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Phenotypic plasticity in sperm production rate: there's more to it than testis size

机译:精子产生率的表型可塑性:除了睾丸大小外,还有其他更多

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Evolutionary theory predicts that males should produce more sperm when sperm competition is high. Because sperm production rate is difficult to measure in most organisms, comparative and experimental studies have typically used testis size instead, while assuming a good correspondence between testis size and sperm production rate. Here we evaluate this common assumption using the marine flatworm Macrostomum lignano, in which we can estimate sperm production rate because the accumulation of produced sperm can be observed in vivo. In earlier studies we have shown that testis size is phenotypically plastic in M. lignano: worms can be induced to make larger testes by raising them in groups instead of pairs, and these larger testes have a higher cell proliferation activity (i.e. they are more energetically costly). Here we demonstrate that worms with such experimentally enlarged testes have a higher sperm production rate. Moreover, although testis size and sperm production rate were related linearly, worms with experimentally enlarged testes had a higher sperm production rate per unit testis size (i.e. a higher spermatogenic efficiency). We thus show that phenotypically plastic adjustment of sperm production rate includes a component that is independent of testis size. We discuss possible reasons for this novel finding, and suggest that the relationship between testis size and sperm production needs to be evaluated in other species as well.
机译:进化论预测,当精子竞争激烈时,男性应该产生更多的精子。由于大多数生物体中精子的生成率很难测量,因此比较和实验研究通常使用睾丸大小来代替,同时假设睾丸大小与精子生成率之间具有良好的对应关系。在这里,我们使用海洋扁虫Macrostomum lignano评估了这个普遍的假设,因为可以在体内观察到产生的精子的积累,因此可以估计精子的生产率。在较早的研究中,我们表明,木质部分枝杆菌的睾丸大小是表型可塑性的:可以通过成组饲养而不是成对饲养来诱导蠕虫制造更​​大的睾丸,并且这些较大的睾丸具有更高的细胞增殖活性(即,它们在能量上更活跃)。昂贵)。在这里,我们证明具有这种实验性扩大睾丸的蠕虫具有更高的精子产生率。而且,尽管睾丸的大小和精子的产生率线性相关,但是具有实验性扩大睾丸的蠕虫每单位睾丸的大小具有更高的精子产生率(即更高的生精效率)。因此,我们表明,在表型上,精子产率的塑性调节包括一个与睾丸大小无关的成分。我们讨论这个新发现的可能原因,并建议在其他物种中也需要评估睾丸大小与精子产量之间的关系。

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