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南美鸟蛛(Acanthoscurria geniculata)(蜘蛛目:原蛛亚目)附肢的形态发生

Appendage patterning in the South American bird spider Acanthoscurria geniculata (Araneae: Mygalomorphae).

作者信息

Pechmann Matthias, Prpic Nikola-Michael

机构信息

Johann-Friedrich-Blumenbach-Institut für Zoologie und Anthropologie, Abteilung Entwicklungsbiologie, GZMB Ernst-Caspari-Haus, Georg-August-Universität, Justus-von-Liebig-Weg 11, 37077, Göttingen, Germany.

出版信息

Dev Genes Evol. 2009 Apr;219(4):189-98. doi: 10.1007/s00427-009-0279-7. Epub 2009 Mar 6.

Abstract

Pattern formation by the genes dachshund (dac), Distal-less (Dll), extradenticle (exd) and homothorax (hth) in spider appendages has been studied previously only in members of the higher spiders (Araneomorphae). In order to study the diversity and conservation of pattern formation in spiders as a whole, we studied homologs of these genes in embryos of the bird spider Acanthoscurria geniculata, which belongs to the Mygalomorphae, a more primitive spider group. We show that the patterns of dac and Dll are largely conserved in all spiders studied so far. We find a duplication of hth and exd genes as previously identified in the higher spider Cupiennius salei. These data suggest that pattern formation shows little diversity in all spiders, including the duplication of hth and exd that likely occurred before the split of Mygalomorphae and Araneomorphae. We also find that the legs and pedipalps bear endites of which only the pedipalpal endite expresses Dll and is retained in the adult. Similarly, the limb buds of the posterior spinnerets express Dll and become segmented appendages in the adult, whereas the anterior spinnerets lack Dll expression and are absent in postembryonic stages. In both cases, the expression of Dll or the lack of it indicates structures which will be retained as adult traits or rudimentary structures that degenerate, respectively. The presence of embryonic rudiments of leg endites in Acanthoscurria and the leg-like pattern formation in the posterior spinnerets are interpreted as primitive traits that have been lost in the Araneomorphae.

摘要

此前仅在高等蜘蛛(蜘蛛目新蛛亚目)成员中研究过基因腊肠犬基因(dac)、远端缺失基因(Dll)、额外齿基因(exd)和同胸基因(hth)在蜘蛛附肢中的模式形成。为了研究蜘蛛整体模式形成的多样性和保守性,我们在属于更原始蜘蛛类群原蛛亚目的鸟蛛Acanthoscurria geniculata的胚胎中研究了这些基因的同源物。我们发现,到目前为止,在所有研究过的蜘蛛中,dac和Dll的模式在很大程度上是保守的。我们发现hth和exd基因存在重复,这与之前在高等蜘蛛Cupiennius salei中鉴定的情况相同。这些数据表明,在所有蜘蛛中,模式形成的多样性很小,包括hth和exd的重复,这可能发生在原蛛亚目和新蛛亚目分化之前。我们还发现,腿和触肢带有叶状突,其中只有触肢叶状突表达Dll并在成体中保留。同样,后纺器的肢芽表达Dll并在成体中变成分节的附肢,而前纺器缺乏Dll表达并在胚胎后期阶段消失。在这两种情况下,Dll的表达或缺乏分别表明将作为成体特征保留的结构或退化的原始结构。Acanthoscurria中腿叶状突胚胎原基的存在以及后纺器中类似腿的模式形成被解释为在新蛛亚目中已经丢失的原始特征。

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