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首页> 外文期刊>ScientificWorldJournal >Vigor forIn VitroCulture Traits inS. melongena  ×  S. aethiopicumHybrids with Potential as Rootstocks for Eggplant
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Vigor forIn VitroCulture Traits inS. melongena  ×  S. aethiopicumHybrids with Potential as Rootstocks for Eggplant

机译:活力福克林培养特质。 Melongena×S.Athiopicumbybrid,潜在作为茄子的砧木

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摘要

Hybrids ofSolanum melongenaandS. aethiopicumare of interest as rootstocks of eggplant, as they are highly vigorous and can incorporate resistance to several diseases. However, hybridization between both species is difficult. Therefore, protocols forin vitroculture are of great interest for their micropropagation and biotechnological breeding. We assessed the organogenesis response from leaf explants in four interspecific hybrids and in their parents testing two organogenic media: SIM-A, containing 6-benzylaminopurine and kinetin, and SIM-B, which contains thidiazuron. A higher regeneration capacity in the hybrids compared to their parents was observed. Whereas in interspecific hybrids and in one accession ofS. melongenasimilar regeneration rates were observed for SIM-A and SIM-B, higher regeneration was found in the rest of genotypes when thidiazuron was used. Rooting ability in the interspecific hybrids was lower inin vitromicropropagated plants (35–60%) than in plants regenerated from explants (100%). The addition of indolbutiric acid (1 mg L−1) induced roots in nonrooted genotypes. In summary, we have adjustedin vitroculture conditions for regenerating and rootingS. melongena×S. aethiopicumhybrids. We have also demonstrated that these hybrids are heterotic for regeneration, which may be of interest for basic science studies.
机译:梅洛兰·梅隆纳和杂交种。作为茄子的rootrock的Aethiopicuremare,因为它们是强烈的剧烈并且可以含有对几种疾病的抵抗力。然而,两种物种之间的杂交是困难的。因此,对亚富集培养的方案对其微扫描和生物技术育种具有很大的兴趣。我们评估了四种间隙杂交体的叶子外植体的子组织反应,并在其父母中测试了两个有机晶介质:SIM-A,含有6-苄基氨基嘌呤和运动蛋白,SIM-B,其含有Thidiazuron。观察到与父母相比的杂种中更高的再生能力。而在三种杂种和一个加入中。对于SIM-A和SIM-B观察MelongenAsimilar再生率,在使用Thidiazuron时,在其余的基因型中发现了更高的再生。在三种杂种中的根生能力较低,紫磨机植物(35-60%)比从外植体(100%)再生的植物中。添加吲哚磺酸(1mg L-1)诱导非选择基因型的根。总之,我们调整了跨培养条件的再生和生根。 Melongena×s。 Aethiopicumhybrids。我们还证明了这些杂种是对再生的异质,这可能对基础科学研究感兴趣。

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