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蝴蝶翅膀发育基因周围的基因组序列:注释和比较分析。

Genomic sequence around butterfly wing development genes: annotation and comparative analysis.

机构信息

Instituto Gulbenkian de Ciência, Oeiras, Portugal.

出版信息

PLoS One. 2011;6(8):e23778. doi: 10.1371/journal.pone.0023778. Epub 2011 Aug 31.

Abstract

BACKGROUND

Analysis of genomic sequence allows characterization of genome content and organization, and access beyond gene-coding regions for identification of functional elements. BAC libraries, where relatively large genomic regions are made readily available, are especially useful for species without a fully sequenced genome and can increase genomic coverage of phylogenetic and biological diversity. For example, no butterfly genome is yet available despite the unique genetic and biological properties of this group, such as diversified wing color patterns. The evolution and development of these patterns is being studied in a few target species, including Bicyclus anynana, where a whole-genome BAC library allows targeted access to large genomic regions.

METHODOLOGY/PRINCIPAL FINDINGS: We characterize ∼1.3 Mb of genomic sequence around 11 selected genes expressed in B. anynana developing wings. Extensive manual curation of in silico predictions, also making use of a large dataset of expressed genes for this species, identified repetitive elements and protein coding sequence, and highlighted an expansion of Alcohol dehydrogenase genes. Comparative analysis with orthologous regions of the lepidopteran reference genome allowed assessment of conservation of fine-scale synteny (with detection of new inversions and translocations) and of DNA sequence (with detection of high levels of conservation of non-coding regions around some, but not all, developmental genes).

CONCLUSIONS

The general properties and organization of the available B. anynana genomic sequence are similar to the lepidopteran reference, despite the more than 140 MY divergence. Our results lay the groundwork for further studies of new interesting findings in relation to both coding and non-coding sequence: 1) the Alcohol dehydrogenase expansion with higher similarity between the five tandemly-repeated B. anynana paralogs than with the corresponding B. mori orthologs, and 2) the high conservation of non-coding sequence around the genes wingless and Ecdysone receptor, both involved in multiple developmental processes including wing pattern formation.

摘要

背景

基因组序列分析可以描述基因组的内容和结构,并超越基因编码区域,识别功能元件。BAC 文库可提供相对较大的基因组区域,对于没有完整基因组序列的物种特别有用,并且可以增加系统发育和生物多样性的基因组覆盖度。例如,尽管蝴蝶具有多样化的翅膀颜色图案等独特的遗传和生物学特性,但目前还没有蝴蝶基因组。这些模式的进化和发育正在少数目标物种中进行研究,包括 Bicyclus anynana,其中全基因组 BAC 文库可靶向访问大型基因组区域。

方法/主要发现:我们对 B. anynana 发育翅膀中表达的 11 个选定基因周围约 1.3 Mb 的基因组序列进行了特征描述。通过对大量该物种表达基因数据集的深入人工分析,对预测结果进行了扩展,从而鉴定出了重复元件和蛋白质编码序列,并突出了醇脱氢酶基因的扩张。与鳞翅目参考基因组的同源区域的比较分析,评估了精细结构同线性的保守性(检测到新的倒位和易位)和 DNA 序列的保守性(检测到一些但不是所有发育基因周围非编码区域的高水平保守性)。

结论

尽管存在 140 多 MY 的分歧,但可用的 B. anynana 基因组序列的一般特性和组织与鳞翅目参考基因组相似。我们的研究结果为进一步研究与编码和非编码序列相关的新的有趣发现奠定了基础:1)醇脱氢酶的扩张,五个串联重复的 B. anynana 旁系同源物之间的相似性高于与相应的 B. mori 直系同源物之间的相似性,以及 2)wingless 和 Ecdysone receptor 基因周围非编码序列的高度保守性,这两个基因都参与了包括翅膀图案形成在内的多个发育过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a393/3166123/66a2f60e69d9/pone.0023778.g001.jpg

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