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兔形目(灵长目:兔猴下目)中狐猴科-鼬狐猴科系统发育中的腭形进化。

The evolution of palate shape in the Lepilemur-Cheirogaleidae clade (Primates: Strepsirrhini).

机构信息

Centre for African Conservation Ecology, Department of Zoology, Nelson Mandela University, Port Elizabeth, South Africa.

African Primate Initiative for Ecology and Speciation (APIES), Earth Stewardship Science Research Institute, Nelson Mandela University, Port Elizabeth, South Africa.

出版信息

Am J Phys Anthropol. 2020 Oct;173(2):307-321. doi: 10.1002/ajpa.24093. Epub 2020 Jul 14.

Abstract

OBJECTIVES

Phylogenies consistently group the folivorous Lepilemur species with the small-bodied insectivorous-frugivorous cheirogaleids. Juvenile lepilemurs and adult cheirogaleids share allometries in most aspects of skull morphology, except the palate. We investigated potential influences on palate shape in these taxa and several outgroups using geometric morphometrics.

MATERIALS AND METHODS

Our sample included representatives of four extant strepsirrhine families, Cheirogaleidae (including Lepilemurinae), Lemuridae, Indriidae, and Galagidae, and one subfossil Megaladapis. Our dataset comprised 32 landmarks collected from 397 specimens representing 15 genera and 28 species, and was analyzed using generalized procrustes analyses and between group principal component analysis. We explored the influence of size, phylogeny, diet, and the propagation of loud vocalizations on palate shape.

RESULTS

While congeneric species clustered within the morphospace, the phylomorphospace did not mirror molecular phylogenetic hypotheses of higher-order relationships. Four palate forms were distinguished within the Cheirogaleidae. Diet, strongly linked to body size, had the single greatest influence on palate shape. The production of long-distance advertisement calls was most often associated with positive scores on the PC1 axis.

DISCUSSION

Our results suggest that the extensive variation in palate shape among Cheirogaleidae is related to dietary shifts that accompanied changes in body size during the clade's radiation. Molecular phylogenies indicate that cheirogaleid diversification involved repeated dwarfing events, which in turn drove dietary shifts from ancestral folivory-frugivory to frugivory, gummivory, and faunivory in the descendant species. The elongated Lepilemur palate is probably related to accelerated eruption of the cheek teeth to render juveniles competent to shear leaves upon weaning.

摘要

目的

系统发育始终将食叶的狐猴物种与体型较小的食虫-食果的指猴科联系在一起。幼年狐猴和成年指猴在颅骨形态的大多数方面都具有同功性,除了腭部。我们使用几何形态测量法研究了这些类群和几个外群的腭部形状的潜在影响因素。

材料和方法

我们的样本包括四个现存的食虫目家族的代表,即指猴科(包括狐猴亚科)、狐猴科、Indriidae 和 Galagidae,以及一个亚化石 Megaladapis。我们的数据集包括 32 个标志,来自 397 个标本,代表 15 个属和 28 个种,并使用广义 Procrustes 分析和组间主成分分析进行了分析。我们探讨了大小、系统发育、饮食和大声发声的传播对腭部形状的影响。

结果

虽然同属物种在形态空间中聚类,但系统发生形态空间并不能反映高级阶元关系的分子系统发育假说。在指猴科中区分了四种腭型。饮食与体型强烈相关,对腭部形状的影响最大。长距离广告叫声的产生通常与 PC1 轴上的正得分相关。

讨论

我们的结果表明,指猴科中广泛的腭部形状变异与体型变化有关,这种变化伴随着该科辐射过程中体型的变化。分子系统发育表明,指猴科的多样化涉及到反复的矮化事件,这反过来又导致了食性的转变,从祖先的食叶-食果转变为后代物种的食果、食胶和食虫。拉长的狐猴腭部可能与颊齿的加速萌出有关,以使幼崽在断奶后能够剪切树叶。

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