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首页> 外文期刊>The Indian Journal of Agricultural Sciences >In vitro regeneration of double haploid line of African marigold (Tagetes erecta) derived from ovule culture using non-axillary explants
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In vitro regeneration of double haploid line of African marigold (Tagetes erecta) derived from ovule culture using non-axillary explants

机译:使用非腋生外植体衍生自胚珠培养的非洲万寿菊(Tagetes2)的双倍单倍体线的体外再生

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An efficient protocol has been developed for in vitro regeneration of double haploid line ofAfrican marigold variety Local Orange derived through ovule culture. Maximum survival (85%) of leaf explant was found in the treatment comprising of Bavistin (0.2%), Ridomil (0.2%) and 8-HQC (200 ppm). The surface sterilization treatment of ex plants with mercuric chloride (0.1%) for 3 minutes resulted in maximum survival (88.33%) and minimum contamination (18.33%). Three different portions of leaf explant (Tip, middle and basal) were used for regeneration. The treatment comprising MS medium supplemented with BAP (0.5 mg/l) and NAA (0.25 mg/l) resulted in maximum percent regeneration (86.25), lowest number of days taken for callus initiation (3.05), minimum number of days for shoot regeneration (13.25), maximum number of micro shoots per explant (3.50), minimum number of days to reach the stage of sub culturing (5.75) with basal portion of leaf explant. Among the different explants, basal portion of the leaf was found as the best explant for maximum regeneration. The basal portion of the leaf explant was further treated with best regeneration treatment, i. e. BAP (0.5 mg/l) and NAA (0.25 mg/l) along with different concentrations of putrescine and it was observed that maximum percent regeneration (89.83%), minimum number of days for shoot regeneration (13.50), maximum number of micro shoots per explant (6.25) and minimum number of days to reach the stage of subculturing (5.75) were found in the treatment combination of BAP (0.5 mg/l), NAA (0.25 mg/l) and Putrescine (50 mg/l).
机译:已经开发了一种高效的方案,用于通过胚珠培养衍生的非洲万寿菊多样性局部橙色双倍单倍体线的体外再生。在包含Bavistin(0.2%),ridomil(0.2%)和8-HQC(200ppm)的处理中发现了最大存活率(85%)的叶子外植体。用氯化汞(0.1%)的EX植物的表面灭菌治疗3分钟,导致最大存活率(88.33%)和最小污染(18.33%)。使用三种不同部分的叶子外植体(尖端,中间和基础)用于再生。包含含有烤盘(0.5mg / L)和NAA(0.25mg / L)的MS培养基的处理导致最大百分比再生(86.25),用于愈伤组织起始(3.05)的最低天数,拍摄再生的最小天数(13.25),每次外植体的最大微芽数(3.50),最低天数达到子培养阶段(5.75)与叶子外植体的基底部分。在不同的外植体中,叶的基部部分被发现是最大再生的最佳工具。叶片外植体的基部部分得到了最佳再生处理,I。 e。 BAP(0.5 mg / L)和NAA(0.25 mg / L)以及不同浓度的腐曲线,并且观察到最大百分比再生(89.83%),拍摄再生的最小天数(13.50),最大数量的微芽数每次外部植物(6.25)和达到传代培养的阶段(5.75)的最小天数被发现在烘烤(0.5mg / L),NAA(0.25mg / L)和Putrescine(50 mg / L)的组合中发现。

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