首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Effect of Plasmolysis on Protocorm-Like Bodies of Dendrobium Bobby Messina Orchid Following Cryopreservation with Encapsulation– Dehydration Method
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Effect of Plasmolysis on Protocorm-Like Bodies of Dendrobium Bobby Messina Orchid Following Cryopreservation with Encapsulation– Dehydration Method

机译:包囊脱水法冷冻保存后血浆溶质对石end鲍比墨西拿兰花原球茎体的影响

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摘要

Histological observation and scanning electron microscopy analyses in Dendrobium Bobby Messina indicates the cellular process of cryopreserved protocormlike bodies (PLBs) was different comparative to non-cryopreserved PLBs. The cellular process was not only modified by the freezing and thawing effect but also due to the dehydration process itself during the cryopreservation procedure. Histological observation in Dendrobium Bobby Messina in encapsulation–dehydration method indicated that the degree of plasmolysis causes more cellular changes to the cryopreserved PLBs comparative to non-cryopreserved and stock culture PLBs. These results revealed higher amount of homogenous cell population and denser cytoplasm in cryopreserved PLBs. Histological analysis also revealed more voluminous nucleus in cryopreserved PLBs comparative to non-cryopreserved PLBs and PLBs stock culture. In contrast, scanning electron microscope analysis showed severe damages in cryopreserved PLBs and noncryopreserved PLBs comparative to the PLBs stock culture which in return could be the possible reason of no regrowth in encapsulation–dehydration method. Damages incurred were on top part, side part, and at the stomata of the PLBs. Histological observation and scanning electron microscopy analyses in Dendrobium Bobby Messina indicates that the degree of plasmolysis causes changes in the cellular process of PLBs from cryopreserved PLBs was different comparative to non-cryopreserved PLBs.
机译:石D Bobby Messina的组织学观察和扫描电子显微镜分析表明,与非冷冻保存的PLB相比,冷冻保存的原球茎样体(PLB)的细胞过程有所不同。细胞过程不仅因冷冻和解冻作用而改变,而且还由于冷冻过程中的脱水过程本身而改变。在石Bo鲍比墨西拿包囊-脱水法中的组织学观察表明,与未冷冻保存的PLB和原种培养的PLB相比,胞质溶解的程度导致冷冻保存的PLB发生更多的细胞变化。这些结果表明,在低温保存的PLB中,较高数量的同质细胞群体和较稠密的细胞质。组织学分析还显示,与非冷冻保存的小灵通和小灵通的原种培养相比,冷冻保存的小灵通具有更多的大核。相比之下,扫描电子显微镜分析显示,与PLB的原种培养相比,低温保存的PLB和未冷冻保存的PLB受到严重破坏,这反过来可能是封装脱水方法中没有再生长的可能原因。损坏发生在公共小巴的顶部,侧面和气孔处。石D Bobby Messina的组织学观察和扫描电子显微镜分析表明,与未冷冻保存的PLB相比,溶质程度导致低温保存的PLB的PLB细胞过程发生变化。

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