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首页> 外文期刊>DNA research: an international journal for rapid publication of reports on genes and genomes >Dissection of the Octoploid Strawberry Genome by Deep Sequencing of the Genomes of Fragaria Species
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Dissection of the Octoploid Strawberry Genome by Deep Sequencing of the Genomes of Fragaria Species

机译:通过草莓属物种基因组的深度测序解剖八倍体草莓基因组。

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Cultivated strawberry (Fragaria x ananassa) is octoploid and shows allogamous behaviour. The present study aims at dissecting this octoploid genome through comparison with its wild relatives, F. iinumae, F. nipponica, F. nubicola, and F. orientalis by de novo whole-genome sequencing on an Illumina and Roche 454 platforms. The total length of the assembled Illumina genome sequences obtained was 698 Mb for F. x ananassa, and ~200 Mb each for the four wild species. Subsequently, a virtual reference genome termed FANhybrid_r1.2 was constructed by integrating the sequences of the four homoeologous subgenomes of F. x ananassa, from which heterozygous regions in the Roche 454 and Illumina genome sequences were eliminated. The total length of FANhybrid_r1.2 thus created was 173.2 Mb with the N50 length of 5137 bp. The Illumina-assembled genome sequences of F. x ananassa and the four wild species were then mapped onto the reference genome, along with the previously published F. vesca genome sequence to establish the subgenomic structure of F. x ananassa. The strategy adopted in this study has turned out to be successful in dissecting the genome of octoploid F. x ananassa and appears promising when applied to the analysis of other polyploid plant species.
机译:栽培草莓(Fragaria x ananassa)是八倍体,表现出同化行为。本研究旨在通过在Illumina和Roche 454平台上进行从头开始的全基因组测序,通过与八倍体的野生亲缘种F. iinumae,F. nipponica,F. nubicola和F. Orientalis进行比较,剖析该八倍体基因组。 F. x ananassa获得的组装好的Illumina基因组序列的总长度为698 Mb,四个野生物种的总长度分别为〜200 Mb。随后,通过整合F. x ananassa的四个同源亚基因组的序列,构建了一个虚拟参考基因组FANhybrid_r1.2,从中消除了Roche 454和Illumina基因组序列中的杂合区。这样创建的FANhybrid_r1.2的总长度为173.2 Mb,N50长度为5137 bp。然后将F. x ananassa和四个野生物种的Illumina组装基因组序列与先前发布的F. vesca基因组序列一起定位到参考基因组上,以建立F. x ananassa的亚基因组结构。这项研究中采用的策略已经证明可以成功地解剖八倍体F. x ananassa的基因组,并且在应用于其他多倍体植物种类的分析时似乎很有希望。

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