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蜘蛛交配栓的功能是保护精子。

A spider mating plug functions to protect sperm.

机构信息

College of Life Sciences, Capital Normal University, Beijing, P. R. China.

Lang Yue Campus of Beijing 12th High School, Beijing, P. R. China.

出版信息

PLoS One. 2024 Mar 29;19(3):e0301290. doi: 10.1371/journal.pone.0301290. eCollection 2024.

Abstract

Mating plugs in animals are ubiquitous and are commonly interpreted to be products of mating strategies. In spiders, however, mating plugs may also take on functions beyond female remating prevention. Due to the vagaries of female genital (spermathecal) anatomy, most spiders face the problem of having to secure additional, non-anatomical, protection for transferred sperm. Here, we test the hypothesis that mating plugs, rather than (or in addition to) being adaptations for mating strategies, may serve as sperm protection mechanism. Based on a comparative study on 411 epigyna sampled from 36 families, 187 genera, 330 species of entelegyne spiders, our results confirm the necessity of a sperm protection mechanism. We divided the entelegyne spermathecae into four types: SEG, SED, SCG and SCD. We also studied detailed morphology of epigynal tracts in the spider Diphya wulingensis having the SEG type spermathecae, using 3D-reconstruction based on semi thin histological series section. In this species, we hypothesize that two distinct types of mating plug, the sperm plug and the secretion plug, serve different functions. Morphological details support this: sperm plugs are formed on a modified spermathecal wall by the spilled sperm, and function as a temporary protection mechanism to prevent sperm from leaking and desiccating, while secretion plugs function in postcopulation both as a permanent protection mechanism, and to prevent additional mating. Furthermore, with the modified spermathecal wall of S2 stalk, the problem of shunt of sperm input and output, and the possibility of female multiple mating have been resolved. Variation in spermathecal morphology also suggests that the problem of sperm protection might be resolved in different ways in spiders. Considering mating plugs of varying shapes and origins in the vast morphospace of spiders, we conclude that mating plugs might serve different purposes that relate both to mating strategies, as well as to sperm protection.

摘要

动物的交配栓普遍存在,通常被解释为交配策略的产物。然而,在蜘蛛中,交配栓可能也具有防止雌性再次交配以外的功能。由于雌性生殖器(受精囊)解剖结构的复杂性,大多数蜘蛛都面临着为转移的精子提供额外的非解剖保护的问题。在这里,我们检验了一个假设,即交配栓可能不仅是交配策略的适应产物,还可能作为精子保护机制发挥作用。基于对 36 科 187 属 330 种纺丝蜘蛛的 411 个外雌器的比较研究,我们的结果证实了精子保护机制的必要性。我们将纺丝蜘蛛的受精囊分为四种类型:SEG、SED、SCG 和 SCD。我们还研究了具有 SEG 型受精囊的蜘蛛 Diphya wulingensis 的外雌器轨道的详细形态,使用基于半薄组织切片的 3D 重建。在这个物种中,我们假设两种不同类型的交配栓,即精子栓和分泌物栓,具有不同的功能。形态细节支持这一假设:精子栓是由溢出的精子在改性的受精囊壁上形成的,作为一种临时保护机制,防止精子泄漏和干燥,而分泌物栓在交尾后同时作为永久保护机制,并防止再次交配。此外,由于 S2 柄的改性受精囊壁,精子输入和输出的分流问题以及雌性多次交配的可能性已经得到解决。受精囊形态的变化也表明,在蜘蛛中,精子保护问题可能以不同的方式得到解决。考虑到蜘蛛广阔形态空间中形状和来源各异的交配栓,我们得出结论,交配栓可能具有与交配策略以及精子保护相关的不同用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddbb/10980215/3677d3eb3376/pone.0301290.g001.jpg

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