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Influence of alternating temperature preculture on cryopreservation results for potato shoot tips

机译:交替温度预培养对马铃薯笋尖冷冻保存结果的影响

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摘要

Cryopreservation is the most suitable long-term storage method for genetic resources of vegetatively maintained crops like potato. In the Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) the DMSO droplet method is applied, and so far more than 1000 accessions are cryopreserved with an average regeneration rate of 58%. New experiments with four potato accessions using alternating temperatures (22/8°C dayight temperature, 8 h photoperiod, 7 d) prior to cryopreservation showed improved regeneration. The influence of this preculture on the shoot tips was studied for two wild, frost resistant species Solanum acaule and S. demissum and for two cultivated, frost sensitive potatoes S. tuberosum ‘Désirée’ and ‘King Edward’. Comparison of liquid and solid media after cryopreservation showed improved regeneration on solid media with higher regeneration percentages, less callus formation and better plantlet structure. In comparative analyses biochemical factors like soluble sugars, starch, and amino acid concentrations were measured. Shoot tips after constant and after alternating temperature preculture were analyzed. Total concentrations of soluble sugars (glucose, fructose, and sucrose) were higher for all accessions after the alternating temperature preculture, which could be the reason for improved cryopreservation results.
机译:冷冻保存是最适合长期保存植物性作物(如马铃薯)遗传资源的方法。在莱布尼兹植物遗传与作物研究所(IPK)中,使用了DMSO滴滴法,至今已冷冻保存了1000多个种质,平均再生率为58%。低温保存前使用交替温度(22/8°C昼/夜温度,8 h光周期,7 d)的四个马铃薯种质进行的新实验显示出更好的再生能力。研究了两种野生抗霜种Solanum acaule和S. demissum以及两种栽培的对霜冻敏感的马铃薯S. tuberosum'Désirée'和'King Edward'的预培养对芽尖的影响。冷冻后液体和固体培养基的比较显示,固体培养基上的再生得到改善,再生百分比更高,愈伤组织的形成更少,幼苗结构更好。在比较分析中,测量了诸如可溶性糖,淀粉和氨基酸浓度等生化因子。分析恒定温度和交替温度预培养后的枝条尖端。交替温度预培养后,所有种质的可溶性糖(葡萄糖,果糖和蔗糖)的总浓度较高,这可能是提高冷冻保存结果的原因。

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