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首页> 外文期刊>Evolutionary Ecology >Adult body size = f (initial size + growth rate × age): explaining the proximate cause of Bergman’s cline in a toad along altitudinal gradients
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Adult body size = f (initial size + growth rate × age): explaining the proximate cause of Bergman’s cline in a toad along altitudinal gradients

机译:成人的体型= f(初始体型+成长率×年龄):解释了沿高度梯度在蟾蜍中Bergman氏族的近因。

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摘要

Animals that exhibit indeterminate growth obey such a functional relationship: adult body size = f (initial size + growth rate × age). Using this framework, we investigated how and why body sizes of a toad species (Bufo andrewsi) covaried across six altitudes (760–2,100 m) in western China. Towards high altitudes, toads tended to produce large eggs, attain large sizes at metamorphism and have great average age, but grow slowly. This indicated that the former three variables contributed more to the observed altitudinal increase in body size than did the last one. The altitudinal variation in these life-history traits should be adaptive to increased climate harshness and decreased predation risks at higher altitudes. We suggest that the relative significance of responses of these size-related parameters to local environments may provide critical cues to explaining considerable variability in geographic size pattern among ectothermic vertebrates.
机译:表现出不确定的生长的动物遵循这样的功能关系:成年个体大小= f(初始大小+生长率x年龄)。使用这个框架,我们调查了中国西部六个海拔高度(760-2,100 m)的蟾蜍物种(Bufo andrewsi)的体型如何以及为何共变。在高海拔地区,蟾蜍倾向于产卵较大,变质时变大,平均年龄大,但生长缓慢。这表明,前三个变量比最后一个变量对观察到的身高增加的贡献更大。这些生活史特征的海拔高度变化应适应于气候严酷性的提高和高海拔地区捕食风险的降低。我们建议这些大小相关的参数对本地环境的响应的相对重要性可能会提供关键线索,以解释地热脊椎动物之间地理大小模式的巨大差异。

著录项

  • 来源
    《Evolutionary Ecology》 |2012年第3期|p.579-590|共12页
  • 作者

    Wenbo Liao; Xin Lu;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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