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Genetic analysis of somaclonal variation among callus-derived plants oftomato

机译:番茄愈伤组织植物体细胞无性系变异的遗传分析

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Genetic stability in tissue-cultured tomato plants was examined by randomly amplified polymorphic DNA (RAPD) analysis. Picloram was used for the first time as alternative auxin, along with benzyladenine (BA) for callus induction in tomato, Calli were induced from leaf explants on Murashige and Skoog's (MS) medium supplemented with 8.88 muM BA and 4.13 muM picloram, Regeneration was obtained after culturing freshly-induced calli on MS medium containing 17.7 muM BA alone, Microshoots were rooted in the presence of 10 mu Mindole-butyric acid (IBA) on MS medium. DNA samples from the mother plant and 11 randomly selected regenerated plants, obtained from a single callus, were subjected to RAPD analysis for the detection of putative somaclones. Six arbitrary decamer primers produced polymorphic amplification products. In this set of experiments, fifteen non-parental bands were observed, of which three were shared and twelve unique. The estimation of genetic similarity coefficient based on RAPD band-sharing data indicated that ten regenerated plants were more than 95 % similar to the mother plant, except one, LS5, which was found to be distinctly different. This report demonstrates the feasibility of easy induction of regenerative calli by using combination of picloram and BA and the possibility of detecting genetic variation through RAPD analysis among callus-regenerated plants in tomato at an early stage of growth.
机译:通过随机扩增多态性DNA(RAPD)分析检查组织培养的番茄植物的遗传稳定性。 Picloram首次用作替代生长素,与苄基腺嘌呤(BA)一起用于诱导番茄中的愈伤组织,从Murashige和Skoog's(MS)培养基上分别添加了8.88μMBA和4.13μMpicloram的叶外植体诱导愈伤组织,获得了再生在仅含17.7μMBA的MS培养基上培养新鲜诱导的愈伤组织后,将Microshoots根植于MS培养基上存在10μm吲哚丁酸(IBA)的地方。对来自单个愈伤组织的母本植物和11种随机选择的再生植物的DNA样品进行RAPD分析,以检测推定的松果克隆。六种任意的十聚体引物产生了多态性扩增产物。在这组实验中,观察到了15条非亲子乐队,其中3条是共享的,而12条是唯一的。根据RAPD谱带共享数据估算的遗传相似性系数表明,十个再生植物与母本植物的相似度超过95%,只有一株LS5明显不同。本报告证明了通过结合使用吡咯仑和BA容易诱导再生愈伤组织的可行性,以及通过RAPD分析在番茄生长早期的愈伤组织再生植物中检测遗传变异的可能性。

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