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首页> 外文期刊>Biology Letters >Flow cytometric sexing of spider sperm reveals an equal sperm production ratio in a female-biased species
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Flow cytometric sexing of spider sperm reveals an equal sperm production ratio in a female-biased species

机译:蜘蛛精子的流式细胞术术语显示了女性偏置物种中的相同的精子生产比例

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摘要

Producing equal amounts of male and female offspring has long been considered an evolutionarily stable strategy. Nevertheless, exceptions to this general rule (i.e. male and female biases) are documented in many taxa, making sex allocation an important domain in current evolutionary biology research. Pinpointing the underlying mechanism of sex ratio bias is challenging owing to the multitude of potential sex ratio-biasing factors. In the dwarf spider, Oedothorax gibbosus, infection with the bacterial endosymbiont Wolbachia results in a female bias. However, pedigree analysis reveals that other factors influence sex ratio variation. In this paper, we investigate whether this additional variation can be explained by the unequal production of male- and female-determining sperm cells during sperm production. Using flow cytometry, we show that males produce equal amounts of male- and female-determining sperm cells; thus bias in sperm production does not contribute to the sex ratio bias observed in this species. This demonstrates that other factors such as parental genes suppressing endosymbiont effects and cryptic female choice might play a role in sex allocation in this species.
机译:产生相同数量的男性和女性后代长期被认为是一种进化稳定的策略。然而,这个一般规则(即男性和女性偏见)的例外被记录在许多分类群中,使性别分配成为当前进化生物学研究的重要领域。由于众多的性别比例偏见因素,确定性别比例偏见的潜在机制挑战。在Dwarf蜘蛛中,欧洲皮西克斯Gibbosus,用细菌肠溶性血酮感染导致雌性偏差。然而,血统分析表明,其他因素会影响性别比变异。在本文中,我们研究了在精子生产过程中不平等的男性和女性测定精子细胞的不等产生解释是否可以解释这种额外的变化。使用流式细胞术,我们表明雄性产生相等的雄性和雌性测定的精子细胞;因此,精子生产中的偏差对该物种中观察到的性别比偏差没有贡献。这证明了抑制抑制indosymbiont效应和隐秘女性选择的父母基因等其他因素可能在这个物种中的性分配中发挥作用。

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