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Comparative analysis of animal growth: A primate continuum revealed by a new dimensionless growth rate coefficient

机译:动物生长的比较分析:新的无量纲增长率系数揭示的灵长类动物连续体

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The comparative analysis of animal growth still awaits full integration into life-history studies, partially due to the difficulty of defining a comparable measure of growth rate across species. Using growth data from 50 primate species, we introduce a modified "general growth model" and a dimensionless growth rate coefficient β that controls for size scaling and phylogenetic effects in the distribution of growth rates. Our results contradict the prevailing idea that slow growth characterizes primates as a group: the observed range of β values shows that not all primates grow slowly, with galago species exhibiting growth rates similar or above the mammalian average, while other strepsirrhines and most New World monkeys show limited reduction in growth rates. Low growth rate characterizes apes and some papionines. Phylogenetic regressions reveal associations between β and life-history variables, providing tests for theories of primate growth evolution. We also show that primate slow growth is an exclusively postnatal phenomenon. Our study exemplifies how the dimensionless approach promotes the integration of growth rate data into comparative life-history analysis, and demonstrates its potential applicability to other cases of adaptive diversification of animal growth patterns.
机译:对动物生长的比较分析仍在等待完全纳入生活史研究中,部分原因是难以定义跨物种生长率的可比度量。利用来自50个灵长类物种的生长数据,我们引入了经过修改的“一般生长模型”和无量纲的增长率系数β,该系数可控制增长率分布中的大小缩放和系统发育效应。我们的研究结果与普遍认为慢速生长是灵长类动物的普遍观点相矛盾:观察到的β值范围表明,并非所有灵长类动物都生长缓慢,加拉戈物种的生长速度与哺乳动物平均水平相似或高于哺乳动物的平均水平,而其他链球菌和大多数新大陆猴显示增长率下降有限。低生长率是猿类和某些瓜类的特征。系统发育回归揭示了β与生活史变量之间的关联,为灵长类动物生长进化的理论提供了检验。我们还表明,灵长类动物缓慢生长是排他性的出生后现象。我们的研究举例说明了无量纲方法如何促进将增长率数据整合到比较性的生活史分析中,并证明了其在其他适应性动物多样化生长方式案例中的潜在适用性。

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