4.5 Article

New insights into the evolution of portunoid swimming crabs (Portunoidea, Heterotremata, Brachyura) and the brachyuran axial skeleton

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FRONTIERS IN ZOOLOGY
卷 19, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12983-022-00467-8

关键词

Swimming crab; Brachyura; Axial skeleton; 3D reconstruction; Morphology; Character; Evolution; Phylogeny

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资金

  1. Deutsche Forschungsgemeinschaft [DFG INST 264/38-1 FUGG]
  2. Land Mecklenburg-Vorpommern

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Portunoidea is a taxonomic group of true crabs known for their swimming ability. This study combines molecular and morphological data to determine the phylogenetic positioning of some members of Portunoidea. The researchers found that the morphology of swimming crabs is more diverse than previously believed. The ancestral state reconstruction suggests that the swimming crab morphology appeared in the ancestors of Portunoidea, but with less effective swimming compared to the current species. Some extant species have reversed the swimming crab morphology.
Portunoidea (Heterotremata) is a morphologically disparate taxon of true crabs (Brachyura) best-known for many of its representatives being considered swimming crabs. The term swimming crab, however, sometimes refers to a distinct taxon (traditionally to Portunidae within Portunoidea), and sometimes to a certain morphotype in which the 5th pereiopod (P5) has a specific shape that facilitates swimming. We use the term P5-swimming crab or P5-swimmer herein, not only to restrict it to the morphotype, but also to distinguish the swimming in question from other kinds of swimming in Brachyura. The evolution of P5-swimming crabs has not yet been satisfactorily investigated. In particular, it is not known whether the morphotype evolved several times independently in different lineages of Portunoidea or whether it evolved only once and was lost in several lineages. Ours is the first approach combining molecular with morphological data to result in a new phylogenetic positioning of some members of Portunoidea. For the first time, data from the axial skeleton and extrinsic musculature are used. Morphological examinations reveal that the axial skeleton and extrinsic musculature in P5-swimming crabs are more diverse than previously thought, with the exception of the P5 anterior coxa muscle, which originates at the median plate in all P5-swimmers. Ancestral state reconstructions based on parsimony reveal that the stem species of Portunoidea already showed the morphotype of a P5-swimming crab, but with a long merus which probably resulted in less effective P5-swimming than in extant P5-swimming crab species with a short merus. Several other extant taxa represent a reversal of the P5-swimmer morphotype to varying degrees, with some extant species showing a complete reversal of unambiguous P5-swimming crab character states-one example being the well-known common shore crab Carcinus maenas. The absence of a connection between interosternite 7/8 and the sella turcica (the secondary loss of the brachyuran sella turcica) in the stem species of Heterotremata, resulting in a junction plate which forms a cavity that offers room and attachment sites for the P5 extrinsic musculature is uncovered as preadaptation to the P5-swimmer morphotype in Heterotremata. This preadaptation is missing in Podotremata and Thoracotremata, the other two traditional main taxa of Brachyura.

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