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拖鞋龙虾属(十足目:腹胚亚目:扇蟹科)内的系统发育关系、性状进化及分类学意义。

Phylogenetic relationships, character evolution, and taxonomic implications within the slipper lobsters (Crustacea: Decapoda: Scyllaridae).

机构信息

Institute of Marine Biology, National Taiwan Ocean University, Keelung 20224, Taiwan, ROC.

出版信息

Mol Phylogenet Evol. 2012 Jan;62(1):237-50. doi: 10.1016/j.ympev.2011.09.019. Epub 2011 Oct 7.

Abstract

The slipper lobsters belong to the family Scyllaridae which contains a total of 20 genera and 89 species distributed across four subfamilies (Arctidinae, Ibacinae, Scyllarinae, and Theninae). We have collected nucleotide sequence data from regions of five different genes (16S, 18S, COI, 28S, H3) to estimate phylogenetic relationships among 54 species from the Scyllaridae with a focus on the species rich subfamily Scyllarinae. We have included in our analyses at least one representative from all 20 genera in the Scyllaridae and 35 of the 52 species within the Scyllarinae. Our resulting phylogenetic estimate shows the subfamilies are monophyletic, except for Ibacinae, which has paraphyletic relationships among genera. Many of the genera within the Scyllarinae form non-monophyletic groups, while the genera from all other subfamilies form well supported clades. We discuss the implications of this history on the evolution of morphological characters and ecological transitions (nearshore vs. offshore) within the slipper lobsters. Finally, we identify, through ancestral state character reconstructions, key morphological features diagnostic of the major clades of diversity within the Scyllaridae and relate this character evolution to current taxonomy and classification.

摘要

拖鞋龙虾属于蝉虾科(Scyllaridae),该科共有 20 个属和 89 种,分布于四个亚科(Arctidinae、Ibacinae、Scyllarinae 和 Theninae)。我们从五个不同基因(16S、18S、COI、28S 和 H3)的区域收集了核苷酸序列数据,以估算蝉虾科 54 种物种之间的系统发育关系,重点是物种丰富的蝉虾亚科(Scyllarinae)。我们的分析至少包括蝉虾科的 20 个属中的一个代表,以及蝉虾亚科的 52 个物种中的 35 个。我们的系统发育估计表明,除了 Ibacinae 之外,所有亚科都是单系的,而 Ibacinae 中的属之间存在并系关系。蝉虾亚科中的许多属形成非单系群,而所有其他亚科的属形成支持良好的分支。我们讨论了这种历史对拖鞋龙虾形态特征和生态过渡(近岸与离岸)进化的影响。最后,我们通过祖先状态特征重建,确定了蝉虾科内主要多样性分支的关键形态特征,并将这种特征进化与当前的分类学和分类联系起来。

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