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Distinctive convergence in Australian floral colours seen through the eyes of Australian birds

机译:通过澳大利亚鸟类的眼睛看到的澳大利亚花色的独特融合

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摘要

We used a colour-space model of avian vision to assess whether a distinctive bird pollination syndrome exists for floral colour among Australian angiosperms. We also used a novel phylogenetically based method to assess whether such a syndrome represents a significant degree of convergent evolution. About half of the 80 species in our sample that attract nectarivorous birds had floral colours in a small, isolated region of colour space characterized by an emphasis on long-wavelength reflection. The distinctiveness of this ‘red arm’ region was much greater when colours were modelled for violet-sensitive (VS) avian vision than for the ultraviolet-sensitive visual system. Honeyeaters (Meliphagidae) are the dominant avian nectarivores in Australia and have VS vision. Ancestral state reconstructions suggest that 31 lineages evolved into the red arm region, whereas simulations indicate that an average of five or six lineages and a maximum of 22 are likely to have entered in the absence of selection. Thus, significant evolutionary convergence on a distinctive floral colour syndrome for bird pollination has occurred in Australia, although only a subset of bird-pollinated taxa belongs to this syndrome. The visual system of honeyeaters has been the apparent driver of this convergence.
机译:我们使用了鸟类视觉的色彩空间模型来评估澳大利亚被子植物中是否存在独特的鸟类授粉综合症,以获取花朵的颜色。我们还使用了一种新的基于系统发育的方法来评估这种综合症是否代表了显着程度的收敛进化。在我们样本中的80种吸引肉食性鸟类的物种中,约有一半在一个很小的,孤立的色彩空间区域中具有花朵色,其特征是强调长波反射。当为紫光敏感(VS)鸟类视觉建模颜色时,“红臂”区域的独特性要比对紫外线敏感的视觉系统大得多。食蜜者(Meliphagidae)是澳大利亚主要的鸟类油桃,具有VS视觉。宗族重建表明,有31个谱系进化到了红臂区,而模拟表明,在没有选择的情况下,平均可能会进入5或6个谱系,最多22个谱系。因此,尽管鸟类的授粉类群只有一小部分属于该综合症,但在针对鸟类授粉的独特花色综合症上发生了重要的进化融合。食蜜者的视觉系统显然是这种融合的驱动力。

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