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首页> 外文期刊>Hydrobiologia >Notes on the position of the true freshwater crabs within the brachyrhynchan Eubrachyura (Crustacea: Decapoda: Brachyura)
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Notes on the position of the true freshwater crabs within the brachyrhynchan Eubrachyura (Crustacea: Decapoda: Brachyura)

机译:关于真正的淡水蟹在Brachyrhynchan Eubrachyura中的位置的注释(甲壳纲:十足目:Brachyura)

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摘要

Cladistic and phenetic relationships of 51 eubrachyuran crab genera, comprising 36 genera of marine crabs and 18 genera of true freshwater crabs from 7 families, were investigated using 121 parsimony-informative adult morphological characters. The data matrix was subjected to four different treatments: (1) a cladistic analysis with a combination of unordered and ordered characters, (2) a cladistic analysis with all characters unordered, (3) neighbour-joining, and (4) UPGMA phenetic analyses. The parsimony analysis conducted with a combination of ordered and unordered characters produced a set of hypotheses which supported monophyly of a Pseudothelphusidae+Potamoidea clade. Furthermore, exemplar genera of the Bythograeidae and Pinnotheridae formed an unresolved polytomy with the Pseudothelphusidae+Potamoidea group, the Thoracotremata. The trichodactylid freshwater crabs were positioned as the sister taxon of the basal portunoid Carcinus, but were unresolved relative to other portunoids and geryonids. Second, the parsimony analysis conducted with all characters unordered resulted in a [bythograeid, pseudothelphusid+potamoid, pinnotherid, thoracotreme] group with no hierarchical resolution, which in turn formed a polytomy with a goneplacid+portunoid clade and a polyphyletic Xanthoidea. And third, phenetic groupings of the eubrachyuran genera invariably placed the pseudothelphusids with the potamoids, and this clustered with a group containing the thoracotremes (either in whole or part). Support was thus found for morphological connections among the nontrichodactylid freshwater crabs, thoracotremes, bythograeids, and pinnotherids, and for the placement of the trichodactylids within the Portunoidea. These two latter findings (that used a range of genera from each family) are broadly congruent with a previous cladistic analysis of selected eubrachyuran familial groundpatterns that used a basal exemplar of each marine and freshwater crab family (Sternberg et al., 1999). However, it is clear that the large scale homoplasy identified here may nullify any reliable hypothesis of brachyrhynchan groupings at this stage.
机译:利用121个具有简约信息的成虫形态特征,研究了51个eubrachyuran蟹属与36个海生蟹和18个真正的淡水蟹的亲缘关系。数据矩阵经过四种不同处理:(1)结合无序和有序字符进行的分类分析;(2)结合所有无序字符的分类分析;(3)邻域连接;以及(4)UPGMA物候分析。结合有序和无序字符进行的简约分析产生了一组假说,这些假说支持假单胞菌+ Potamoidea进化枝。此外,Bythograeidae和Pinnotheridae的示例属与Pseudothelphusidae + Potamoidea组,Thoracotremata形成了一个未解决的切开术。甲壳纲淡水蟹被定位为基底类门齿类癌的姊妹分类群,但相对于其他类门齿类和Geryonids而言尚未解决。其次,对所有字符无序进行的简约分析导致没有层次分辨率的[bythograeid,pseudothelphusid + potamoid,pinnotherid,thoracotreme]组,进而形成了带有多菌酸+ portunoid进化枝和多系Xanthoidea的多角体。第三,eubrachyuran属的表型分组始终将假t虫卵与钾素类化合物一起放置,并且将其与包含胸腔动物(全部或部分)的组聚集在一起。因此,人们发现了对非曲霉类淡水蟹,胸甲类,bythograeids和pinnotherids类之间的形态学联系,以及在梭形藻中放置三足纲类动物的支持。后两个发现(使用了每个家族的一个属)与先前对选定的eubrachyuran家族地面模式的分类分析大体一致,该模式使用了每个海洋和淡水蟹家族的基础样本(Sternberg等,1999)。但是,很明显,在此阶段确定的大规模同质异体可能会破坏腕足类分组的任何可靠假设。

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