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改进的分类抽样是解决猬虾次目十足类科间关系的必要但不充分条件。

An improved taxonomic sampling is a necessary but not sufficient condition for resolving inter-families relationships in Caridean decapods.

作者信息

Aznar-Cormano L, Brisset J, Chan T-Y, Corbari L, Puillandre N, Utge J, Zbinden M, Zuccon D, Samadi S

机构信息

ISYEB - UMR 7205 - CNRS, MNHN, UPMC, EPHE, Muséum National d'Histoire Naturelle, Département Systématique et Evolution, Sorbonne Universités, CP26, 57 rue Cuvier, 75231, Paris Cedex 05, France.

出版信息

Genetica. 2015 Apr;143(2):195-205. doi: 10.1007/s10709-014-9807-0. Epub 2015 Feb 14.

Abstract

During the past decade, a large number of multi-gene analyses aimed at resolving the phylogenetic relationships within Decapoda. However relationships among families, and even among sub-families, remain poorly defined. Most analyses used an incomplete and opportunistic sampling of species, but also an incomplete and opportunistic gene selection among those available for Decapoda. Here we test in the Caridea if improving the taxonomic coverage following the hierarchical scheme of the classification, as it is currently accepted, provides a better phylogenetic resolution for the inter-families relationships. The rich collections of the Muséum National d'Histoire Naturelle de Paris are used for sampling as far as possible at least two species of two different genera for each family or subfamily. All potential markers are tested over this sampling. For some coding genes the amplification success varies greatly among taxa and the phylogenetic signal is highly saturated. This result probably explains the taxon-heterogeneity among previously published studies. The analysis is thus restricted to the genes homogeneously amplified over the whole sampling. Thanks to the taxonomic sampling scheme the monophyly of most families is confirmed. However the genes commonly used in Decapoda appear non-adapted for clarifying inter-families relationships, which remain poorly resolved. Genome-wide analyses, like transcriptome-based exon capture facilitated by the new generation sequencing methods might provide a sounder approach to resolve deep and rapid radiations like the Caridea.

摘要

在过去十年中,大量多基因分析旨在解析十足目内部的系统发育关系。然而,科之间甚至亚科之间的关系仍不明确。大多数分析采用的物种采样不完整且具有随机性,在十足目可用基因中进行的基因选择也不完整且具有随机性。在此,我们在虾类中进行测试,按照当前公认的分类层级方案提高分类学覆盖度,是否能为科间关系提供更好的系统发育分辨率。巴黎国家自然历史博物馆丰富的藏品被用于采样,尽可能为每个科或亚科采集至少两种不同属的物种。所有潜在标记都在该采样上进行测试。对于一些编码基因,扩增成功率在不同分类群中差异很大,且系统发育信号高度饱和。这一结果可能解释了先前发表研究中的分类群异质性。因此,分析仅限于在整个采样中均匀扩增的基因。得益于分类学采样方案,大多数科的单系性得到了确认。然而,十足目中常用的基因似乎不适用于阐明科间关系,科间关系仍然解析得很差。全基因组分析,如新一代测序方法促进的基于转录组的外显子捕获,可能为解决像虾类这样的深度和快速辐射问题提供更可靠的方法。

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