首页> 外文期刊>Acta Horticulturae >Phytosanitary status of Ficus carica collection orchards in Nikita Botanical Gardens and biotechnology of fig plants regeneration
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Phytosanitary status of Ficus carica collection orchards in Nikita Botanical Gardens and biotechnology of fig plants regeneration

机译:北崎植物园植物检疫园林植物检疫园林植物检疫植物园及无花果再生的生物技术

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摘要

The common fig, Ficus carica L., family Moraceae is a subtropical fruit tree or shrub grown for its edible fruits. The climate of the South Crimea gives possibility to cultivate different subtropical horticulture plants, such as F. carica. Monitoring offig mosaic disease in the fig collection plot (4 species, 267 cultivars and hybrid forms) of Nikita Botanical Gardens has been carried out and pbytosanitary status of fig collection was demonstrated. The ultimate aim of this study was to improve the investigated plants by using biotechnology methods. Surface-sterilized vegetative buds of 20 fig cultivars were introduced in conditions in vitro and cultivated on modified Woody Plant Medium (WPM), supplemented with ribavirin for chemotherapy. Explants wereincubated in culture tubes with 5 mL solidified medium and kept in a growth chamber at 24±1°C under 16-h photoperiod and light intensity of 37.5 umol m~(-2)s~(-1). In vitro morphogenesis via single microshoots formation from meristems and apical budswas initiated. It was demonstrated that regeneration rate of cultured explants depended on mother plant genotype. On tine initial stages of micropropagation 10-15 adventitious microshoots were directly regenerated from single explant. Method of fig in vitro micropropagation has been established.
机译:常见的图,Ficus Carica L.,家庭莫拉西是亚热带的果树或灌木,为其可食用的水果种植。南克里米亚的气候可以培养不同的亚热带园艺植物,例如Carica。正在进行Nikita植物园的图中的图中的诺贝格镶嵌疾病(4种,267种,267种品种和混合形式),并证明了图的PBETOSIONIAL状态。本研究的最终目标是通过使用生物技术方法改善调查的植物。在体外的条件下引入了20无花色栽培品种的表面灭菌营养芽,并在改良的木质植物培养基(WPM)上培养,补充有利巴韦林进行化学疗法。将植物在具有5ml固化介质的培养管中被纳米甲磺化,并在24±1℃下在16-H光周期和37.5μmM〜(-2)S〜(-1)的光强度下保持在生长室中。通过从单一的单一组织形成的体外形态发生,发起分析和顶端Budswas。据证明,培养的外植体的再生率取决于母植物基因型。在尖头的初始阶段的微扑衰减10-15个不定目的微冢从单一的外植体直接再生。已经建立了体外微驻化的方法。

著录项

  • 来源
    《Acta Horticulturae》 |2016年第1期|共7页
  • 作者单位

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

    Plant Developmental Biology Biotechnology and Biosafety Department Nikita Botanical Gardens - National Scientific Centre Nikita Yalta Russia;

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

    common fig; fig mosaic disease; symptoms; microshoot regeneration; in vitro;

    机译:常见的无花果;无花果芥末疾病;症状;微藻再生;体外;

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