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在系统发育背景下,将鼠形啮齿动物的附肢骨骼变异与运动模式相关联。

Relating appendicular skeletal variation of sigmodontine rodents to locomotion modes in a phylogenetic context.

作者信息

Carvalho Coutinho Ludmilla, Alves de Oliveira João

机构信息

Setor de Mastozoologia, Departamento de Vertebrados, Museu Nacional - UFRJ, Rio de Janeiro, RJ, Brazil.

出版信息

J Anat. 2017 Oct;231(4):543-567. doi: 10.1111/joa.12665. Epub 2017 Aug 4.

Abstract

Sigmodontinae rodents constitute the second-largest subfamily among mammals. Alongside the taxonomic diversity, they are also ecologically diverse, exhibiting a wide array of locomotion modes, with semifossorial, terrestrial, semiaquatic, scansorial, arboreal, and saltatorial forms. To understand the ecomorphologic aspects that allow these rodents to display such locomotion diversity, we analyzed 35 qualitative characters of the appendicular skeleton (humerus, ulna, radius, scapula, femur, tibia, ilium, ischium and pubis) in 795 specimens belonging to 64 species, 34 genera and 10 tribes, representing all locomotion modes assigned to this subfamily. We performed a statistical analysis based upon the coefficient of trait differentiation to test the congruence of character states and the different locomotion modes. We also mapped characters states in a molecular phylogeny in order to reconstruct ancestral states and to evaluate how appendicular characters evolved within main lineages of Sigmodontinae radiation under a phylogenetic framework. The statistical analyses revealed six characters related to specific locomotion modes, except terrestrial. The mapping and parsimony ancestral states reconstruction identified two characters with phylogenetical signal and eight characters that are exclusively or more frequently recorded in certain modes of locomotion, four of them also detected by the statistical analysis. Notwithstanding the documented morphological variation, few changes characterize the transition to each of the locomotion modes, at least regarding the appendicular skeleton. This finding corroborates previous results that showed that sigmodontines exhibit an all-purpose appendicular morphology that allows them to use and explore a great variety of habitats.

摘要

稻鼠亚科啮齿动物是哺乳动物中第二大亚科。除了分类学上的多样性外,它们在生态方面也具有多样性,展现出各种各样的运动模式,包括半穴居、陆生、半水生、树栖、 arboreal和跳跃式等形式。为了了解使这些啮齿动物表现出如此多样运动模式的生态形态学方面,我们分析了795个标本的附肢骨骼(肱骨、尺骨、桡骨、肩胛骨、股骨、胫骨、髂骨、坐骨和耻骨)的35个定性特征,这些标本属于64个物种、34个属和10个族,代表了该亚科所有的运动模式。我们基于性状分化系数进行了统计分析,以检验性状状态与不同运动模式之间的一致性。我们还在分子系统发育树上绘制了性状状态,以便重建祖先状态,并评估在系统发育框架下附肢特征在稻鼠亚科辐射的主要谱系中是如何进化的。统计分析揭示了六个与特定运动模式相关的特征,除了陆生模式。图谱绘制和简约祖先状态重建确定了两个具有系统发育信号的特征,以及八个在某些运动模式中专门或更频繁出现的特征,其中四个也被统计分析检测到。尽管有记录的形态变化,但至少就附肢骨骼而言,向每种运动模式的转变特征变化很少。这一发现证实了先前的结果,即稻鼠亚科表现出一种通用的附肢形态,使它们能够利用和探索多种栖息地。

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