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首页> 外文期刊>Indian Journal of Horticulture >A robust micropropagation protocol for genetically true to type plants of Phule Arakta pomegranate
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A robust micropropagation protocol for genetically true to type plants of Phule Arakta pomegranate

机译:一种鲁棒的微扑相方案,用于遗传造成的植物植物植物植物(Phule Arakta)

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摘要

A rapid and reproducible micropropagation protocol for pomegranate cv. Phule Arakta has been developed using nodal segments of field grown plant. Bud break was induced in basal Woody Plant Medium (WPM) as well as compared when WPM was supplemented with plant growth regulators. Multiple shoot proliferation was induced in the nodal segments on WPM fortified with different concentration of benzyladenine (BAP) where 2mg/I BAP developed maximum number of shoots. Elongation of shoots was further amplified with the addition of adjuvant silver nitrate. Browning of culture medium was controlled by the addition of polyvinylpyrrolidone (PVP) and regular sub-culturing enhanced shoot multiplication as well as elongation. Rooting was induced in the regenerated shoots using Indole-3-butyric acid (IBA) and 3-Indoleacetic acid where best result was obtained using shock treatment with NAA. Sub-culturing resulted in denser and better rooting. The rooted plantlets were further acclimatized and then established in soil. The clonal fidelity of the in vitro grown cultures was assessed using Random Amplified Polymorphic DNA (RAPD) and Inter Simple Sequence Repeats (ISSR) markers. The 10 RAPD decamers produced 55 bands and 4 ISSR produced 19 bands in total. RAPD primers OPC-08, OPC-13 and OPD-07 produced the highest number of distinct bands and ISSR primer UBC-834 produced maximum distinct bands. All the bands were monomorphic which confirms the genetic fidelity of the in-vitro raised P. granatum cv. Phule Arakta and supported the method of mass production of true to type progenies using tissue culture.
机译:石榴CV的一种快速可再现的微迁移方案。 PhuleArakta已经使用田间种植厂的节点开发。在基础木质植物培养基(WPM)中诱导芽突破,并且当WPM补充有植物生长调节剂时相比。用不同浓度的苄基腺嘌呤(BAP)强化WPM的Nodal段中诱导多种芽扩增,其中2mg / i Bap开发出最大芽数。通过添加佐剂硝酸盐进一步扩增射击延伸。通过加入聚乙烯吡咯烷酮(PVP)和规则的亚培养增强的芽倍增以及伸长率来控制培养基的褐变。使用吲哚-3-丁酸(IBA)和3-吲哚乙酸在再生芽中诱导生根,其中使用与NAA的休克处理获得最佳结果。副培养导致更密集和更好的生根。生根的小植物进一步适应,然后在土壤中建立。使用随机扩增的多晶态DNA(RAPD)和单一简单的序列重复(ISSR)标记来评估体外生长培养物的克隆保真度。 10个RAPD Deadamers生产了55个频段,4个ISSR总共产生了19个频段。 RAPD PRIMERS OPC-08,OPC-13和OPD-07产生的不同频带数量最多,并且ISSR引物UBC-834产生的最大明显带。所有带是单体氏症,证实了体外升高的P. granatum cv的遗传保真度。 PhuleArakta并支持使用组织培养的批量生产的方法。

著录项

  • 来源
    《Indian Journal of Horticulture 》 |2019年第1期| 共9页
  • 作者单位

    Amity Univ Amity Inst Biotechnol Ctr Plant &

    Environm Biotech Appl Plant Biotechnol Res Lab Noida 201313 Uttar Pradesh India;

    Amity Univ Amity Inst Biotechnol Ctr Plant &

    Environm Biotech Appl Plant Biotechnol Res Lab Noida 201313 Uttar Pradesh India;

    Amity Univ Amity Inst Biotechnol Ctr Plant &

    Environm Biotech Appl Plant Biotechnol Res Lab Noida 201313 Uttar Pradesh India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺 ;
  • 关键词

    Punica granatum; genetic fidelity; RAPD; ISSR;

    机译:Punica Granatum;遗传保真;RAPD;ISSR;

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