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A draft physical map of a D-genome cotton species (Gossypium raimondii)

机译:D-基因组棉花品种(棉花raimondii)的物理图谱初稿

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Background Genetically anchored physical maps of large eukaryotic genomes have proven useful both for their intrinsic merit and as an adjunct to genome sequencing. Cultivated tetraploid cottons, Gossypium hirsutum and G. barbadense, share a common ancestor formed by a merger of the A and D genomes about 1-2 million years ago. Toward the long-term goal of characterizing the spectrum of diversity among cotton genomes, the worldwide cotton community has prioritized the D genome progenitor Gossypium raimondii for complete sequencing. Results A whole genome physical map of G. raimondii, the putative D genome ancestral species of tetraploid cottons was assembled, integrating genetically-anchored overgo hybridization probes, agarose based fingerprints and 'high information content fingerprinting' (HICF). A total of 13,662 BAC-end sequences and 2,828 DNA probes were used in genetically anchoring 1585 contigs to a cotton consensus genetic map, and 370 and 438 contigs, respectively to Arabidopsis thaliana (AT) and Vitis vinifera (VV) whole genome sequences. Conclusion Several lines of evidence suggest that the G. raimondii genome is comprised of two qualitatively different components. Much of the gene rich component is aligned to the Arabidopsis and Vitis vinifera genomes and shows promise for utilizing translational genomic approaches in understanding this important genome and its resident genes. The integrated genetic-physical map is of value both in assembling and validating a planned reference sequence.
机译:背景技术事实证明,大型真核生物基因组的遗传锚定物理图谱既有其内在价值,又可作为基因组测序的辅助手段。种植的四倍体棉花,陆地棉和巴巴德氏棉(G. barbadense)具有大约1-2百万年前由A和D基因组合并形成的共同祖先。为了实现表征棉花基因组多样性谱的长期目标,全球棉花界已将D基因组祖先雷蒙氏棉(Gossypium raimondii)放在首位,以进行完整测序。结果组装了雷蒙德酵母的全基因组物理图谱,即四倍体棉的推定D基因组祖种,整合了遗传锚定的过度杂交探针,基于琼脂糖的指纹图谱和“高信息含量指纹图谱”(HICF)。总共使用了13,662个BAC末端序列和2,828个DNA探针,分别将1585个重叠群固定在棉花共有遗传图谱上,分别将370和438个重叠群固定在拟南芥(AT)和葡萄(VV)整个基因组序列上。结论有几条证据表明,雷蒙德氏酵母基因组由两个质量上不同的成分组成。许多富含基因的成分与拟南芥和葡萄属植物的基因组对齐,并显示出利用翻译基因组学方法了解这一重要基因组及其常驻基因的希望。整合的遗传物理图谱在组装和验证计划的参考序列方面均具有价值。

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