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Environmental influences on the gametic investment of yellow dung fly males

机译:环境对黄粪蝇雄性配子投资的影响

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摘要

The energetic investment per spermatozoon and in spermatogenesis is central to a male's reproductive strategy. Relatively little, however, is known about environmental influences on variation in male allocation decisions and associated trade-offs. Plasticity in sperm length and testis size in response to variable food and temperature conditions either before or after adult eclosion was investigated in Scathophaga stercoraria, a classic model organism for sperm competition. Both measures showed interesting and clear environmental effects and also a heritable component. Testis length, and thus presumably sperm production, showed a hypoallometric (b < 1), but non-linear increase with body size, indicating that the allometric relationship changed with size. Like body size, testis length decreased with increasing developmental temperatures, but also showed a complex cubic relationship with adult temperatures. In contrast, sperm length increased or showed a negative quadratic relationship with increasing temperatures. The increase of within-male variation in sperm length with increasing developmental temperature and decreasing adult food indicates that some of our treatments were stressful. Nevertheless, there was no evidence of a trade-off between testis size and sperm length. The missing effect of adult or larval food availability on testis and sperm length, despite strong effects of larval food on body size, suggests that investment into reproduction is less sensitive to food restriction than investment into growth.
机译:每个精子和精子发生的精力投入对男性的生殖策略至关重要。但是,关于环境影响对男性分配决定和相关权衡方面的变化知之甚少。在Skathophaga stercoraria(用于精子竞争的经典模型生物)中,研究了成年羽化之前或之后因食物和温度条件变化而引起的精子长度和睾丸大小的可塑性。两种措施均显示出有趣且清晰的环境影响,并且是可遗传的成分。睾丸的长度,因此推测是精子的产生,表现出低变态(b <1),但随着体型的增加而呈非线性增加,表明变体关系随体型而改变。像体型一样,睾丸的长度随着发育温度的升高而降低,但也与成年温度呈复杂的立方关系。相反,随着温度升高,精子长度增加或呈负二次关系。随着发育温度的升高和成年食物的减少,男性内部精子长度的变化增加表明我们的某些治疗方法有压力。然而,没有证据表明睾丸大小和精子长度之间存在折衷。尽管幼虫食物对体型有很强的影响,但成年或幼虫食物的可获得性对睾丸和精子长度缺乏影响,这表明对繁殖的投资对食物限制的敏感性低于对生长的投资。

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