏度/小时)缓慢冷却至-30摄氏度。在缓慢地使样品复温和补水后,通过在砧木上嫁接芽或切除顶端并在体外接种来进行再生。对于体外苗的芽尖,采用的冷冻保存技术如下:控制速率的冷却程序,包括缓慢的预冷冻,然后浸入液氮中,或基于玻璃化的程序,包括封装-脱水,玻璃化,封装-玻璃化和液滴玻璃化。介绍了包括猕猴桃,柿属,苹果属,油橄榄,李属,梨属和葡萄属在内的一系列果树的冷冻保存现状。目前,将低温保存用于种质库中长期种质的常规应用仅限于苹果和梨,为此,分别在美国科林斯堡的NCGRP建立了大型低温保存品库,分别使用了休眠芽和体外芽尖。但是,在不同国家,针对不同物种的中试规模测试实验的例子越来越多。通过更好地理解冷冻外植体对脱水和冷冻保存的耐受性诱导所涉及的机制,将在冷冻保存技术的进一步开发和应用方面取得进展。数字对象标识符http://dx.doi.org/10.1016/j .biotechadv.2012.09.004

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