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高羊茅与普通小麦体细胞杂种的基因分型

Genotyping of somatic hybrids between Festuca arundinacea Schreb. and Triticum aestivum L.

作者信息

Cai Yunfei, Xiang Fengning, Zhi Daying, Liu Heng, Xia Guangmin

机构信息

School of Life Sciences, Shandong University, Jinan 250100, People's Republic of China.

出版信息

Plant Cell Rep. 2007 Oct;26(10):1809-19. doi: 10.1007/s00299-007-0397-5. Epub 2007 Jun 27.

Abstract

In order to genotype hybrid genomes of distant asymmetric somatic hybrids, we synthesized hybrid calli and plants via PEG-mediated protoplast fusion between recipient tall fescue (Festuca. arundinacea Schreb.) and donor wheat (Triticum aestivum L.). Seventeen and 25 putative hybrid clones were produced from the fusion combinations I and II, each with the donor wheat protoplast treated by UV light for 30 s and 1 min, respectively. Isozyme and RAPD profiles confirmed that ten hybrid clones were obtained from combination I and 19 from combination II. Out of the 29 hybrids, 12 regenerated hybrid plants with tall fescue phenotype. Composition and methylation-variation of the nuclear and cytoplasmic genomes of some hybrids, either with or without regenerative ability, were compared by genomic in situ hybridization, restriction fragment length polymorphism, and DNA methylation-sensitive amplification polymorphism. Our results indicated that these selected hybrids all contained introgressed nuclear and cytoplasmic DNA as well as obvious methylation variations compared to both parents. However, there were no differences either in nuclear/cytoplasmic DNA or methylation degree between the regenerable and non-regenerable hybrid clones. We conclude that both regeneration complementation and genetic material balance are crucial for hybrid plant regeneration.

摘要

为了对远缘不对称体细胞杂种的杂交基因组进行基因分型,我们通过聚乙二醇(PEG)介导的受体高羊茅(Festuca. arundinacea Schreb.)与供体小麦(Triticum aestivum L.)原生质体融合,合成了杂种愈伤组织和植株。从融合组合I和II中分别产生了17个和25个推定杂种克隆,供体小麦原生质体在组合I和II中分别经紫外线处理30秒和1分钟。同工酶和随机扩增多态性DNA(RAPD)图谱证实,从组合I中获得了10个杂种克隆,从组合II中获得了19个。在这29个杂种中,12个再生出具有高羊茅表型的杂种植株。通过基因组原位杂交、限制性片段长度多态性和DNA甲基化敏感扩增多态性,比较了一些具有或不具有再生能力的杂种的核基因组和细胞质基因组的组成及甲基化变异。我们的结果表明,与双亲相比,这些选定的杂种均含有渐渗的核DNA和细胞质DNA以及明显的甲基化变异。然而,可再生和不可再生杂种克隆之间在核/细胞质DNA或甲基化程度上均无差异。我们得出结论,再生互补和遗传物质平衡对于杂种植物再生均至关重要。

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