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首页> 外文期刊>Behavioral Ecology >Sperm length evolution in the fungus-growing ants.
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Sperm length evolution in the fungus-growing ants.

机译:真菌生长的蚂蚁的精子长度演变。

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Eusocial insects offer special opportunities for the comparative study of sperm traits because sperm competition is absent (in species with obligatory monandry) or constrained (in lineages where queens mate multiply but never remate later in life). We measured sperm length in 19 species of fungus-growing ants, representing 9 of the 12 recognized genera, and mapped these onto the ant phylogeny. We show that average sperm length across species is highly variable and decreases with mature colony size in basal genera with singly mated queens, suggesting that sperm production or storage constraints affect the evolution of sperm length. Sperm length does not decrease further in multiply mating leaf-cutting ants, despite substantial further increases in colony size. In a combined analysis, sexual dimorphism explained 63.1% of the variance in sperm length between species. As colony size was not a significant predictor in this analysis, we conclude that sperm production trade-offs in males have been the major selective force affecting sperm length across the fungus-growing ants, rather than storage constraints in females. The relationship between sperm length and sexual dimorphism remained robust in phylogenetically independent contrasts. Some of the remaining variation was explained by the relative size of the sperm-storage organ, but only in the multiply mating leaf-cutting ants, suggesting that sperm-storage constraints become important for the evolution of sperm length in this derived group. Mate number affected sperm length to a minor extent, and only in interaction with other predictor variables, suggesting that sperm competition has not been a major selective force for sperm length evolution in these ants.
机译:优生性昆虫为比较精子的性状提供了特殊的机会,因为精子的竞争是不存在的(在具有强制性的物种中)或受其限制(在皇后交配但以后不会交配的世系中)。我们测量了19种真菌生长蚂蚁的精子长度,代表了12种公认的属中的9种,并将它们映射到蚂蚁的系统发育上。我们显示,跨物种的平均精子长度是高度可变的,并且随着单交皇后的基属的成熟菌落的大小而减少,这表明精子的生产或贮藏限制会影响精子长度的演变。尽管菌落大小大大增加,但在多交切叶蚁中精子的长度并没有进一步减少。在综合分析中,性二态性解释了物种之间精子长度差异的63.1%。由于在此分析中菌落大小不是重要的预测指标,因此我们得出结论,雄性精子产量的权衡是影响整个真菌生长蚂蚁精子长度的主要选择力,而不是雌性中的贮藏限制。在系统发育独立的对比中,精子长度和性二态性之间的关系仍然很牢固。剩余的一些变异是由精子存储器官的相对大小解释的,但仅在多交切叶蚁中存在,这表明精子存储限制对于该衍生组中精子长度的演变很重要。交配数量对精子长度的影响很小,并且仅与其他预测变量相互作用,这表明精子竞争并不是这些蚂蚁精子长度进化的主要选择力。

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