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Effect of cryopreservation and post-cryopreservation somatic embryogenesis on the epigenetic fidelity of Cocoa (Theobroma cacao L.)

机译:冷冻保存和冷冻保存后的体细胞胚发生对可可(Theobroma cacao L.)表观遗传保真度的影响

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摘要

While cocoa plants regenerated from cryopreserved somatic embryos can demonstrate high levels of phenotypic variability, little is known about the sources of the observed variability. Previous studies have shown that the encapsulation-dehydration cryopreservation methodology imposes no significant extra mutational load since embryos carrying high levels of genetic variability are selected against during protracted culture. Also, the use of secondary rather than primary somatic embryos has been shown to further reduce the incidence of genetic somaclonal variation. Here, the effect of in vitro conservation, cryopreservation and post-cryopreservation generation of somatic embryos on the appearance of epigenetic somaclonal variation were comparatively assessed. To achieve this we compared the epigenetic profiles, generated using Methylation Sensitive Amplified Polymorphisms, of leaves collected from the ortet tree and from cocoa somatic embryos derived from three in vitro conditions: somatic embryos, somatic embryos cryopreserved in liquid nitrogen and somatic embryos generated from cryoproserved somatic embryos. Somatic embryos accumulated epigenetic changes but these were less extensive than in those regenerated after storage in LN. Furthermore, the passage of cryopreserved embryos through another embryogenic stage led to further increase in variation. Interestingly, this detected variability appears to be in some measure reversible. The outcome of this study indicates that the cryopreservation induced phenotypic variability could be, at least partially, due to DNA methylation changes. Key message: Phenotypic variability observed in cryostored cocoa somatic-embryos is epigenetic in nature. This variability is partially reversible, not stochastic in nature but a directed response to the in-vitro culture and cryopreservation.
机译:从低温保存的体细胞胚再生的可可植物可以表现出高水平的表型变异性,但对观察到的变异性的来源知之甚少。以前的研究表明,封装-脱水冷冻保存方法没有施加明显的额外突变负荷,因为在长期培养过程中选择了携带高水平遗传变异性的胚胎。而且,已证明使用次要而不是主要的体细胞胚可以进一步减少遗传体细胞克隆变异的发生。在这里,比较评估了体外保存,冷冻保存和冷冻保存后体细胞胚对表观遗传体细胞克隆变异的出现的影响。为了实现这一目标,我们比较了使用甲基化敏感扩增多态性生成的表观遗传图谱,这些图谱是从奥尔特树和可可胚体中采集的,这些胚体来自三种体外条件:体细胞胚,液氮中冷冻的体细胞胚和低温保存的体细胞胚体细胞胚。体细胞胚胎积累了表观遗传学变化,但其范围不及在LN中储存后再生的那些。此外,低温保存的胚胎通过另一个胚胎发生阶段导致变异进一步增加。有趣的是,这种检测到的变异性在某种程度上看来是可逆的。这项研究的结果表明,冷冻保存诱导的表型变异可能至少部分是由于DNA甲基化的变化。关键信息:在低温储存的可可体胚中观察到的表型变异性是自然遗传的。这种可变性是部分可逆的,本质上不是随机的,而是对体外培养和冷冻保存的直接反应。

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