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蜂鸟科(Phaethornithinae)中喙大小和形状的性二型进化:生态因果关系的作用。

Evolution of sexual dimorphism in bill size and shape of hermit hummingbirds (Phaethornithinae): a role for ecological causation.

机构信息

Department of Biology, Amherst College, Amherst, MA 01002-5000, USA.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2010 Apr 12;365(1543):1053-63. doi: 10.1098/rstb.2009.0284.

Abstract

Unambiguous examples of ecological causation of sexual dimorphism are rare, and the best evidence involves sexual differences in trophic morphology. We show that moderate female-biased sexual dimorphism in bill curvature is the ancestral condition in hermit hummingbirds (Phaethornithinae), and that it is greatly amplified in species such as Glaucis hirsutus and Phaethornis guy, where bills of females are 60 per cent more curved than bills of males. In contrast, bill curvature dimorphism is lost or reduced in a lineage of short-billed hermit species and in specialist Eutoxeres sicklebill hermits. In the hermits, males tend to be larger than females in the majority of species, although size dimorphism is typically small. Consistent with earlier studies of hummingbird feeding performance, both raw regressions of traits and phylogenetic independent contrasts supported the prediction that dimorphism in bill curvature of hermits is associated with longer bills. Some evidence indicates that differences between sexes of hermit hummingbirds are associated with differences in the use of food plants. We suggest that some hermit hummingbirds provide model organisms for studies of ecological causation of sexual dimorphism because their sexual dimorphism in bill curvature provides a diagnostic clue for the food plants that need to be monitored for studies of sexual differences in resource use.

摘要

明确的生态因果关系导致性二型的例子很少见,而最好的证据涉及营养形态上的性别差异。我们表明,在蜂鸟科(Phaethornithinae)中,喙曲率的适度雌性偏态性二型是祖先的状态,而在诸如 Glaucis hirsutus 和 Phaethornis guy 等物种中,这种状态被大大放大,雌鸟的喙比雄鸟的喙弯曲 60%。相比之下,在短喙蜂鸟物种的谱系中,以及在专门的 Eutoxeres sicklebill 蜂鸟中,喙曲率的二态性消失或减弱。在这些蜂鸟中,雄性在大多数物种中比雌性大,尽管大小二态性通常很小。与 earlier 研究的蜂鸟觅食性能一致,性状的原始回归和系统发育独立对比都支持了这样的预测,即蜂鸟的喙曲率二态性与更长的喙有关。一些证据表明,蜂鸟的雌雄差异与食物植物的使用差异有关。我们认为,一些蜂鸟提供了研究生态因果关系导致性二型的模式生物,因为它们的喙曲率性二态性为需要监测的食物植物提供了一个诊断线索,以研究资源利用的性别差异。

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