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首页> 外文期刊>Genome Biology >Sequence and structure of Brassica rapa chromosome A3.
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Sequence and structure of Brassica rapa chromosome A3.

机译:甘蓝型油菜A3染色体的序列和结构。

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Background: The species Brassica rapa includes important vegetable and oil crops. It also serves as an excellent model system to study polyploidy-related genome evolution because of its paleohexaploid ancestry and its close evolutionary relationships with Arabidopsis thaliana and other Brassica species with larger genomes. Therefore, its genome sequence will be used to accelerate both basic research on genome evolution and applied research across the cultivated Brassica species. Results: We have determined and analyzed the sequence of B. rapa chromosome A3. We obtained 31.9 Mb of sequences, organized into nine contigs, which incorporated 348 overlapping BAC clones. Annotation revealed 7,058 protein-coding genes, with an average gene density of 4.6 kb per gene. Analysis of chromosome collinearity with the A. thaliana genome identified conserved synteny blocks encompassing the whole of the B. rapa chromosome A3 and sections of four A. thaliana chromosomes. The frequency of tandem duplication of genes differed between the conserved genome segments in B. rapa and A. thaliana, indicating differential rates of occurrence/retention of such duplicate copies of genes. Analysis of 'ancestral karyotype' genome building blocks enabled the development of a hypothetical model for the derivation of the B. rapa chromosome A3. Conclusions: We report the near-complete chromosome sequence from a dicotyledonous crop species. This provides an example of the complexity of genome evolution following polyploidy. The high degree of contiguity afforded by the clone-by-clone approach provides a benchmark for the performance of whole genome shotgun approaches presently being applied in B. rapa and other species with complex genomes.Digital Object Identifier http://dx.doi.org/10.1186/gb-2010-11-9-r94
机译:背景:芸苔属植物包括重要的蔬菜和油料作物。由于它具有古六倍体祖先,并且与拟南芥和其他具有较大基因组的芸苔属物种之间密切的进化关系,因此它也是研究多倍体相关基因组进化的优秀模型系统。因此,其基因组序列将被用于加速基因组进化的基础研究和整个栽培芸苔属物种的应用研究。结果:我们已经确定并分析了 B的序列。 rapa 染色体A3。我们获得了31.9 Mb的序列,分为9个重叠群,其中包含348个重叠的BAC克隆。注释揭示了7,058个蛋白质编码基因,每个基因的平均基因密度为4.6 kb。用 A分析染色体共线性。拟南芥基因组确定了保守的同构块,涵盖了整个 B。 rapa 染色体A3和四个 A的切片。拟南芥染色体。 B中保守基因组片段之间基因串联重复的频率不同。 rapa 和 A。拟南芥,表示此类重复复制基因的发生/保留率存在差异。对“祖先核型”基因组构件的分析使得能够开发出推导B的假设模型。 rapa 染色体A3。结论:我们报道了双子叶作物物种的近乎完整的染色体序列。这提供了多倍性后基因组进化的复杂性的一个例子。逐个克隆方法提供的高度连续性为目前在B中应用的全基因组shot弹枪方法的性能提供了基准。 rapa 和其他具有复杂基因组的物种。数字对象标识符http://dx.doi.org/10.1186/gb-2010-11-9-r94

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