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温度沿城市和更广泛的地理梯度对纸黄蜂 Polistes dominula 的体色产生不同影响。

Temperature differently affects body pigmentation of the paper wasp Polistes dominula along an urban and a wider geographical gradient.

机构信息

Department of Environmental Science and Policy (ESP), University of Milan, Via Celoria 26, 20133, Milan, Italy.

Department of Environmental Science and Policy (ESP), University of Milan, Via Celoria 26, 20133, Milan, Italy.

出版信息

J Therm Biol. 2024 Apr;121:103840. doi: 10.1016/j.jtherbio.2024.103840. Epub 2024 Mar 27.

Abstract

In insects, different pigments, such as melanins and pterins, are involved in thermoregulation. The degree of melanisation often varies along geographical gradients, according to the so-called thermal melanism hypothesis, i.e. darker forms are found in colder places because they can warm up more quickly. Similarly, pterins work as heat sinks and thus are expected to be more abundant in colder sites. Cities, which are warmer than surrounding areas (Urban Heat Island (UHI) effect), might also be expected to influence pigmentation, although studies are lacking. Here, we sampled workers of the social paper wasp Polistes dominula (Christ, 1791) (Vespidae) across an urbanisation gradient in an Italian metropolis and used iNaturalist pictures of this species across Italy to study pigmentation patterns at both urban and larger geographical scales. We found a lower yellow intensity of abdominal spots at warmer locations. Scanning Electron Microscopy strongly suggested that yellow colouration is due xanthopterin, known to be the heat sink molecule in other social vespids. Thus, wasps from warmer (i.e., urban) environments are likely to have fewer xanthopterin granules, in line with the lack of need for heat storage due to the local thermal gradient (UHI effect). At the country level, we found that wasps at higher latitudes had smaller yellow spots on the thorax and only two spots instead of four at higher altitudes, in full accordance with the thermal melanism hypothesis. In conclusion, climatic conditions seem to affect insect colour patterns both along urban and wider geographical gradients, although colour changes may affect different body parts and pigments likely according to different needs.

摘要

在昆虫中,不同的色素,如黑色素和蝶呤,参与体温调节。根据所谓的热黑化假说,色素沉着的程度通常会随地理梯度而变化,即较暗的形式出现在较冷的地方,因为它们可以更快地升温。同样,蝶呤作为热阱,因此预计在较冷的地方更为丰富。城市比周围地区更温暖(城市热岛 (UHI) 效应),也可能影响色素沉着,尽管缺乏研究。在这里,我们在意大利一个大都市的城市化梯度上采样了社会性纸巢黄蜂(Polistes dominula)(Vespidae)的工蜂,并使用 iNaturalist 上该物种的图片在城市和更大的地理尺度上研究色素沉着模式。我们发现,在较温暖的地方,腹部斑点的黄色强度较低。扫描电子显微镜强烈表明,黄色着色是由于蝶呤,已知在其他社会性胡蜂中是热阱分子。因此,来自较温暖(即城市)环境的黄蜂可能具有较少的蝶呤颗粒,这与由于当地热梯度(UHI 效应)而缺乏存储热量的需求一致。在国家层面上,我们发现,在较高纬度地区的黄蜂胸部的黄色斑点较小,而在较高海拔地区的只有两个斑点而不是四个斑点,这完全符合热黑化假说。总之,气候条件似乎会影响昆虫的颜色模式,无论是在城市还是更广泛的地理梯度上,尽管颜色变化可能会影响不同的身体部位和色素,这可能取决于不同的需求。

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