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An efficient and rapid regeneration via multiple shoot induction from mature seed derived embryogenic and organogenic callus of Indian maize (Zea mays L.)

机译:通过成熟芽衍生的印度玉米胚芽和器官发生愈伤组织的多次芽诱导有效而快速地再生。

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摘要

An efficient method for in vitro micro propagation and genetic transformation of plants are crucial for both basic and applied research. Maize is one of the most important cereal crops around the world. Regeneration from immature embryo is hampered due to its unavailability round the year. On the contrary mature embryo especially tropical maize is recalcitrant toward tissue culture. Here we report a highly efficient regeneration (90%) system for maize by using 2 different approaches i.e., embryogenic and organogenic callus cultures. Seeds were germinated on MS medium supplemented with 5 mg/l 2,4-D and 3 mg/l BAP. Nodal regions of 2 wks old seedlings were longitudinally split upon isolation and subsequently placed on callus initiation medium. The maximum frequency of embryogenic callus formation (90%) was obtained on MS medium supplemented with 2 mg/l 2,4-D and 1 mg/l BAP in the dark conditions. The compact granular organogenic callus formation (85% frequency) was obtained on MS medium supplemented with 2.5 mg/l 2,4-D and 1.5 mg/l BAP at light conditions. MS medium supplemented with 2 mg/l BAP, 1 mg/l Kinetin and 0.5 mg/l NAA promoted the highest frequency of shoot induction. The highest frequency of root formation was observed when shoots were grown on MS medium. The regenerated plants were successfully hardened in earthen pots after adequate acclimatization. The important advantage of this improved method is shortening of regeneration time by providing an efficient and rapid regeneration tool for obtaining more stable transformants from mature seeds of Indian tropical maize cultivar (HQPM-1).
机译:植物体外微繁殖和遗传转化的有效方法对于基础研究和应用研究都至关重要。玉米是世界上最重要的谷物作物之一。由于全年无法获得,未成熟胚的再生受到阻碍。相反,成熟胚尤其是热带玉米对组织培养不利。在这里我们报告了通过使用两种不同的方法,即胚发生和器官发生的愈伤组织培养物,玉米的高效再生(90%)系统。种子在补充了5 mg / l 2,4-D和3 mg / l BAP的MS培养基上发芽。分离后将2周龄老苗的节区纵向分开,然后置于愈伤组织起始培养基上。在黑暗条件下,在补充2 mg / l 2,4-D和1 mg / l BAP的MS培养基上获得了胚发生愈伤组织形成的最大频率(90%)。在补充有2.5 mg / l 2,4-D和1.5 mg / l BAP的MS培养基上,在光照条件下,获得了致密的颗粒状器官性愈伤组织形成(频率为85%)。补充2 mg / l BAP,1 mg / l Kinetin和0.5 mg / l NAA的MS培养基促进了芽诱导的最高频率。当芽在MS培养基上生长时,观察到最高的根形成频率。经过充分的驯化后,再生的植物成功地在土盆中硬化。这种改进方法的重要优点是通过提供一种高效,快速的再生工具来缩短再生时间,该工具可从印度热带玉米品种(HQPM-1)的成熟种子中获得更稳定的转化体。

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