Department of Zoology, University of Cambridge, UK.
Mol Ecol. 2010 Mar;19 Suppl 1:240-54. doi: 10.1111/j.1365-294X.2009.04475.x.
The mimetic wing patterns of Heliconius butterflies are an excellent example of both adaptive radiation and convergent evolution. Alleles at the HmYb and HmSb loci control the presence/absence of hindwing bar and hindwing margin phenotypes respectively between divergent races of Heliconius melpomene, and also between sister species. Here, we used fine-scale linkage mapping to identify and sequence a BAC tilepath across the HmYb/Sb loci. We also generated transcriptome sequence data for two wing pattern forms of H. melpomene that differed in HmYb/Sb alleles using 454 sequencing technology. Custom scripts were used to process the sequence traces and generate transcriptome assemblies. Genomic sequence for the HmYb/Sb candidate region was annotated both using the MAKER pipeline and manually using transcriptome sequence reads. In total, 28 genes were identified in the HmYb/Sb candidate region, six of which have alternative splice forms. None of these are orthologues of genes previously identified as being expressed in butterfly wing pattern development, implying previously undescribed molecular mechanisms of pattern determination on Heliconius wings. The use of next-generation sequencing has therefore facilitated DNA annotation of a poorly characterized genome, and generated hypotheses regarding the identity of wing pattern at the HmYb/Sb loci.
蝴蝶的拟态翅膀图案是适应辐射和趋同进化的极好例子。HmYb 和 HmSb 基因座的等位基因分别控制着不同的海伦娜蝴蝶属(Heliconius melpomene)种间以及姐妹种间后翅斑纹和后翅边缘表型的有无。在这里,我们使用精细连锁作图来识别和测序横跨 HmYb/Sb 基因座的 BAC 平铺路径。我们还使用 454 测序技术,为 H. melpomene 的两种具有不同 HmYb/Sb 等位基因的翅膀图案形式生成转录组序列数据。使用定制脚本处理序列轨迹并生成转录组组装。使用 MAKER 管道和转录组序列读取手动注释 HmYb/Sb 候选区域的基因组序列。在 HmYb/Sb 候选区域共鉴定出 28 个基因,其中 6 个具有可变剪接形式。这些基因都不是先前鉴定为在蝴蝶翅膀图案发育中表达的基因的同源物,这意味着海伦娜蝴蝶翅膀上的图案决定存在以前未描述的分子机制。因此,下一代测序的使用促进了对特征较差的基因组的 DNA 注释,并提出了关于 HmYb/Sb 基因座翅膀图案身份的假设。