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沙打旺悬浮培养细胞原生质体的体细胞胚胎发生再生植株(英文)
引用本文:罗建平,贾敬芬,顾月华.沙打旺悬浮培养细胞原生质体的体细胞胚胎发生再生植株(英文)[J].分子细胞生物学报,1999(4).
作者姓名:罗建平  贾敬芬  顾月华
作者单位:中国科学技术大学生命科学学院,西北大学生物系,中国科学技术大学生命科学学院 合肥 230026,西安 710069,合肥 230026
摘    要:以继代培养5—24代的沙打旺(Astra-galus adsurgens Pall.)胚性悬浮系为材料,从生长4d的细胞培养物中可游离出大量有活力的原生质体。细胞预质壁分离或低温预处理对原生质体得率和活力没有影响,但可提高原生质体培养的植板率。预处理的原生质体培养在NH_4NO_3浓度降至2.5mmol/L,并附加0.5mg/L NAA、1.0mg/L 2,4-D、0.7mg/L BA和0.4mol/L葡萄糖的KM8P培养基中,经持续分裂形成细胞克隆,植板率高达16%—20%。细胞克隆在附加1.0mg/L 2,4-D和0.5mg/L BA的MS培养基中增殖后,转至含0.1mg/L NAA和1.0mg/L BA的MS分化培养基中可形成体细胞胚,平均体细胞胚发生频率约为40%,每个克隆产生20—40个体细胞胚。在无激素的1/2MS培养基中,体细胞胚发育成形态正常和染色体数稳定的小植株。

关 键 词:沙打旺  胚性悬浮系  原生质体  细胞克隆  体细胞胚发生

REGENERATION OF ASTRAGALUS ADSURGENS VIA SOMATIC EMBRYOGENESIS FROM CELL SUSPENSION PROTOPLASTS
LUO Jian Ping JIA Jing Fen GU Yue Hua.REGENERATION OF ASTRAGALUS ADSURGENS VIA SOMATIC EMBRYOGENESIS FROM CELL SUSPENSION PROTOPLASTS[J].Journal of Molecular Cell Biology,1999(4).
Authors:LUO Jian Ping JIA Jing Fen GU Yue Hua
Abstract:Protoplasts from 4-day-old embryogenic cell suspension cultures of Astragalus adsurgens, when cultured in KM8P medium which ammonium concentration was reduced to 2. 5 mmol/L and supplemented with 0. 5 mg/L NAA, 1. 0 mg/L 2, 4-D, 0. 7 mg/L BA and 0. 4 mol/L glucose, underwent cell sustained divisions and formed cell colonies at a frequency of 16%-20%. Preplasmolysis or low temperature treatment of suspension cells prior to enzyme incubation enhanced colony formation. Following proliferation on MS medium containing 1. 0 mg/L 2, 4-D and 0. 5 mg/L BA, cell colonies were cultured on MS medium containing 0. 1 mg/L NAA and 1. 0 mg/L BA, where approximately 40% of colonies produced somatic embryos ranging in number from 20 to 40 per colony. No significant decrease was found in the potential of somatic embryogenesis when protoplast colonies were obtained from long-term cell suspensions. On hormone-free 1/2 MS medium, somatic embryos developed into intact plants, which showed normal morphology and stable chromosome number.
Keywords:Astragalus adsurgens Pall  Cellsuspension culture  Plant regeneration  Protoplast culture  Somatic embryogenesis    
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