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骨组织学为研究 Hipparionin 侏儒化的生命历史机制提供了深入的见解。

Bone histology provides insights into the life history mechanisms underlying dwarfing in hipparionins.

机构信息

Institut Català de Paleontologia Miquel Crusafont (ICP), Campus de la Universitat Autònoma de Barcelona, 08193, Bellaterra, Barcelona, Spain.

Department of Geology, Laboratory of Geology and Palaeontology, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece.

出版信息

Sci Rep. 2018 Nov 21;8(1):17203. doi: 10.1038/s41598-018-35347-x.

Abstract

Size shifts may be a by-product of alterations in life history traits driven by natural selection. Although this approach has been proposed for islands, it has not yet been explored in continental faunas. The trends towards size decrease experienced by some hipparionins constitute a good case study for the application of a life history framework to understand the size shifts on the continent. Here, we analysed bone microstructure to reconstruct the growth of some different-sized hipparionins from Greece and Spain. The two dwarfed lineages studied show different growth strategies. The Greek hipparions ceased growth early at a small size thus advancing maturity, whilst the slower-growing Spanish hipparion matured later at a small size. Based on predictive life history models, we suggest that high adult mortality was the likely selective force behind early maturity and associated size decrease in the Greek lineage. Conversely, we infer that resource limitation accompanied by high juvenile mortality triggered decrease in growth rate and a relative late maturity in the Spanish lineage. Our results provide evidence that different selective pressures can precipitate different changes in life history that lead to similar size shifts.

摘要

大小变化可能是自然选择驱动的生活史特征改变的副产品。虽然这种方法已经被提出用于岛屿,但在大陆动物群中尚未得到探索。一些 Hipparionin 经历的体型减小趋势为应用生活史框架来理解大陆上的体型变化提供了一个很好的案例研究。在这里,我们分析了骨骼微观结构,以重建来自希腊和西班牙的一些不同大小的 Hipparionin 的生长情况。研究的两个矮小谱系表现出不同的生长策略。希腊 Hipparionin 早期在较小的体型上停止生长,从而提前成熟,而生长较慢的西班牙 Hipparionin 则在较小的体型上成熟较晚。基于预测性的生活史模型,我们认为,高成年死亡率可能是希腊谱系中早期成熟和相关体型减小的选择压力。相反,我们推断资源限制伴随着高幼体死亡率导致生长速度下降和西班牙谱系中相对较晚的成熟。我们的研究结果表明,不同的选择压力可以引发不同的生活史变化,导致相似的体型变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f81/6249282/ff70022b21e3/41598_2018_35347_Fig1_HTML.jpg

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