Phylogenomic analysis of brachyuran crabs using transcriptome data reveals possible sources of conflicting phylogenetic relationships within the group

IF 3.6 1区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Da Pan , Yunlong Sun , Boyang Shi , Ruxiao Wang , Peter K.L. Ng , Danièle Guinot , Neil Cumberlidge , Hongying Sun
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Abstract

Despite extensive morphological and molecular studies, the phylogenetic interrelationships within the infraorder Brachyura and the phylogenetic positions of many taxa remain uncertain. Studies that used a limited number of molecular markers have often failed to provide sufficient resolution, and may be susceptible to stochastic errors and incomplete lineage sorting (ILS). Here we reconstructed the phylogenetic relationships within the Brachyura using transcriptome data of 56 brachyuran species, including 14 newly sequenced taxa. Five supermatrices were constructed in order to exclude different sources of systematic error. The results of the phylogenetic analyses indicate that Heterotremata is non-monophyletic, and that the two Old World primary freshwater crabs (Potamidae and Gecarcinucidae) and the Hymenosomatoidea form a clade that is sister to the Thoracotremata, and outside the Heterotremata. We also found that ILS is the main cause of the gene-tree discordance of these freshwater crabs. Divergence time estimations indicate that the Brachyura has an ancient origin, probably either in the Triassic or Jurassic, and that the majority of extant families and superfamilies first appeared during the Cretaceous, with a constant increase of diversity in Post-Cretaceous-Palaeogene times. The results support the hypothesis that the two Old World freshwater crab families included in this study (Potamidae and Gecarcinucidae) diverged from their marine ancestors around 120 Ma, in the Cretaceous. In addition, this work provides new insights that may aid in the reclassification of some of the more problematic brachyuran groups.

Abstract Image

利用转录组数据对双壳类蟹类进行系统发生组分析,揭示了该类群内部系统发生关系冲突的可能根源
尽管进行了广泛的形态学和分子学研究,但腕足动物亚目内部的系统发育相互关系以及许多类群的系统发育位置仍不确定。使用数量有限的分子标记进行的研究往往无法提供足够的分辨率,而且可能容易受到随机误差和不完全世系分类(ILS)的影响。在此,我们利用包括 14 个新测序类群在内的 56 个腕足动物的转录组数据重建了腕足动物的系统发生关系。为了排除系统误差的不同来源,我们构建了五个超矩阵。系统进化分析的结果表明,异端端目(Heterotremata)是非单系的,两个旧大陆的主要淡水蟹类(Potamidae 和 Gecarcinucidae)和海蓑蛾科(Hymenosomatoidea)形成了一个支系,该支系与胸棘端目(Thoracotremata)是姐妹支系,在异端端目(Heterotremata)之外。我们还发现,ILS 是造成这些淡水蟹基因树不一致的主要原因。分歧时间的估计表明,腕足动物起源古老,可能起源于三叠纪或侏罗纪,现存的大多数科和超科最早出现于白垩纪,在后白垩纪-古新世时期多样性不断增加。研究结果支持这一假设,即本研究中包括的两个旧大陆淡水蟹科(Potamidae 和 Gecarcinucidae)是在白垩纪 120 Ma 左右从其海洋祖先分化出来的。此外,这项研究还提供了新的见解,可能有助于对一些问题较多的臂形目类群进行重新分类。
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来源期刊
Molecular Phylogenetics and Evolution
Molecular Phylogenetics and Evolution 生物-进化生物学
CiteScore
7.50
自引率
7.30%
发文量
249
审稿时长
7.5 months
期刊介绍: Molecular Phylogenetics and Evolution is dedicated to bringing Darwin''s dream within grasp - to "have fairly true genealogical trees of each great kingdom of Nature." The journal provides a forum for molecular studies that advance our understanding of phylogeny and evolution, further the development of phylogenetically more accurate taxonomic classifications, and ultimately bring a unified classification for all the ramifying lines of life. Phylogeographic studies will be considered for publication if they offer EXCEPTIONAL theoretical or empirical advances.
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