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首页> 外文期刊>Ecology and Evolution >Sexual selection on bushcricket genitalia operates in a mosaic pattern
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Sexual selection on bushcricket genitalia operates in a mosaic pattern

机译:Bushcricket Genitalia上的性选择以马赛克图案运行

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In most species with internal fertilization, male genitalia evolve faster than other morphological structures. This holds true for genital titillators, which are used exclusively during mating in several bushcricket subfamilies. Several theories have been proposed for the sexual selection forces driving the evolution of internal genitalia, especially sperm competition, sexually antagonistic coevolution (SAC), and cryptic female choice (CFC). However, it is unclear whether the evolution of genitalia can be described with a single hypothesis or a combination of them. The study of species‐specific genitalia action could contribute to the controversial debate about the underlying selective evolutionary forces. We studied female mating behaviors in response to experimentally modified titillators in a phylogenetically nested set of four bushcricket species: Roeseliana roeselii, Pholidoptera littoralis littoralis, Tettigonia viridissima (of the subfamily Tettigoniinae), and Letana inflata (Phaneropterinae). Bushcricket titillators have several potential functions; they stimulate females and suppress female resistance, ensure proper ampulla or spermatophore attachment, and facilitate male fixation. In R.?roeselii, titillators stimulate females to accept copulations, supporting sexual selection by CFC. Conversely, titillator modification had no observable effect on the female's behavior in T.?viridissima. The titillators of Ph.?l.?littoralis mechanically support the mating position and the spermatophore transfer, pointing to sexual selection by SAC. Mixed support was found in L.?inflata, where manipulation resulted in increased female resistance (evidence for CFC) and mating failures by reduced spermatophore transfer success (evidence for SAC). Sexual selection is highly species‐specific with a mosaic support for either cryptic female choice or sexually antagonistic coevolution or a combination of both in the four species.
机译:在大多数具有内部施肥的物种中,雄性生殖器比其他形态结构快进化。这适用于生殖器冠状动物,其仅在几个Bushcricket Subcamilies交配期间使用。已经提出了促进内部生殖器的演变的性选择力量,特别是精子竞争,性拮抗协调(SAC)和隐秘女性选择(CFC)的若干理论。然而,目前还不清楚Genitalia的演变是否可以用单一假设或它们的组合描述。对物种特异性生殖器行动的研究可能有助于关于潜在的选择性进化力量的有争议的辩论。我们研究了女性交配行为,响应于系统化嵌套四种Bushcricket种类的实验修饰的冠状动脉:Roeseliana Roeselii,PholidopteraLittoralis Littoralis,Tettigonia Viridissima(亚家族Tettigoniinae)和Letana Inflata(Phaneropterinae)。 Bushcricket标准机有几个潜在的功能;它们刺激雌性并抑制母性抗性,确保适当的氨氮或精子率附着,并促进男性固定。在R.Osroeselii,刺激者刺激女性接受交换,支持CFC的性选择。相反,刺激剂改性对T.?Viridissima的女性行为没有可观察的影响。 pH.?L.?Litoralis的奖金机械地支持配合位置和精子转移,指向SAC的性选择。在L.?Inflata中发现了混合载体,其中操纵导致患有患者抗性增加(CFC证据)和通过减少精子转移成功(SAC的证据)和交配失败。性选择是具有高度物种特异性的,具有用于隐蔽女性选择或性拮抗的群体的马赛克支持或在四种物种中的组合。

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