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首页> 外文期刊>Plant Biotechnology >Characterization of hybrid seedlings from crosses of Nicotiana stocktonii Brandegee×N. tabacum L. and N. stocktonii×progenitors of N. tabacum
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Characterization of hybrid seedlings from crosses of Nicotiana stocktonii Brandegee×N. tabacum L. and N. stocktonii×progenitors of N. tabacum

机译:烟草(Nicotiana stocktonii Brandegee)×N的杂交后代的特性烟草和斯托克猪笼草×烟草的祖细胞

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Hybrid lethality is one of the sexual barriers preventing wide hybridization. In the genus Nicotiana , hybrid lethality is observed in some interspecific cross combinations. Interspesific hybridization of Nicotiana stocktonii × N. tabacum has not been carried out from the viewpoint of expression of lethality. N. tabacum has an S subgenome derived from N. sylvestris and a T subgenome derived from N. tomentosiformis . In this study, hybrid seedlings from the cross N. stocktonii × N. tabacum , were obtained by ovule culture. The hybrid seedlings were classified as normal seedlings, tumorous types and vitrified plants, and they did not express lethality. Hybrid seedlings from the cross N. stocktonii × N. sylvestris expressed lethality. Moreover, hybrid seedlings from N. stocktonii × N. tomentosiformis also expressed lethality. This suggests that both the S genome of N. sylvestris and the T genome of N. tomentosiformis have factors causing lethality in hybrids with N. stocktonii . However, hybrid seedlings from N. stocktonii × N. tabacum did not express lethal symptoms in this study. We suggested that the factors responsible for lethality in N. tabacum must have been lost or no longer expressed during the process of speciation, probably due to reorganization and modification of the genomes.
机译:杂交致死性是阻止广泛杂交的性障碍之一。在烟草属中,在某些种间杂交组合中观察到了杂交杀伤力。从致死性的表达的角度来看,尚未进行烟草烟草×烟草的种间杂交。烟草中有一个来自樟子松的S亚基因组和一个来自绒毛烟草的T亚基因组。在这项研究中,通过胚珠培养获得了来自交叉猪笼草×烟草的杂种幼苗。杂种幼苗被分类为正常幼苗,肿瘤类型和玻璃化植物,它们不表现出致死性。杂种N. stocktonii×s。sylvestris的杂种幼苗表现出致死性。此外,来自猪通花猪笼草×绒毛猪笼草的杂交幼苗也表现出致死性。这表明,樟子松猪笼草的S基因组和绒毛猪笼草的T基因组均具有导致与斯托克猪笼草杂交的致死性的因素。然而,在本研究中,来自猪笼草×烟草的杂种幼苗没有表现出致命的症状。我们建议,在烟草形成过程中,导致烟草中致死性的因素必须丢失或不再表达,这可能是由于基因组的重组和修饰。

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