...
首页> 外文期刊>Biotechnology & Biotechnological Equipment >Callus Induction and Plant Regeneration from In Vitro Cultured Leaves, Petioles and Scales of Lilium Leucanthum (Baker) Baker
【24h】

Callus Induction and Plant Regeneration from In Vitro Cultured Leaves, Petioles and Scales of Lilium Leucanthum (Baker) Baker

机译:百合的离体培养,叶片,叶柄和鳞片的愈伤组织诱导和植株再生

获取原文
           

摘要

Lilium leucanthum is a high-value ornamental and medicinal plant in China. The plant has low propagation rate in nature; therefore, identification of a suitable system for in vitro propagation is needed. The aim of current study was to identify a suitable system for optimum callus induction and plant regeneration from in vitro cultured leaves, petioles and scales of L. leucanthum. Bulblets regeneration was tested on MS medium supplemented with different concentrations of BA and NAA. The highest frequency of regeneration (96.7%) and the largest mean number of bulblets per scale (3.07) were obtained on MS medium containing 0.5 mg l ?¢????1 BA and 0.1 mg l ?¢????1 NAA. In vitro cultured scale explants showed great ability to induce callus, followed by in vitro cultured petioles and leaves. MS medium with 1.0 mg l ?¢????1 BA and 1.0 mg l ?¢????1 2,4-D was found to be optimal for callus induction from in vitro leaves and petioles with the highest induction percentages of 79.6% and 83.3%, respectively. MS medium containing 0.5 mg l ?¢????1 BA and 1.0?¢????3.0 mg l ?¢????1 2,4-D was found best for callus induction from scales with the highest percentage (98.3%). The largest number of bulblets was regenerated (23.9) from 1.0 g of fresh callus cultured on MS supplemented with 0.5 mg l ?¢????1 BA and 0.2 mg l ?¢????1 NAA. The number of roots per plant was fewer and the length of roots was greater on the rooting media with AC compared to the media without AC; half-strength MS medium with 0.05 mg l ?¢????1 NAA was more suitable for rooting. After acclimatization, transplanted plantlets grew normally under greenhouse conditions.
机译:白花百合是中国的一种高价值观赏和药用植物。该植物的自然繁殖率低。因此,需要确定合适的体外繁殖系统。当前研究的目的是从体外培养的叶,白斑狼疮的鳞片中鉴定出合适的系统,用于最佳的愈伤组织诱导和植物再生。在补充有不同浓度BA和NAA的MS培养基上测试了小球的再生。在含有0.5 mg l≥1 BA和0.1 mg l≥1 NAA的MS培养基上获得最高的再生频率(96.7%)和最大的平均鳞鳞鳞茎(3.07)。 。体外培养的鳞片外植体表现出强大的诱导愈伤组织的能力,其次是体外培养的叶柄和叶。发现具有1.0 mg l≥1 BA和1.0 mg l≥1 1,2,4-D的MS培养基最适合诱导离体叶片和叶柄的愈伤组织,诱导百分比最高。分别为79.6%和83.3%。从比例最高的鳞片中,发现含有0.5 mg l≥1 BA和1.0 mg≤3.0mg l≥11,2,4-D的MS培养基最适合于愈伤组织的诱导( 98.3%)。从1.0 g新鲜的愈伤组织中再生出最大数量的小球(23.9),该愈伤组织在补充有0.5 mg l--1 -BA和0.2 mg l--1 NAA的MS上培养。与没有AC的培养基相比,带有AC的生根培养基上每株植物的根数更少,根的长度更大;含0.05 mg l≥1 NAA的半强度MS培养基更适合生根。适应后,移植的幼苗在温室条件下正常生长。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号