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基于核蛋白编码基因推断对虾类(十足目:对虾总科)的系统发育

Phylogeny of penaeoid shrimps (Decapoda: Penaeoidea) inferred from nuclear protein-coding genes.

作者信息

Ma K Y, Chan T-Y, Chu K H

机构信息

Simon F.S. Li Marine Science Laboratory, Department of Biology, The Chinese University of Hong Kong, Shatin, Hong Kong.

出版信息

Mol Phylogenet Evol. 2009 Oct;53(1):45-55. doi: 10.1016/j.ympev.2009.05.019. Epub 2009 May 27.

Abstract

Penaeoidea is a diverse group of economically important marine shrimps. Attention to the evolutionary history of the penaeoids has been raised since studies using mitochondrial DNA markers and sperm ultrastructure contradict classification of the penaeoid families based on morphology and hence challenge the long standing taxonomy of this superfamily. In this study, DNA sequences of two nuclear protein-coding genes, phosphoenolpyruvate carboxykinase and sodium-potassium ATPase alpha-subunit, were determined from 37 penaeoid genera to reconstruct the evolutionary relationships and to estimate divergence ages of the penaeoid shrimps. Phylogenetic analyses using maximum likelihood and Bayesian approaches strongly support the monophyly of Solenoceridae, Aristeidae and Benthesicymidae, but find Sicyoniidae nested within Penaeidae, making this family paraphyletic. Penaeoidea comprises two lineages: the former three families in one while the latter two in another. The diversification of these lineages may be related to bathymetry. The penaeid-like lineage diversified in the Triassic, earlier than the aristeid-like lineage with an origin in the Jurassic. Taxonomic revisions within Penaeoidea are also proposed for further investigation. Due to the paraphyly of Penaeidae and the high genetic divergence among the three penaeid tribes of Burkenroad [Burkenroad, M.D., 1983. Natural classification of Dendrobranchiata, with a key to recent genera. In: Schram, F.R. (Ed.), Crustacean Issues I. Crustacean Phylogeny. A.A. Balkema, Rotterdam, pp. 279-290], these tribes should be treated as having the same taxonomic rank as Sicyoniidae, while the family ranking of Benthesicymidae has to be re-considered owing to the low genetic divergence between the benthesicymids and the aristeids.

摘要

对虾总科是一类具有重要经济价值的多样化海洋虾类。自从使用线粒体DNA标记和精子超微结构的研究与基于形态学的对虾类科的分类相矛盾,从而挑战了这个超科长期以来的分类法以来,人们对虾类的进化历史的关注度有所提高。在本研究中,从37个对虾类属中确定了两个核蛋白编码基因(磷酸烯醇式丙酮酸羧激酶和钠钾ATP酶α亚基)的DNA序列,以重建进化关系并估计对虾类虾的分歧年代。使用最大似然法和贝叶斯方法进行的系统发育分析强烈支持管鞭虾科、阿里斯特虾科和深海对虾科的单系性,但发现猬虾科嵌套在对虾科内,使得对虾科成为并系群。对虾总科包括两个谱系:前三个科为一个谱系,后两个科为另一个谱系。这些谱系的多样化可能与水深有关。类似对虾的谱系在三叠纪多样化,早于起源于侏罗纪的类似阿里斯特虾的谱系。还提出了对虾总科内的分类修订以供进一步研究。由于对虾科的并系性以及Burkenroad [Burkenroad, M.D., 1983. 枝鳃亚目自然分类,附近代属检索表。见:Schram, F.R. (编). 甲壳动物问题I. 甲壳动物系统发育。A.A. Balkema, 鹿特丹,第279 - 290页] 的三个对虾科族之间的高遗传分歧,这些族应被视为与猬虾科具有相同的分类等级,而由于深海对虾科与阿里斯特虾科之间的低遗传分歧,深海对虾科的科等级必须重新考虑。

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