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Does the mechanism of sex determination constrain the potential for sex manipulation? A test in geckos with contrasting sex-determining systems

机译:性别决定机制是否会限制性操作的可能性?对比性别决定系统的壁虎测试

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The concentration of yolk steroids was suggested to influence offspring gender in oviparous animals subject to both temperature-dependent sex determination (TSD) and genotypic sex determination (GSD). However, the proposed mechanisms of steroid effects are thought to differ between TSD and GSD: a direct effect of oestrogens on gonad feminisation in TSD species vs a differential induction of male-producing or female-producing gametes in GSD species. Geckos offer an ideal opportunity for testing these suggested mechanisms. Closely related gecko species differ in their modes of sex determination. They lay clutches of two synchronously formed eggs; both eggs share equal steroid levels. If identical hormonal composition and environment during vitellogenesis, gravidity and incubation determine the sex of the progeny, siblings should share the same gender in both TSD and GSD geckos. We found strong support for this prediction in a TSD gecko species. Among clutches that were incubated at the temperature that produced both sexes, there were no clutches with siblings of the opposite sex. On the other hand, about half of the clutches yielded siblings of the opposite sex in four GSD species. These results suggest that sex-determining systems constrain the ability of the female to produce single-sex siblings and, hence, it seems that the GSD mechanism constrains the opportunities for sex ratio manipulation in geckos via yolk steroid manipulation.
机译:卵黄类固醇的浓度建议影响受温度依赖性性别决定(TSD)和基因型性别决定(GSD)的卵生动物的后代性别。然而,认为类固醇作用的拟议机制在TSD和GSD之间是不同的:雌激素对TSD物种中性腺女性化的直接作用与GSD物种中雄性或雌性配子的差异诱导。壁虎提供了测试这些建议机制的理想机会。密切相关的壁虎物种的性别决定方式不同。他们产下两个同步形成的卵。这两个鸡蛋共享相同的类固醇水平。如果在卵黄发生,妊娠和孵化过程中相同的荷尔蒙组成和环境决定了子代的性别,则在TSD和GSD壁虎中,兄弟姐妹应具有相同的性别。我们在TSD壁虎物种中发现了对此预测的有力支持。在产生两种性别的温度下孵育的离合器中,没有与异性兄弟姐妹接触的离合器。另一方面,在四个GSD物种中,约有一半的离合器产生了异性的兄弟姐妹。这些结果表明,性别决定系统限制了女性产生单性同胞的能力,因此,似乎GSD机制限制了通过蛋黄类固醇操纵对壁虎中性别比率进行操纵的机会。

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