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Tarsal organ morphology and the phylogeny of goblin spiders (Araneae, Oonopidae), with notes on basal genera

机译:s器官形态和哥布林蜘蛛(Araneae,Oonopidae)的系统发育,并在基属上有注释

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摘要

Based on a survey of a wide variety of oonopid genera and outgroups, we hypothesize newsynapomorphies uniting the Oonopidae (minus the South African genus Calculus Purcell, which is transferred to the Orsolobidae). The groundplan of the tarsal organ in Oonopidae is hypothesized to be an exposed organ with a distinctive, longitudinal ridge originating from the proximal end of the organ, and a serially dimorphic pattern of 4-4-3-3 raised receptors on legs I–IV, respectively. Such organs typify the diverse, basal, and ancient genus Orchestina Simon. Several other genera whose members resemble Orchestina in retaining two plesiomorphic features (an H-shaped,transverse eye arrangement and a heavily sclerotized, thick-walled sperm duct within the malepalp) are united by having tarsal organs that are partly (in the case of Cortestina Knoflach) or fully capsulate (in the case of Sulsula Simon, Xiombarg Brignoli, and Unicorn Platnick and Brescovit).The remaining oonopids are united by the loss of the heavily sclerotized palpal sperm duct, presumably reflecting a significant transformation in palpal mechanics. Within that large assemblage,a 4-4-3-3 tarsal organ receptor pattern and an H-shaped eye arrangement seem to be retained only in the New Zealand genus Kapitia Forster; the remaining genera are apparently united by a reduction in the tarsal organ pattern to 3-3-2-2 raised receptors on legs I–IV and by the acquisition of a clumped eye arrangement. Three subfamilies of oonopids are recognized: OrchestininaeChamberlin and Ivie (containing only Orchestina; Ferchestina Saaristo and Marusik is placed as a junior synonym of Orchestina), Sulsulinae, new subfamily (containing Sulsula, Xiombarg, Unicorn,and Cortestina), and Oonopinae Simon (containing all the remaining genera, including those previously placed in the Gamasomorphinae). The type species of Sulsula and Kapitia, S. pauper (O. P.-Cambridge) and K. obscura Forster, are redescribed, and the female of S. pauper is described for the first time. A new sulsuline genus, Dalmasula, is established for Sulsula parvimana Simon and four new species from Namibia and South Africa.
机译:基于对各种各样的卵翅类属和外群的调查,我们假设了将卵科(减去南非属微积分Purcell转移到Orsolobidae)的新闻科亚型。 O科的器官的平面图被假定为是一个暴露的器官,其器官的近端端部有明显的纵向脊,并且在I–IV腿上出现了一系列4-4-3-3凸起受体的双态模式, 分别。这样的器官代表着Orchestina Simon西伯利亚古生物的多样性,基础性。其他几个属类似于Orchestina的属,其​​保留了两个假性特征(H型,横眼排列和雄性手掌内严重硬化的厚壁精子管),其骨器官部分地结合在一起(在Cortestina的情况下) Knoflach)或完全包囊(在Sulsula Simon,Xionbarg Brignoli和Unicorn Platnick和Brescovit的情况下),其余的卵突则通过严重硬化的palp精子管的丢失而结合在一起,大概反映了palp力学上的重大转变。在这么大的组合中,似乎只有新西兰属卡皮蒂亚·福斯特(Kapitia Forster)保留了4-4-3-3 tar架受体模式和H形眼睛排列。其余的属显然是通过将I器官的样式减少到腿I–IV上3-3-2-2升高的受体并获得丛状的眼部排列而结合在一起的。识别了三个无翅类亚科:OrchestininaeChamberlin和Ivie(仅包含Orchestina; Ferchestina Saaristo和Marusik作为Orchestina的初级同义词),Sulsulinae,新的亚科(包含Sulsula,Xionbarg,Unicorn和Cortestina)和Oonopinae Simon(包含所有剩余的属,包括以前放置在Gamasomorphinae中的属)。重新描述了Sulsula和Kapitia,S。pauper(O. P.-Cambridge)和K. obscura Forster的类型物种,并且首次描述了S. pauper的雌性。建立了一种新的甜菜碱属Dalmasula,用于Sulsula parvimana Simon和来自纳米比亚和南非的四个新种。

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