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太阳辐射和地球辐射解释了鸟类色素沉着的大陆尺度变化。

Solar and terrestrial radiations explain continental-scale variation in bird pigmentation.

作者信息

Galván Ismael, Jorge Alberto, Pacheco Carlos, Spencer Derek, Halley Duncan J, Itty Christian, Kornan Jan, Nielsen Jan T, Ollila Tuomo, Sein Gunnar, Stój Marian, Negro Juan J

机构信息

Department of Evolutionary Ecology, Doñana Biological Station, CSIC, Seville, Spain.

Laboratory of Non-Destructive Analytical Techniques, National Museum of Natural Sciences, CSIC, Madrid, Spain.

出版信息

Oecologia. 2018 Nov;188(3):683-693. doi: 10.1007/s00442-018-4238-8. Epub 2018 Aug 9.

Abstract

Animals living on the earth's surface are protected from the damaging effects of solar ultraviolet (UV) radiation by melanin pigments that color their integument. UV levels that reach the earth's surface vary spatially, but the role of UV exposure in shaping clinal variations in animal pigmentation has never been tested. Here, we show at a continental scale in Europe that golden eagles Aquila chrysaetos reared in territories with a high solar UV-B radiation exposure deposit lower amounts of the sulphurated form of melanin (pheomelanin) in feathers and consequently develop darker plumage phenotypes than eagles from territories with lower radiation exposure. This clinal variation in pigmentation is also explained by terrestrial γ radiation levels in the rearing territories by a similar effect on the pheomelanin content of feathers, unveiling natural radioactivity as a previously unsuspected factor shaping animal pigmentation. These findings show for the first time the potential of solar and terrestrial radiations to explain pigmentation phenotype diversity in animals, including humans, at large spatial scales.

摘要

生活在地球表面的动物通过其体表的黑色素免受太阳紫外线(UV)辐射的伤害。到达地球表面的紫外线水平在空间上存在差异,但紫外线暴露在塑造动物色素沉着的渐变差异中所起的作用从未得到过验证。在此,我们在欧洲大陆范围内表明,在太阳紫外线B辐射暴露量高的地区饲养的金雕(Aquila chrysaetos),其羽毛中沉积的硫化形式黑色素(褐黑素)含量较低,因此与来自辐射暴露量较低地区的金雕相比,会发育出颜色更深的羽毛表型。饲养地区的地面γ辐射水平对羽毛中褐黑素含量产生类似影响,也解释了这种色素沉着的渐变差异,揭示了自然放射性是塑造动物色素沉着的一个此前未被怀疑的因素。这些发现首次表明,太阳辐射和地面辐射在大空间尺度上具有解释包括人类在内的动物色素沉着表型多样性的潜力。

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