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首页> 外文期刊>BMC Genomics >Whole genome resequencing in tomato reveals variation associated with introgression and breeding events
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Whole genome resequencing in tomato reveals variation associated with introgression and breeding events

机译:番茄全基因组重测序揭示了与基因渗入和育种事件相关的变异

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Background One of the goals of genomics is to identify the genetic loci responsible for variation in phenotypic traits. The completion of the tomato genome sequence and recent advances in DNA sequencing technology allow for in-depth characterization of genetic variation present in the tomato genome. Like many self-pollinated crops, cultivated tomato accessions show a low molecular but high phenotypic diversity. Here we describe the whole-genome resequencing of eight accessions (four cherry-type and four large fruited lines) chosen to represent a large range of intra-specific variability and the identification and annotation of novel polymorphisms. Results The eight genomes were sequenced using the GAII Illumina platform. Comparison of the sequences with the reference genome yielded more than 4 million single nucleotide polymorphisms (SNPs). This number varied from 80,000 to 1.5 million according to the accessions. Almost 128,000 InDels were detected. The distribution of SNPs and InDels across and within chromosomes was highly heterogeneous revealing introgressions from wild species and the mosaic structure of the genomes of the cherry tomato accessions. In-depth annotation of the polymorphisms identified more than 16,000 unique non-synonymous SNPs. In addition 1,686 putative copy-number variations (CNVs) were identified. Conclusions This study represents the first whole genome resequencing experiment in cultivated tomato. Substantial genetic differences exist between the sequenced tomato accessions and the reference sequence. The heterogeneous distribution of the polymorphisms may be related to introgressions that occurred during domestication or breeding. The annotated SNPs, InDels and CNVs identified in this resequencing study will serve as useful genetic tools, and as candidate polymorphisms in the search for phenotype-altering DNA variations.
机译:背景技术基因组学的目标之一是识别引起表型性状变异的遗传基因座。番茄基因组序列的完成和DNA测序技术的最新进展允许对番茄基因组中存在的遗传变异进行深入表征。像许多自花授粉作物一样,栽培番茄种质表现出低分子但高表型多样性。在这里,我们描述了八个种质(四个樱桃型和四个大果系)的全基因组重测序,这些种质被选择来代表大范围的种内变异性以及新型多态性的鉴定和注释。结果使用GAII Illumina平台对8个基因组进行了测序。序列与参考基因组的比较产生了超过400万个单核苷酸多态性(SNP)。根据登录号,这一数字从80,000到150万不等。检测到近128,000个InDel。 SNP和InDel在染色体内和染色体内的分布是高度异质的,揭示了来自野生物种的渗入和樱桃番茄种质的基因组镶嵌结构。对多态性的深入注释确定了超过16,000个独特的非同义SNP。另外,鉴定出1686个推定的拷贝数变异(CNV)。结论该研究代表了栽培番茄中的第一个全基因组重测序实验。测序的番茄部分和参考序列之间存在重大的遗传差异。多态性的异质分布可能与驯化或育种过程中发生的基因渗入有关。在这项重新测序研究中鉴定出的带注释的SNP,InDels和CNV将作为有用的遗传工具,并在寻找改变表型的DNA变异中用作候选多态性。

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