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Sperm development, age and sex chromosome meiotic drive in the stalk-eyed fly, Cyrtodiopsis whitei

机译:茎蝇苍蝇(Cyrtodiopsis whitei)的精子发育,年龄和性别染色体减数分裂驱动

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摘要

The cytological basis of X chromosome meiotic drive or sex ratio (SR) has been reported for several species of Drosophila but not for other species. Here we describe how sperm development in the stalk-eyed fly, Cyrtodiopsis whitei, influences progeny sex proportion, in order to determine if a common developmental mechanism could cause meiotic drive in these distantly related taxa. Because age has been found to affect the degree of segregation distortion in some Drosophila, we tested flies from six to 26 weeks of age. We find that spermatocyst bundles in SR males frequently contain incompletely elongated spermatid nuclei independently of male age. Older males have, however, more spermatocyst bundles in their testes than younger males. Abnormal spermatid elongation affects male fertility since SR males produce 74% as many progeny per week as ST males. The proportion of spermatocyst bundles with improperly elongated spermatid nuclei explains 71% of the variation in progeny sex proportion. After reviewing the literature on sperm development and meiotic drive, we conclude that the cytological basis of meiotic drive in diopsids closely resembles Drosophila. Across species in both groups, the production of fertile males is associated with less than half of all spermatids not elongating normally in a spermatocyst bundle. We discuss the possibility that frequency-dependent selection on male fertility could stabilize the drive polymorphism in these unusual flies.
机译:X染色体减数分裂驱动或性别比(SR)的细胞学基础已被报道的果蝇的几个物种,但没有其他物种。在这里,我们描述了在有茎的蝇苍蝇(Cyrtodiopsis whitei)中的精子发育如何影响子代性别比例,以确定在这些遥远相关的类群中常见的发育机制是否会引起减数分裂驱动。由于已发现年龄会影响某些果蝇的分离畸变程度,因此我们测试了6至26周龄的果蝇。我们发现,在SR男性中,精囊囊经常包含与男性年龄无关的不完全伸长的精子核。但是,年龄较大的男性的睾丸中的精囊囊比年龄较小的男性更多。精子的异常伸长会影响男性的生育能力,因为SR男性每周产生的精子数量是ST男性的74%。精子囊束与不适当延长的精子核的比例解释了71%的后代性别比例变异。在回顾了关于精子发育和减数分裂驱动的文献之后,我们得出结论,双翅类的减数分裂驱动的细胞学基础与果蝇非常相似。两组中的所有物种中,可育雄性的产生与不到一半的精子囊中未正常伸长的精子有关。我们讨论了取决于频率的雄性育性选择可以稳定这些异常果蝇的驱动多态性的可能性。

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