Museum of Comparative Zoology, Harvard University, 26 Oxford Street, Cambridge, MA 02138, USA.
Evol Dev. 2012 Nov-Dec;14(6):522-33. doi: 10.1111/ede.12005.
The proximo-distal axis of the arthropod leg is patterned by mutually antagonistic developmental expression domains of the genes extradenticle, homothorax, dachshund, and Distal-less. In the deutocerebral appendages (the antennae) of insects and crustaceans, the expression domain of dachshund is frequently either absent or, if present, is not required to pattern medial segments. By contrast, the dachshund domain is entirely absent in the deutocerebral appendages of spiders, the chelicerae. It is unknown whether absence of dachshund expression in the spider chelicera is associated with the two-segmented morphology of this appendage, or whether all chelicerates lack the dachshund domain in their chelicerae. We investigated gene expression in the harvestman Phalangium opilio, which bears the plesiomorphic three-segmented chelicera observed in "primitive" chelicerate orders. Consistent with patterns reported in spiders, in the harvestman chelicera homothorax, extradenticle, and Distal-less have broadly overlapping developmental domains, in contrast with mutually exclusive domains in the legs and pedipalps. However, unlike in spiders, the harvestman chelicera bears a distinct expression domain of dachshund in the proximal segment, the podomere that is putatively lost in derived arachnids. These data suggest that a tripartite proximo-distal domain structure is ancestral to all arthropod appendages, including deutocerebral appendages. As a corollary, these data also provide an intriguing putative genetic mechanism for the diversity of arachnid chelicerae: loss of developmental domains along the proximo-distal axis.
节肢动物腿的近-远轴由外胚层、同源异形盒基因、dachshund 和 Distal-less 的相互拮抗的发育表达域模式化。在昆虫和甲壳类动物的后脑附肢(触角)中,dachshund 的表达域通常缺失,或者即使存在,也不需要对中节进行模式化。相比之下,dachshund 域在蜘蛛的后脑附肢(螯肢)中完全缺失。目前尚不清楚蜘蛛螯肢中 dachshund 表达的缺失是否与该附肢的两节形态有关,或者所有螯肢动物的螯肢是否都缺乏 dachshund 域。我们研究了 Phalangium opilio (一种具有“原始”螯肢动物目中观察到的三节节肢的 harvestman)中的基因表达。与蜘蛛中报道的模式一致,在 harvestman 的螯肢中,同源异形盒基因、外胚层和 Distal-less 具有广泛重叠的发育域,而在腿和触肢中则是相互排斥的域。然而,与蜘蛛不同的是,在 harvestman 的螯肢的近端节上存在一个明显的 dachshund 表达域,这个节肢被认为是在衍生的蛛形纲动物中丢失的。这些数据表明,一个三分的近-远域结构是所有节肢动物附肢的祖征,包括后脑附肢。作为推论,这些数据还为蛛形纲动物螯肢的多样性提供了一个有趣的潜在遗传机制:沿近-远轴失去发育域。