Department of Ecology and Evolutionary Biology, Yale University, CT 06511, New Haven, USA.
Evodevo. 2013 Feb 19;4(1):6. doi: 10.1186/2041-9139-4-6.
Little is currently known about wing pattern development in the butterfly family Pieridae, which consists mostly of black melanized elements on white or yellow/orange backgrounds. A single transcription factor, Spalt (Sal), has been previously associated with the development of some pattern elements in Pieris rapae, but it is unclear to what extent Sal is associated with patterns in other pierid species.
We use immunohistochemistry targeting Sal proteins across several pierids and show that Sal is associated with dense patches of melanization across species but is not associated with vein-melanization or diffuse melanization on the wing. In addition, Sal is expressed along cross-veins and wing compartment midlines that do not develop melanization. Male and female P. rapae spots are sexually dimorphic in size and this dimorphism is also present in the domains of Sal expression. Finally, by disrupting cells positioned in the center of the anterior black spots of P. rapae, before and during the time of Sal expression, spot size was reduced.
Our results suggest, but do not conclusively show, that pierid spots may develop in a manner similar to that of nymphalid eyespots, that is, containing a group of signaling cells at the center of the pattern responsible for the differentiation of the complete spot, and that spots and eyespots share at least one signal-response gene in common, the transcription factor Sal. We propose that focal differentiation and focal signaling mechanisms evolved prior to the split of the nymphalid and pierid lineages.
目前对于主要由白色或黄色/橙色背景上的黑色黑色素元素组成的Pieridae 蝴蝶家族的翅膀图案发育知之甚少。单一的转录因子 Spalt(Sal)以前与 Pieris rapae 的一些图案元素的发育有关,但 Sal 与其他 Pieris 物种的图案有多大程度的关联尚不清楚。
我们使用针对几种 Pieridae 的 Sal 蛋白免疫组织化学技术,表明 Sal 与物种之间的密集黑色素斑块有关,但与脉黑色素化或翅膀上的弥漫黑色素化无关。此外,Sal 沿横脉和翅膀隔室中线表达,这些中线不会发生黑色素化。雄蝶和雌蝶的 P. rapae 斑点在大小上存在性别二态性,这种二态性也存在于 Sal 表达的区域中。最后,通过在 P. rapae 前侧黑色斑点的中心位置破坏细胞,在 Sal 表达之前和期间,斑点大小减小。
我们的结果表明,但不能确定地表明,Pierid 斑点的发育方式可能类似于 Nymphalid 眼斑,即包含一组位于图案中心的信号细胞,负责完整斑点的分化,并且斑点和眼斑至少共享一个信号-反应基因,即转录因子 Sal。我们提出,焦点分化和焦点信号机制在 Nymphalid 和 Pierid 谱系分裂之前就已经进化了。