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Regenerative Effect of L-Ascorbic Acid on theIn vitro Grown Plants

机译:L-抗坏血酸对离体生长植物的再生作用

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Aim: In the present work, we have studied the effect of L ascorbic acid (LAA) on the regeneration of plants from different families cultured in vitro.Study Design: Plants belonging to three different families are cultured in Murashige and Skoog (MS) medium with and without 1μg/ml L ascorbic acid (LAA), in the absence of any other growth regulators. Thus the study brings out the effect of LAA on plant regeneration. In addition regeneration capacity of LAA involving other growth regulators was also studied.Place and Duration of Study: Department of Biotechnology, Mount Carmel College, Bangalore, India, between August 2012-August 2013.Methodology: The work was conducted on Centella asiatica, Santalum album, and Trigonella foenumgraecum. C. asiatica and T. foenumgraecum are herbaceous whereas S. album is a tropical woody plant. Stem explants of C. asiatica and S. album and the seed explants of T. foenumgraecum were used for the in vitro culture and chlorophyll content in thus obtained leaflets was measured. Further, growth related parameters such as shoot/root length, leaf areas were measured.Results: LAA aided the shoot regeneration in all the three plants cultured in vitro. In C. asiatica and T. foenumgraecum it resulted in the regeneration of plantlets with shoots and roots, however in the case of S. album only shoot regeneration occurred. Chlorophyll content was found to be higher in the in vitro plants grown in the presence of LAA. Shoot/root lengths and area of leaves were more in LAA grown plants as compared to control plants.Conclusion: In vitro culture of stem explants of C. asiatica and seed explants of T. foenumgraecum revealed that supplementing LAA aided in the whole plant regeneration, whereas in the case of S. album supplementing LAA only resulted in the shoot regeneration, but no root formation. Shoot/root lengths, area of leaves and chlorophyll content was found to be higher in the in vitro grown plants with LAA as compared to those grown without LAA, suggesting that LAA is mitigating the function of both auxin and cytokinin. Enhanced chlorophyll production in in-vitro grown plants with LAA is suggestive of involvement of LAA in chlorophyll biosynthesis/protection from degradation and hence the regeneration. Through our results, we show that using LAA in the culture medium can result in regeneration of whole plants. The effect was observed in plants belonging to different families indicating LAA could be used as a general growth enhancer and adding LAA would be beneficial in the regeneration of whole plants.
机译:目的:在本研究中,我们研究了抗坏血酸L(LAA)对体外培养的不同科植物再生的影响。研究设计:在Murashige和Skoog(MS)培养基中培养了三个不同科的植物。在没有任何其他生长调节剂的情况下,添加和不添加1μg/ ml L抗坏血酸(LAA)。因此,该研究揭示了LAA对植物再生的影响。此外,还研究了涉及其他生长调节剂的LAA的再生能力。研究地点和持续时间:2012年8月至2013年8月之间,印度班加罗尔芒特卡梅尔学院生物技术系。方法:这项工作是在桑塔卢姆的积雪草上进行的专辑和Trigonella foenumgraecum。 C. asiatica和T. foenumgraecum是草本的,而S. album是一种热带木本植物。分别用积雪草和大白菜的干外植体和红叶忍冬的种子外植体进行体外培养,并测定由此获得的小叶中的叶绿素含量。此外,还测量了与生长相关的参数,例如枝条/根长,叶面积。结果:LAA有助于体外培养的所有三种植物的枝条再生。在C. asiatica和T. foenumgraecum中,它导致了带有芽和根的小植株的再生,但是在S. album的情况下,只发生了芽的再生。发现在存在LAA的情况下生长的体外植物中叶绿素含量较高。与对照相比,LAA生长的植物的茎/根长和叶片面积更大。结论:美洲锥stem的外植体和红木种子外植体的体外培养表明,补充LAA有助于整株植物的再生,而在添加S. Album的情况下,LAA仅导致嫩芽再生,而没有根形成。发现在体外生长的具有LAA的植物的茎/根长度,叶面积和叶绿素含量比没有LAA的植物高,这表明LAA减轻了植物生长素和细胞分裂素的功能。具有LAA的离体生长植物中叶绿素产量的提高表明LAA参与叶绿素生物合成/保护免受降解,进而防止其再生。通过我们的结果,我们表明在培养基中使用LAA可以导致整个植物的再生。在属于不同科的植物中观察到了该作用,表明LAA可以用作一般的生长促进剂,并且添加LAA将有利于整个植物的再生。

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