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High frequency plant regeneration from embryogenic callus of a popular indica rice (Oryza sativa L.)

机译:流行in稻(Oryza sativa L.)胚性愈伤组织的高频植株再生

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摘要

The aim of the study is to establish a routine procedure for high frequency plant regeneration from in vitro raised embryogenic callus of abiotic salt sensitive indica rice (Oryza sativa L.) cultivar ADT 43. The effect of synthetic auxin 2,4-D on callus induction was optimized to achieve high frequency plant regeneration from fresh embryogenic callus without further subculture. Friable, nodular and creamish-white embryogenic callus cultures were raised from mature rice seeds on LS medium supplemented with 2.5 mg L−1 2,4-D and 1.0 mg L−1 thiamine-HCL. Plant regeneration was achieved by the 24 days old embryogenic callus on MS medium supplemented with 1.0 mg L−1 BAP and 1.5 mg L−1NAA. In vitro regenerated plants with multiple tillers and roots were transferred to sterile soil and maintained in the growth chamber. The regenerated plants exhibited normal growth and were phenotypically similar to plants maintained in the garden. Using the present protocol, 25–30 plantlets were regenerated from 50 individual mature seed derived callus within two to three months. This protocol has the potential for large-scale production of elite plants after genetic transformation.
机译:该研究的目的是建立一种常规程序,用于从非生物敏感性盐d稻(Oryza sativa L.)ADT 43的体外培养胚发生愈伤组织中再生高频植物。合成生长素2,4-D对愈伤组织的影响对诱导进行了优化,以实现从新鲜的胚性愈伤组织高频植物再生,而无需进一步传代培养。在添加有2.5 mg L -1 2,4-D和1.0 mg L -1 的LS培养基上,从成熟的水稻种子中培育出易碎的,结节状和乳白色胚发生愈伤组织培养物。 >盐酸硫胺素。通过在补充了1.0 mg L -1 BAP和1.5 mg L -1 NAA的MS培养基上24天大的胚性愈伤组织来实现植物再生。将具有多个分till和根的体外再生植物转移到无菌土壤中,并保持在生长室中。再生的植物表现出正常的生长,并且在表型上类似于在花园中维持的植物。使用本方案,可以在两到三个月内从50个成熟种子衍生的愈伤组织中再生出25–30株幼苗。该协议具有遗传转化后大规模生产优良植物的潜力。

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