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首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >Global identification of transcription start sites in the genome of Apis mellifera using 5'LongSAGE.
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Global identification of transcription start sites in the genome of Apis mellifera using 5'LongSAGE.

机译:使用5'LongSAGE全局识别apis mellifera 基因组中转录起始位点。

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The precise identification of the transcription start sites (TSSs) of genes in the honeybee genome will be helpful for inferring start codons and for determining promoter elements. The 5'SAGE approach provides a powerful tool for identifying TSSs in the sequenced genome. The main purpose of this study is to identify the actual TSSs of expressed genes as well as the usage of different TSSs in the Apis mellifera genome. We performed a 5'LongSAGE (5'LS) analysis for the adult drone head, and the TSSs of the expressed genes were determined by mapping the 5'LS tag sequences to the honeybee genome. A total of 8,280 unique 19bp 5'LS tag sequences were identified that corresponded to 3,655 predicted genes. Out of these tags, 4,998 tags (60.4%) were mapped to a region from -1,000 bp to +100 bp of the start codon of 2,301 reference coding sequences. Notably, we observed that 28-47% of the 3,655 honeybee genes initiated transcription from alternative TSSs. The TSS consensus pattern of the honeybee genes, DTrichPyPu(Grich)(T/A)(Trich)3, was obtained by aligning the sequences flanking the 5'LS-TSSs. We also identified three new genes in the regions downstream of 5'LS tags and validated 21 TSSs using RT-PCR amplification. Additionally, 17 genes identified by the 5'LS tags were associated with the Gene Ontology term "behavior". Mapping of the 5'LS tags on the genome not only provided direct evidence of expression for in silico predicted genes but also allowed for the identification of previously unrecognized, novel exons and alternative TSSs.Digital Object Identifier http://dx.doi.org/10.1002/jez.b.21421
机译:蜜蜂基因组中基因转录起始位点(TSSs)的精确鉴定将有助于推断起始密码子和确定启动子元件。 5'SAGE方法为鉴定测序基因组中的TSS提供了强大的工具。这项研究的主要目的是确定表达基因的实际TSS以及 Apis mellifera 基因组中不同TSS的用途。我们对成年无人机头部进行了5'LongSAGE(5'LS)分析,并通过将5'LS标签序列映射到蜜蜂基因组来确定表达基因的TSS。鉴定出总共8,280个独特的19bp 5'LS标签序列,其对应于3,655个预测基因。在这些标签中,有4,998个标签(60.4%)被映射到2,301个参考编码序列的起始密码子的-1,000 bp至+100 bp的区域。值得注意的是,我们观察到3655个蜜蜂基因中有28-47%启动了其他TSS的转录。蜜蜂DT rich PyPu(G rich )(T / A)(T rich 3的TSS共有模式是通过比对5'LS-TSS两侧的序列而获得的。我们还鉴定了5'LS标签下游区域中的三个新基因,并使用RT-PCR扩增验证了21个TSS。另外,由5'LS标签鉴定的17个基因与基因本体学术语“行为”相关。 5'LS标签在基因组上的定位不仅提供了计算机预测基因表达的直接证据,而且还允许鉴定先前无法识别的新颖外显子和替代性TSSs.Digital Object Identifier http://dx.doi.org /10.1002/jez.b.21421

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