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Higher investment in flight morphology does not trade off with fecundity estimates in a poleward range-expanding damselfly

机译:在极地范围扩大的豆娘中,对飞行形态的更高投资并不能与繁殖力估计相抵消

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1. Evolutionary increases in dispersal-related traits are frequently documented during range expansions. Investment in flight-related traits is energetically costly and a trade-off with fecundity may be expected during range expansion. 2. However, in contrast to wing-dimorphic species, this trade-off is not general in wing-monomorphic species. In the absence of a dispersal--fecundity trade-off, an increased investment in clutch size at the expansion front is expected possibly at a cost of reduced offspring size. 3. The study evaluated investment in female flight morphology and fecundity-related traits (clutch size, hatchling size) and potential trade-offs among these traits in replicated populations of the poleward range-expanding damselfly Coenagrion scitulum. 4. Females at the expansion front had a higher relative thorax length, indicating an increased investment in flight; this can be explained by spatial sorting of dispersal ability or in situ natural selection at the expansion front. Edge females produced larger hatchlings, however, this pattern was totally driven by the population-specific thermal larval regimes and could not be attributed to the range expansion per se. By contrast, clutch sizes did not differ between core and edge populations. There was no signal of a dispersal-fecundity trade-off either for a trade-off between clutch size and hatchling size. 5. These results indicate that evolution of a higher dispersal ability at the expansion front of C. scitulum does not trade off with investment in fecundity, hence a dispersal-fecundity trade-off is unlikely to slow down range expansion of this species.
机译:1.在范围扩展期间,经常会记录到与分散相关的性状的进化增加。对与飞行有关的特征的投资在能量上是昂贵的,并且在范围扩大期间可能期望与繁殖力进行权衡。 2.但是,与机翼双态物种相反,这种权衡在机翼单态物种中并不普遍。在没有分散性和功能性权衡的情况下,预计在扩张方面增加离合器尺寸的投资可能会以减小后代尺寸为代价。 3.这项研究评估了在极向范围扩大的豆娘科纳哥里安信徒复制种群中,女性对飞行形态和生殖力相关特征(离合器大小,孵化大小)的投资,以及这些特征之间的潜在权衡。 4.扩张前的雌性相对胸长较高,表明飞行投资增加;这可以通过分散能力的空间排序或扩展前沿的自然选择来解释。边缘雌性产生较大的孵化场,但是,这种模式完全是由特定种群的热幼虫机制驱动的,不能归因于其本身的范围扩展。相比之下,核心和边缘群体之间的离合器尺寸没有差异。对于离合器尺寸和孵化尺寸之间的折衷,也没有信号表明要进行分散力交换。 5.这些结果表明,在鳞茎梭菌扩展前期较高的扩散能力的演变并不能与对繁殖力的投资相抵触,因此,分散-繁殖力的平衡不太可能减慢该物种的范围扩展。

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