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四倍体杂交鱼中的嵌合体与串联重复和转座元件有关。

Chimeras Linked to Tandem Repeats and Transposable Elements in Tetraploid Hybrid Fish.

机构信息

State Key Laboratory of Developmental Biology of Freshwater Fish, Hunan Normal University, Changsha, 410081, Hunan, People's Republic of China.

College of Life Sciences, Hunan Normal University, Changsha, 410081, People's Republic of China.

出版信息

Mar Biotechnol (NY). 2017 Aug;19(4):401-409. doi: 10.1007/s10126-017-9764-6. Epub 2017 Jul 5.

Abstract

The formation of the allotetraploid hybrid lineage (4nAT) encompasses both distant hybridization and polyploidization processes. The allotetraploid offspring have two sets of sub-genomes inherited from both parental species, and therefore, it is important to explore its genetic structure. Herein, we construct a bacterial artificial chromosome library of allotetraploids, and then sequence and analyze the full-length sequences of 19 bacterial artificial chromosomes. Sixty-eight DNA chimeras are identified, which are divided into four models according to the distribution of the genomic DNA derived from the parents. Among the 68 genetic chimeras, 44 (64.71%) are linked to tandem repeats (TRs) and 23 (33.82%) are linked to transposable elements (TEs). The chimeras linked to TRs are related to slipped-strand mispairing and double-strand break repair while the chimeras linked to TEs benefit from the intervention of recombinases. In addition, TRs and TEs can also result in insertions/deletions of DNA segments. We conclude that DNA chimeras accompanied by TRs and TEs coordinate a balance between the sub-genomes derived from the parents. It is the first report on the relationship between formation of the DNA chimeras and TRs and TEs in the polyploid animals.

摘要

异源四倍体杂种系(4nAT)的形成包括远缘杂交和多倍化过程。异源四倍体后代从双亲物种继承了两套亚基因组,因此,探索其遗传结构非常重要。在这里,我们构建了异源四倍体的细菌人工染色体文库,然后对 19 个细菌人工染色体的全长序列进行测序和分析。鉴定出 68 个 DNA 嵌合体,根据来自亲本的基因组 DNA 的分布将其分为四个模型。在 68 个遗传嵌合体中,44 个(64.71%)与串联重复(TRs)相关,23 个(33.82%)与转座元件(TEs)相关。与 TRs 相关的嵌合体与链滑动错配和双链断裂修复有关,而与 TEs 相关的嵌合体则受益于重组酶的干预。此外,TRs 和 TEs 还会导致 DNA 片段的插入/缺失。我们得出结论,TRs 和 TEs 伴随的 DNA 嵌合体协调了来自亲本的亚基因组之间的平衡。这是关于多倍体动物中 DNA 嵌合体形成与 TRs 和 TEs 之间关系的首次报道。

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