纸蜂体型的种间差异支持伯格曼法则的反面

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
André R de Souza, Vinicius M Lopez, Alexandre Somavilla, Fábio S Nascimento, Rhainer Guillermo Ferreira, Karla Yotoko
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引用次数: 0

摘要

体型的变化是一种明显的现象,科学界一直致力于研究影响这一特征的过程。人们发现了跨地理区域的体型克隆,这支持了描述由环境变异驱动的表型差异空间模式的生态地理学规则。在社会性昆虫中,尽管种间变异更为显著,但体型变异的原因在种内水平的研究最为深入。Polistes 纸蜂就是这种情况,它是社会生物学和生态学研究的典范种属。在这里,我们研究了环境变异是否能预测新大陆 Polistes(一个广泛分布于美洲的单系支系)体型的种间差异。我们测量了37个物种的雌性和28个物种的雄性的干燥博物馆标本。在系统发育控制分析中,体型与纬度、环境温度和环境季节性有关。在低纬度、气候温暖或季节性温和的环境中,更有可能出现体型较大的物种。没有证据表明体型存在系统发育信号。这些发现支持一种与伯格曼法则相反的模式,从而表明在季节性强(或纬度较高)的环境中,由于觅食和生长的时间有限,因此选择了体型较小的物种以加快发育和成熟。如果是这样的话,这里所报道的体型进化的不稳定性可能会促进该属的地理分布和物种多样化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interspecific variation in paper wasp body size supports the converse Bergmann’s rule
Variation in body size is a conspicuous phenomenon and much scientific interest has been devoted to study the processes affecting this trait. Clines of body size across geographical areas have been detected, supporting ecogeographical rules that describe spatial patterns of phenotypic differences driven by environmental variation. In social insects, the causes of body size variation have been best studied at the within-species level, even though interspecific variation is far more striking. This is the case of Polistes paper wasps, a model genus for sociobiological and ecological studies. Here, we examined whether environmental variation predicts interspecific differences in the body size of New World Polistes, a monophyletic clade widespread through the Americas. Dried museum specimens comprising females from 37 species and males from 28 species were measured. In a phylogenetically controlled analysis, body size was associated with latitude, environmental temperature, and environmental seasonality. Larger species were more likely at low latitudes, in warmer climates, or in environments with mild seasonality. There was no evidence for a phylogenetic signal in body size. These findings support a pattern consistent with the converse Bergmann’s rule, thus suggesting that the limited time for foraging and growth in environments with strong seasonality (or higher latitudes) selects for faster development and maturation at smaller sizes. If so, the evolutionary lability of body size reported here might have contributed to the geographical spread and species diversification in this genus.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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