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首页> 外文期刊>Journal of Applied Phycology >Effect of seaweed extracts and plant growth regulators on high-frequency in vitro mass propagation of Lycopersicon esculentum L (tomato) through double cotyledonary nodal explant
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Effect of seaweed extracts and plant growth regulators on high-frequency in vitro mass propagation of Lycopersicon esculentum L (tomato) through double cotyledonary nodal explant

机译:海藻提取物和植物生长调节剂对番茄通过双子叶节外植体高频体外传质的影响

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摘要

An efficient and reproducible two-step in vitro propagation system for tomato (Lycopersicon esculentum) was developed by using the combinations of seaweed biostimulant (Gracilaria edulis and Sargassum wightii) extracts and plant growth regulators (PGRs). Double cotyledonary nodal (DCN) explants of Co-3 cultivar were initially cultured on Murashige and Skoog (MS) and Gamborg's medium (B5) containing thidiazuron (TDZ) and 6-benzylaminopurine (BA); the best responding cytokinin was tested in combinations with different auxins (NAA, IAA and IBA), and seaweed extracts (G. edulis and S. wightii) of about basal MS medium +10-70% was used for shoot proliferation. The best organogenic culture response was obtained on MS medium fortified with 1.5 mg L-1 TDZ and 1.5 mg L-1 IBA. Up to 24 shoots per explants were formed at an optimal duration of exposure to 35 days. Mini shoots of about 3-4 cm were transferred to medium supplemented with MS+iP, MS+zeatin, MS+G. edulis and MS+S. wightii at different concentrations. High frequency of shoot elongation was observed in the medium supplemented with 30% G. edulis (15.2 cm), and profuse rooting was observed in the medium supplemented with 50% S. wightii of about 16.1 cm. Shoot elongation and rooting were observed in the medium supplemented with seaweed extracts. The plantlets were transferred to the plant growth chamber (70% of relative humidity and 9 light cycles) and maintained in it for a week, and then they were transferred to a greenhouse condition. The plant growth chamber to green house transferred plantlets showed an increase in the survival rate from 70 to 85%. Thus a two-step regeneration protocol was developed in this study with a combination of seaweed extracts and PGRs, which provides a basis for the production of transgenics with high frequency and survivability of tomato plants.
机译:通过使用海藻生物刺激剂(Gracilaria edulis和Sargassum wightii)提取物和植物生长调节剂(PGRs)的组合,开发了一种高效且可重现的番茄(Lycopersicon esculentum)两步体外繁殖系统。首先在Murashige和Skoog(MS)以及Gamborg's培养基(B5)上培养含有Co-3品种的双子叶节点(DCN)外植体,该培养基包含噻唑隆(TDZ)和6-苄基氨基嘌呤(BA);结合不同的生长素(NAA,IAA和IBA)测试了响应最强的细胞分裂素,并使用大约+ 10-70%的基础MS培养基的海藻提取物(可食的G. edulis和S. wightii)进行芽增殖。在以1.5 mg L -1 TDZ和1.5 mg L -1 IBA强化的MS培养基上获得最佳的器官发生培养应答。在暴露至35天的最佳持续时间内,每个外植体最多形成24个芽。将约3-4cm的小芽转移至补充有MS + iP,MS +玉米素,MS + G的培养基中。食用和MS + S。 Wightii在不同的浓度。在添加了30%的野豌豆(15.2 cm)的培养基中观察到了高的枝条伸长率,在添加了约16.1 cm的50%的W. wightii的培养基中观察到大量生根。在补充海藻提取物的培养基中观察到枝条伸长和生根。将小植株转移到植物生长室中(相对湿度为70%,光照周期为9个),并在其中保持一周,然后将它们转移到温室条件下。从植物生长室到温室转移的苗,其存活率从70%增加到85%。因此,在这项研究中开发了两步再生方案,将海藻提取物和PGR结合使用,为生产具有高频率和番茄植株存活力的转基因作物提供了基础。

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