Relationship of Homolidae and Dromiidae: Evidence from Spermatozoal Ultrastructure (Crustacea, Decapoda)
Identifieur interne : 00D742 ( Main/Exploration ); précédent : 00D741; suivant : 00D743Relationship of Homolidae and Dromiidae: Evidence from Spermatozoal Ultrastructure (Crustacea, Decapoda)
Auteurs : D. Guinot [France] ; B. G. M. Jamieson [Australie] ; B. Richer De ForgesSource :
- Acta Zoologica [ 0001-7272 ] ; 1994-07.
Descripteurs français
- Wicri :
- topic : Crustacé.
English descriptors
- KwdEn :
- Acrosomal, Acrosome, Acrosome vesicle, Brachyura, Brachyuran, Capitate, Capitate perforatorium, Cell membrane, Crabs, Crustacea, Crustacean, Decapoda, Dense material, Dromiacea, Dromiid, Dromiid sperm, Dromiidae, Dromiids, Female pores, Guinot, Heterotremata, Heterotremes, Higher brachyura, Higher heterotremes, Homola, Homolid, Homolid perforatorium, Homolid species, Homolid sperm, Homolid spermatozoon, Homolidae, Homolids, Homoloidea, Jamieson, Larva, Larval, Lateralis, Membrane, Microtubular arms, Microtubule, Mitochondrion, Natural history, Nuclear arms, Operculum, Other reptants, Paromola, Paromola petterdi, Perforatorial, Perforatorium, Petalomera, Petalomera lateralis, Petterdi, Phylogeny, Plasma membrane, Podotremata, Portunus pelagicus, Queensland, Queensland museum, Radial spikes, Ranina, Ranina ranina, Raninids, Ratio width length, Sperm, Spermatozoa1 ultrastructure, Spermatozoon, Spike, Tortuous membranes, Transmission electron micrographs, Tudge, Ultrastructure, Vesicle, Williamson.
- Teeft :
- Acrosomal, Acrosome, Acrosome vesicle, Brachyura, Brachyuran, Capitate, Capitate perforatorium, Cell membrane, Crabs, Crustacea, Crustacean, Decapoda, Dense material, Dromiacea, Dromiid, Dromiid sperm, Dromiidae, Dromiids, Female pores, Guinot, Heterotremata, Heterotremes, Higher brachyura, Higher heterotremes, Homola, Homolid, Homolid perforatorium, Homolid species, Homolid sperm, Homolid spermatozoon, Homolidae, Homolids, Homoloidea, Jamieson, Larva, Larval, Lateralis, Membrane, Microtubular arms, Microtubule, Mitochondrion, Natural history, Nuclear arms, Operculum, Other reptants, Paromola, Paromola petterdi, Perforatorial, Perforatorium, Petalomera, Petalomera lateralis, Petterdi, Phylogeny, Plasma membrane, Podotremata, Portunus pelagicus, Queensland, Queensland museum, Radial spikes, Ranina, Ranina ranina, Raninids, Ratio width length, Sperm, Spermatozoa1 ultrastructure, Spermatozoon, Spike, Tortuous membranes, Transmission electron micrographs, Tudge, Ultrastructure, Vesicle, Williamson.
Abstract
Abstract The homolid spermatozoon, as exemplified by Homolasp., Paromolasp. and Paromola petterdi, differs markedly from spermatozoa of crabs of the Heterotremata–Thoracotremata assemblage but agrees with the sperm of dromiids, in the strongly anteroposteriorly depressed acrosome (apomorphy?) and the capitate form of the perforatorium (a major synapomorphy seen nowhere else in the Crustacea). These similarities support inclusion of the Dromiidae and Homolidae in a single grouping, the Podotremata. The homolid perforatorium differs from that of dromiids in the autapomorphic spiked–wheel form of the anterior expansion. Homolid spermatozoa show nuclear arms symplesiomorphic of all investigated crabs (small or questionably sometimes absent in Dromiidae), and corresponding loss of purely microtubular arms seen in other reptants. Homolid sperm agree with those of dromiids (synapomorphy?), raninids, higher heterotremes and thoracotremes (homoplasies?) but differ from lower heterotremes, in lacking microtubules in the nuclear arms. A posterior median process of the nucleus in homolids, not seen in dromiids, is shared with anomurans and lower heterotremes. No features in the ultrastructure of homolid or dromiid sperm have been detected which associate them exclusively with either the Raninidae or the heterotreme and thoracotreme Brachyura.
Url:
DOI: 10.1111/j.1463-6395.1994.tb01213.x
Affiliations:
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<term>Acrosome</term>
<term>Acrosome vesicle</term>
<term>Brachyura</term>
<term>Brachyuran</term>
<term>Capitate</term>
<term>Capitate perforatorium</term>
<term>Cell membrane</term>
<term>Crabs</term>
<term>Crustacea</term>
<term>Crustacean</term>
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<term>Dromiacea</term>
<term>Dromiid</term>
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<term>Dromiids</term>
<term>Female pores</term>
<term>Guinot</term>
<term>Heterotremata</term>
<term>Heterotremes</term>
<term>Higher brachyura</term>
<term>Higher heterotremes</term>
<term>Homola</term>
<term>Homolid</term>
<term>Homolid perforatorium</term>
<term>Homolid species</term>
<term>Homolid sperm</term>
<term>Homolid spermatozoon</term>
<term>Homolidae</term>
<term>Homolids</term>
<term>Homoloidea</term>
<term>Jamieson</term>
<term>Larva</term>
<term>Larval</term>
<term>Lateralis</term>
<term>Membrane</term>
<term>Microtubular arms</term>
<term>Microtubule</term>
<term>Mitochondrion</term>
<term>Natural history</term>
<term>Nuclear arms</term>
<term>Operculum</term>
<term>Other reptants</term>
<term>Paromola</term>
<term>Paromola petterdi</term>
<term>Perforatorial</term>
<term>Perforatorium</term>
<term>Petalomera</term>
<term>Petalomera lateralis</term>
<term>Petterdi</term>
<term>Phylogeny</term>
<term>Plasma membrane</term>
<term>Podotremata</term>
<term>Portunus pelagicus</term>
<term>Queensland</term>
<term>Queensland museum</term>
<term>Radial spikes</term>
<term>Ranina</term>
<term>Ranina ranina</term>
<term>Raninids</term>
<term>Ratio width length</term>
<term>Sperm</term>
<term>Spermatozoa1 ultrastructure</term>
<term>Spermatozoon</term>
<term>Spike</term>
<term>Tortuous membranes</term>
<term>Transmission electron micrographs</term>
<term>Tudge</term>
<term>Ultrastructure</term>
<term>Vesicle</term>
<term>Williamson</term>
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<term>Acrosome</term>
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<term>Capitate</term>
<term>Capitate perforatorium</term>
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<term>Crustacea</term>
<term>Crustacean</term>
<term>Decapoda</term>
<term>Dense material</term>
<term>Dromiacea</term>
<term>Dromiid</term>
<term>Dromiid sperm</term>
<term>Dromiidae</term>
<term>Dromiids</term>
<term>Female pores</term>
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<term>Heterotremata</term>
<term>Heterotremes</term>
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<term>Higher heterotremes</term>
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<term>Homolid species</term>
<term>Homolid sperm</term>
<term>Homolid spermatozoon</term>
<term>Homolidae</term>
<term>Homolids</term>
<term>Homoloidea</term>
<term>Jamieson</term>
<term>Larva</term>
<term>Larval</term>
<term>Lateralis</term>
<term>Membrane</term>
<term>Microtubular arms</term>
<term>Microtubule</term>
<term>Mitochondrion</term>
<term>Natural history</term>
<term>Nuclear arms</term>
<term>Operculum</term>
<term>Other reptants</term>
<term>Paromola</term>
<term>Paromola petterdi</term>
<term>Perforatorial</term>
<term>Perforatorium</term>
<term>Petalomera</term>
<term>Petalomera lateralis</term>
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<term>Phylogeny</term>
<term>Plasma membrane</term>
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<term>Ranina ranina</term>
<term>Raninids</term>
<term>Ratio width length</term>
<term>Sperm</term>
<term>Spermatozoa1 ultrastructure</term>
<term>Spermatozoon</term>
<term>Spike</term>
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<front><div type="abstract">Abstract The homolid spermatozoon, as exemplified by Homolasp., Paromolasp. and Paromola petterdi, differs markedly from spermatozoa of crabs of the Heterotremata–Thoracotremata assemblage but agrees with the sperm of dromiids, in the strongly anteroposteriorly depressed acrosome (apomorphy?) and the capitate form of the perforatorium (a major synapomorphy seen nowhere else in the Crustacea). These similarities support inclusion of the Dromiidae and Homolidae in a single grouping, the Podotremata. The homolid perforatorium differs from that of dromiids in the autapomorphic spiked–wheel form of the anterior expansion. Homolid spermatozoa show nuclear arms symplesiomorphic of all investigated crabs (small or questionably sometimes absent in Dromiidae), and corresponding loss of purely microtubular arms seen in other reptants. Homolid sperm agree with those of dromiids (synapomorphy?), raninids, higher heterotremes and thoracotremes (homoplasies?) but differ from lower heterotremes, in lacking microtubules in the nuclear arms. A posterior median process of the nucleus in homolids, not seen in dromiids, is shared with anomurans and lower heterotremes. No features in the ultrastructure of homolid or dromiid sperm have been detected which associate them exclusively with either the Raninidae or the heterotreme and thoracotreme Brachyura.</div>
</front>
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