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非珊瑚礁环境影响现存鲹科鱼类、䲟鱼及其近缘物种(鲈形目鲹亚目)的多样性。

Non-reef environments impact the diversification of extant jacks, remoras and allies (Carangoidei, Percomorpha).

作者信息

Frédérich Bruno, Marramà Giuseppe, Carnevale Giorgio, Santini Francesco

机构信息

Laboratoire de Morphologie Fonctionnelle et Evolutive, AFFISH Research Center, Université de Liège, 4000 Liège, Belgium

Laboratoire d'Océanologie, MARE Center, Université de Liège, 4000 Liège, Belgium.

出版信息

Proc Biol Sci. 2016 Nov 16;283(1842). doi: 10.1098/rspb.2016.1556.

Abstract

Various factors may impact the processes of diversification of a clade. In the marine realm, it has been shown that coral reef environments have promoted diversification in various fish groups. With the exception of requiem sharks, all the groups showing a higher level of diversity in reefs than in non-reef habitats have diets based predominantly on plankton, algae or benthic invertebrates. Here we explore the pattern of diversification of carangoid fishes, a clade that includes numerous piscivorous species (e.g. trevallies, jacks and dolphinfishes), using time-calibrated phylogenies as well as ecological and morphological data from both extant and fossil species. The study of carangoid morphospace suggests that reef environments played a role in their early radiation during the Eocene. However, contrary to the hypothesis of a reef-association-promoting effect, we show that habitat shifts to non-reef environments have increased the rates of morphological diversification (i.e. size and body shape) in extant carangoids. Piscivory did not have a major impact on the tempo of diversification of this group. Through the ecological radiation of carangoid fishes, we demonstrate that non-reef environments may sustain and promote processes of diversification of different marine fish groups, at least those including a large proportion of piscivorous species.

摘要

多种因素可能会影响一个进化枝的多样化进程。在海洋领域,研究表明珊瑚礁环境促进了各类鱼类的多样化。除真鲨外,所有在珊瑚礁中比在非珊瑚礁栖息地具有更高多样性水平的鱼类群体,其饮食主要以浮游生物、藻类或底栖无脊椎动物为基础。在此,我们利用时间校准的系统发育树以及现存和化石物种的生态与形态数据,探究鲹科鱼类(一个包含众多食鱼物种的进化枝,如鲹、鲣和鲯鳅)的多样化模式。对鲹科形态空间的研究表明,珊瑚礁环境在始新世期间对它们的早期辐射起到了作用。然而,与促进珊瑚礁关联效应的假设相反,我们发现向非珊瑚礁环境的栖息地转变增加了现存鲹科鱼类的形态多样化速率(即体型和身体形状)。食鱼习性对该类群的多样化节奏没有重大影响。通过鲹科鱼类的生态辐射,我们证明非珊瑚礁环境可能维持并促进不同海洋鱼类群体的多样化进程,至少对于那些包含很大比例食鱼物种的群体是如此。

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