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首页> 外文期刊>BMC Genomics >Detection of copy number variations in rice using array-based comparative genomic hybridization
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Detection of copy number variations in rice using array-based comparative genomic hybridization

机译:使用基于阵列的比较基因组杂交技术检测水稻中的拷贝数变异

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Background Copy number variations (CNVs) can create new genes, change gene dosage, reshape gene structures, and modify elements regulating gene expression. As with all types of genetic variation, CNVs may influence phenotypic variation and gene expression. CNVs are thus considered major sources of genetic variation. Little is known, however, about their contribution to genetic variation in rice. Results To detect CNVs, we used a set of NimbleGen whole-genome comparative genomic hybridization arrays containing 718,256 oligonucleotide probes with a median probe spacing of 500 bp. We compiled a high-resolution map of CNVs in the rice genome, showing 641 CNVs between the genomes of the rice cultivars 'Nipponbare' (from O. sativa ssp. japonica) and 'Guang-lu-ai 4' (from O. sativa ssp. indica). The CNVs identified vary in size from 1.1 kb to 180.7 kb, and encompass approximately 7.6 Mb of the rice genome. The largest regions showing copy gain and loss are of 37.4 kb on chromosome 4, and 180.7 kb on chromosome 8. In addition, 85 DNA segments were identified, including some genic sequences. Contracted genes greatly outnumbered duplicated ones. Many of the contracted genes corresponded to either the same genes or genes involved in the same biological processes; this was also the case for genes involved in disease and defense. Conclusion We detected CNVs in rice by array-based comparative genomic hybridization. These CNVs contain known genes. Further discussion of CNVs is important, as they are linked to variation among rice varieties, and are likely to contribute to subspecific characteristics.
机译:背景拷贝数变异(CNV)可以创建新基因,改变基因剂量,重塑基因结构并修饰调节基因表达的元素。与所有类型的遗传变异一样,CNV可能影响表型变异和基因表达。因此,CNV被认为是遗传变异的主要来源。然而,关于它们对水稻遗传变异的贡献知之甚少。结果为了检测CNV,我们使用了一套NimbleGen全基因组比较基因组杂交阵列,该阵列包含718,256个寡核苷酸探针,探针中位间隔为500 bp。我们编辑了水稻基因组中CNV的高分辨率图,显示了水稻品种'Nipponbare'(来自O. sativa ssp。japonica)和'Guang-lu-ai 4'(来自O. sativa)的基因组之间的641 CNVs。 ssp。indica)。鉴定出的CNV大小从1.1 kb到180.7 kb不等,并涵盖大约7.6 Mb的水稻基因组。显示复制增减的最大区域是4号染色体上37.4 kb,8号染色体上180.7 kb。此外,鉴定出85个DNA片段,包括一些基因序列。收缩基因大大超过重复基因。许多收缩的基因对应于相同的基因或参与相同生物学过程的基因。涉及疾病和防御的基因也是如此。结论我们通过基于阵列的比较基因组杂交技术检测了水稻中的CNV。这些CNV包含已知基因。关于CNV的进一步讨论很重要,因为它们与水稻品种之间的变异有关,并且可能有助于亚特异特征。

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