Laboratory of Plant Cell and Molecular Biology, Department of Vegetable Crops, University of Florida, 32611-0514, Gainesville, FL, USA.
Plant Cell Rep. 1990 Dec;9(8):419-23. doi: 10.1007/BF00232263.
Efficient plant regeneration was obtained from a cryopreserved embryogenic cell suspension of sugarcane established from leaf derived callus. Pregrowing the cells for three days in MS basal medium supplemented with 0.33 M sorbitol was essential to the process. The cells were cooled at a rate of 0.5°C/min to -40°C and then stored in liquid nitrogen. Thawing was carried out rapidly in water at +40°C, and the cells were then plated without washing onto filter paper discs placed on a semi-solid regeneration medium (MS basal + 3% sucrose + 0.13 mg/1 2,4-D +0.25 mg/1 BAP + 0.25 mg/1 kinetin + 0.25 mg/1 zeatin). The filter paper discs, along with the cells, were transferred to the same, fresh medium after five hours. After 24 hours the cells were scraped off, placed on fresh semi-solid medium and incubated at 28°C in the dark for two weeks before transfer to light. A regeneration efficiency of 92% was obtained (regenerated plants, expressed as a percent of unfrozen control). Plants regenerated from cryopreserved cells, and grown to maturity in the greenhouse, were morphologically identical to regenerated control plants.
高效的植物再生是从甘蔗叶片愈伤组织诱导的冷冻保存胚性细胞悬浮系中获得的。在 MS 基本培养基中添加 0.33 M 山梨醇预培养细胞 3 天对该过程至关重要。将细胞以 0.5°C/min 的速率冷却至-40°C,然后储存在液氮中。在+40°C 的水中快速解冻,然后将细胞不经洗涤铺在放置在半固体再生培养基(MS 基本培养基+3%蔗糖+0.13mg/1 2,4-D+0.25mg/1 BAP+0.25mg/1 激动素+0.25mg/1 玉米素)的滤纸圆盘上。五小时后,滤纸圆盘和细胞一起转移到相同的新鲜培养基中。24 小时后,将细胞刮下,放在新鲜的半固体培养基上,在黑暗中 28°C 下培养两周,然后转移到光照下。获得了 92%的再生效率(以未冷冻对照的百分比表示的再生植株)。从冷冻保存的细胞再生并在温室中生长成熟的植株在形态上与再生对照植株完全相同。