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[向日葵种间杂种的基因组不稳定性]

[Genomic instability in sunflower interspecific hybrids].

作者信息

Anisimova I N, Tumanova L G, Gavrilova V A, Diagileva A V, Pasha L I, Mitin V A, Timofeeva G I

出版信息

Genetika. 2009 Aug;45(8):1067-77.

PMID:19769296
Abstract

The expression of genomic instability was studied at the phenotypical (morphological characters, electrophoretic spectra of seed storage proteins) and molecular (DNA amplification products) levels in interspecific hybrids (ISHs) from crosses of inbred lines of cultivated sunflower Helianthus annuus with perennial species of the genus Helianthus and in introgressive lines (ILs) produced on their basis. Unstable state of the locus determining the trait of lower branching was proved by the method of hybridological analysis. It was shown with the use of RAPD markers that the IL genome is characterized by instability even after long-term inbreeding (in generations F8-F12). In progenies of different combinations of interspecific crosses, identical polymorphous variants-were revealed for a seed storage protein, helianthinin, and for DNA fragments homologous to structural genes of functionally important proteins, suggesting the nonrandom character of ISH genome variation. This variation may be determined by genome reorganizations under the action of a genome shock induced by interspecific hybridization. The factors inducing reorganizations in the genome include the activity of mobile genetic elements (MGEs). Using primers specific to different MGE families, nucleotide sequences with a high level of homology to the sequences of fragments of the mobile elements MuDR, Far1, CACTA, Stowaway, and Tourist were identified in the sunflower genome. The possibility of using MGE fragments for sunflower genotyping was demonstrated.

摘要

在栽培向日葵(Helianthus annuus)自交系与向日葵属多年生物种杂交产生的种间杂种(ISHs)及其在此基础上培育的渐渗系(ILs)中,从表型(形态特征、种子贮藏蛋白的电泳图谱)和分子(DNA扩增产物)水平研究了基因组不稳定性的表达。通过杂交分析方法证明了决定低分枝性状的基因座处于不稳定状态。利用RAPD标记表明,即使经过长期自交(F8 - F12代),IL基因组仍具有不稳定性。在种间杂交的不同组合后代中,发现种子贮藏蛋白helianthinin以及与功能重要蛋白质的结构基因同源的DNA片段存在相同的多态性变体,这表明ISH基因组变异具有非随机性。这种变异可能是由种间杂交诱导的基因组冲击作用下的基因组重组所决定的。诱导基因组重组的因素包括移动遗传元件(MGEs)的活性。使用针对不同MGE家族的引物,在向日葵基因组中鉴定出与移动元件MuDR、Far1、CACTA、Stowaway和Tourist的片段序列具有高度同源性的核苷酸序列。证明了利用MGE片段进行向日葵基因分型的可能性。

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A transposon-mediate inactivation of a CYCLOIDEA-like gene originates polysymmetric and androgynous ray flowers in Helianthus annuus.转座子介导的类CYCLOIDEA基因失活导致向日葵出现多对称和雌雄同体的舌状花。
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