Deme Gideon Gywa, Liang Xixi, Okoro Joseph Onyekwere, Bhattarai Prakash, Sun Baojun, Malann Yoila David, Martin Ryan A
Key Laboratory of Animal Ecology and Conservation Biology, Institute of Zoology Chinese Academy of Sciences Beijing China.
Department of Biology Case Western Reserve University Cleveland Ohio USA.
Ecol Evol. 2023 Aug 7;13(8):e10393. doi: 10.1002/ece3.10393. eCollection 2023 Aug.
The evolution of body size within and among species is predicted to be influenced by multifarious environmental factors. However, the specific drivers of body size variation have remained difficult to understand because of the wide range of proximate factors that covary with ectotherm body sizes across populations with varying local environmental conditions. Here, we used female lizards collected from different populations across their wide range in China, and constructed linear mixed models to assess how climatic conditions and/or available resources at different altitudes shape the geographical patterns of lizard body size across altitude. Lizard populations showed significant differences in body size across altitudes. Furthermore, we found that climatic and seasonal changes along the altitudinal gradient also explained variations in body size among populations. Specifically, body size decreased with colder and drier environmental conditions at high altitudes, reversing Bergmann's rule. Limited resources at high altitudes, measured by the low vegetative index, may also constrain body size. Therefore, our study demonstrates that multifarious environmental factors could strongly influence the intraspecific variation in organisms' body size.
物种内部和物种之间体型的进化预计会受到多种环境因素的影响。然而,由于在不同局部环境条件下的种群中,与变温动物体型共同变化的近因因素范围广泛,体型变化的具体驱动因素仍难以理解。在这里,我们使用了从中国广泛分布区域的不同种群收集的雌性蜥蜴,并构建了线性混合模型,以评估不同海拔高度的气候条件和/或可用资源如何塑造蜥蜴体型随海拔的地理格局。蜥蜴种群在不同海拔高度的体型存在显著差异。此外,我们发现沿海拔梯度的气候和季节变化也解释了种群间体型的差异。具体而言,在高海拔地区,随着环境变得更寒冷和干燥,体型会减小,这与伯格曼法则相反。以低植被指数衡量的高海拔地区有限的资源,也可能限制体型。因此,我们的研究表明,多种环境因素可能会强烈影响生物体型的种内变异。