Poy Dante, Ramírez Martín J, Michalik Peter, Piacentini Luis N
Division of Arachnology, Museo Argentino de Ciencias Naturales-CONICET, Buenos Aires, Argentina.
Zoologisches Institut und Museum, Universität Greifswald, Germany.
J Morphol. 2020 Feb;281(2):250-257. doi: 10.1002/jmor.21095. Epub 2019 Dec 30.
Genital traits are among the fastest to evolve, and the processes that drive their evolution are intensively studied. Spiders are characterized by complex genitalia, but the functional role of the different structures during genital coupling is largely unknown. Members of one of the largest spider groups, the retrolateral tibial apophysis (RTA) clade, are characterized by a RTA on the male palp, which is thought to play a crucial role during genital coupling. However, the RTA was lost in several families including the species-rich wolf spiders (Lycosidae) leading to the hypothesis that the genital coupling is achieved by alternative mechanisms. Here, we investigate the genital interactions during copulation in the wolf spider Agalenocosa pirity (Zoicinae) on cryofixed mating pairs using electron, optical and X-ray microscopy and compare our findings with other lycosids and entelegyne spiders. We found an unprecedented coupling mechanism for lycosid spiders involving the palea and a membranous cuticle folding adjacent to the epigynal plate. Additionally, we show an uncommon coupling between the median apophysis and the contralateral genital opening, and confirmed that the terminal apophysis acts as functional conductor, as previously hypothesized for males of Zoicinae. Phylogenetic mapping of RTA indicated that the basal tibial process found in Agalenocosa is a secondary acquisition rather than a modified RTA.
生殖器特征是进化最快的特征之一,驱动其进化的过程也得到了深入研究。蜘蛛的特点是生殖器复杂,但不同结构在生殖器交配过程中的功能作用在很大程度上尚不清楚。最大的蜘蛛类群之一——后侧胫突(RTA)分支的成员,其雄性触肢上有一个RTA,人们认为它在生殖器交配过程中起着关键作用。然而,包括物种丰富的狼蛛(狼蛛科)在内的几个科中,RTA已经消失,这导致了一种假说,即生殖器交配是通过其他机制实现的。在这里,我们使用电子显微镜、光学显微镜和X射线显微镜,对冷冻固定的交配配对中的狼蛛Agalenocosa pirity(Zoicinae)交配过程中的生殖器相互作用进行了研究,并将我们的发现与其他狼蛛科和长腹蛛进行了比较。我们发现了一种前所未有的狼蛛科蜘蛛交配机制,涉及叶状突和与外雌器板相邻的膜质角质层折叠。此外,我们还展示了中突与对侧生殖器开口之间罕见的交配情况,并证实了端突起到了功能导体的作用,正如之前对Zoicinae雄性的假设。RTA的系统发育图谱表明,在Agalenocosa中发现的基部胫突过程是二次获得,而不是经过修饰的RTA。