豌豆 Ty1-copia 组逆转录转座子:转座活动和用作研究豌豆遗传多样性的标记。

S R Pearce, M Knox, T H Ellis, A J Flavell, A Kumar
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引用次数: 130

摘要

研究人员对双子叶植物(Pisum)种系中不同 Ty1-copia 组 LTR 反转座子转座历史的变异进行了调查。通过退化 PCR 分离出了 Ty1-copia 元件的异质群体,并根据其拷贝数和近缘物种间的序列保守性选择了其中的两个(Tps12 和 Tps19),以进一步深入研究它们在豆科植物物种中的转座历史。通过序列特异性扩增多态性(SSAP)研究了这些元件和先前表征的 PDR1 元件的插入多态性。在 55 个不同的双壳果属植物中,每个元件都揭示了独特的转座历史。基于 SSAP 数据的系统发生树显示,针对单个元素的 SSAP 标记能够解析双壳果属中的不同种系。最后,将所有这些逆转录转座子标记的 SSAP 数据结合起来,就能揭示裸子植物种内和种间关系的详细情况。
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Pea Ty1-copia group retrotransposons: transpositional activity and use as markers to study genetic diversity in Pisum.

The variation in transposition history of different Ty1-copia group LTR retrotransposons in the species lineages of the Pisum genus has been investigated. A heterogeneous population of Ty1-copia elements was isolated by degenerate PCR and two of these (Tps12 and Tps19) were selected on the basis of their copy number and sequence conservation between closely related species for further in-depth study of their transpositional history in Pisum species. The insertional polymorphism of these elements and the previously characterised PDR1 element was studied by sequence-specific amplification polymorphism (SSAP). Each of these elements reveals a unique transpositional history within 55 diverse Pisum accessions. Phylogenetic trees based on the SSAP data show that SSAP markers for individual elements are able to resolve different species lineages within the Pisum genus. Finally, the SSAP data from all of these retrotransposon markers were combined to reveal a detailed picture of the intra and interspecies relationships within Pisum.

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