生长培养基成分对离体冷藏条件下菊花 × morifolium Ramat.外植体活力和遗传稳定性的影响

N. N. Ivanova, V. A. Tsiupka, N. V. Korzina
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摘要

在低温条件下栽培植物对于离体保存珍贵的菊花品种很有前景。本研究的目的是考察在离体基因库条件下,氯化氯胆碱浓度对菊花植株(Excel、Sheer Purple 和 William Seward 品种)的存活率、生理和形态解剖参数的影响,以及低温贮藏 12 个月后的遗传稳定性。将离体显微芽尖(不含叶片)置于添加了 60.0 克/升蔗糖和 0.2-0.8 克/升氯化胆碱的 1/4 Murashige 和 Skoog 培养基上。外植体储存在温度为 4 °C 的冷却室中。保存 12 个月后,观察到随着培养基中氯代胆碱浓度的增加,生长动力学有所下降。氯化胆碱浓度越高,外植体的存活率从 96% 降至 91%。在冷藏条件下,光系统 II 的有效光化学量子产率比对照组下降了两倍多。在基因库中冷藏的离体外植体的叶片上发现了几个组织学特征:叶片厚度和叶片中叶密度下降、栅栏组织退化和高度蒸腾调节。SSR 和 ISSR 分析表明,受检菊花品种的小枝在离体冷藏后与原植株完全相同。研究表明,在培养基中加入 0.6-0.8 克/升氯化胆碱可降低外植体的生长动力学,同时保持其较高的存活率和遗传稳定性。
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Effect of growth medium composition on the viability and genetic stability of Chrysanthemum × morifolium Ramat. explants under in vitro cold storage conditions
Cultivation of plants at low positive temperatures is promising for the in vitro preservation of valuable Chrysanthemum × morifolium Ramat. varieties. The study aims to examine the effect of chlorocholine chloride concentrations in a specialized medium on the viability and the physiological and morpho-anatomical parameters of chrysanthemum plants (Excel, Sheer Purple, and William Seward varieties), as well as their genetic stability after 12 months of cold storage under in vitro gene bank conditions. In vitro microshoot tips (without leaves) were placed on a 1/4 Murashige and Skoog medium supplemented with 60.0 g/L sucrose and 0.2–0.8 g/L chlorocholine chloride. The explants were stored in cooling chambers at a temperature of 4 °C. After 12 months of preservation, a reduction was observed in growth kinetics with increasing concentration of chlorocholine chloride in the medium. The viability of explants decreased from 96 to 91% at higher concentrations of chlorocholine chloride. The effective photochemical quantum yield of photosystem II decreased more than twice under cold storage conditions as compared to the control. Several histological features were identified in the leaves of in vitro explants cold-stored in the gene bank: decreased in leaf thickness and mesophyll density in leaf blades, degradation of palisade tissue, and a high degree of transpiration regulation. The SSR and ISSR analyses were used to show that the microshoots of the examined chrysanthemum varieties were identical to the original plants following in vitro cold storage. The conducted studies revealed that the presence of 0.6–0.8 g/L chlorocholine chloride in the medium reduces the growth kinetics of explants while maintaining their high viability and genetic stability.
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