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Träfflista för sökning "WFRF:(Nakano Hiroaki 1977) "

Sökning: WFRF:(Nakano Hiroaki 1977)

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1.
  • Nakano, Hiroaki, 1977, et al. (författare)
  • Developmental Studies of Xenoturbella
  • 2008
  • Ingår i: Journal of Morphology. - 0362-2525. ; 269, s. 1477-1478
  • Konferensbidrag (övrigt vetenskapligt/konstnärligt)
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2.
  • Nakano, Hiroaki, 1977, et al. (författare)
  • Induced spawning with gamete release from body ruptures during reproduction of Xenoturbella bocki
  • 2023
  • Ingår i: Communications Biology. - : Springer Science and Business Media LLC. - 2399-3642. ; 6:1
  • Tidskriftsartikel (refereegranskat)abstract
    • The marine invertebrate Xenoturbella bocki breeds in the winter and the induction of spawning leads to gamete release through body ruptures, not the mouth. Xenoturbella is a marine invertebrate with a simple body plan, with recent phylogenomic studies suggesting that it forms the phylum Xenacoelomorpha together with the acoelomorphs. The phylogenetic position of the phylum is still under debate, whether it is an early branching bilaterian or a sister group to the Ambulacraria. Phylogenetic traits often appear during development, and larva resembling the cnidarian planula has been reported for Xenoturbella. However, subsequent developmental studies on Xenoturbella have been scarce. This is mainly due to the difficulties in collecting and keeping adult animals, resulting in the lack of data on the reproduction of the animal, such as the breeding season and the spawning pattern. Here we report on the reproduction of X. bocki and confirm that its breeding season is winter. Spawning induction resulted in gametes being released from body ruptures and not the mouth. No evidence supported the animal as a simultaneous hermaphrodite.
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3.
  • Bourlat, Sarah, et al. (författare)
  • Deuterostome phylogeny reveals monophyletic chordates and the new phylum Xenoturbellida
  • 2006
  • Ingår i: Nature. ; 444:7115, s. 85-88
  • Tidskriftsartikel (refereegranskat)abstract
    • Deuterostomes comprise vertebrates, the related invertebrate chordates (tunicates and cephalochordates) and three other inver- tebrate taxa: hemichordates, echinoderms and Xenoturbella1. The relationships between invertebrate and vertebrate deuterostomes are clearly important for understanding our own distant origins. Recent phylogenetic studies of chordate classes and a sea urchin have indicated that urochordates might be the closest inverte- brate sister group of vertebrates, rather than cephalochordates, as traditionally believed2–5. More remarkable is the suggestion that cephalochordates are closer to echinoderms than to vertebrates and urochordates, meaning that chordates are paraphyletic2. To study the relationships among all deuterostome groups, we have assembled an alignment of more than 35,000 homologous amino acids, including new data from a hemichordate, starfish and Xenoturbella. We have also sequenced the mitochondrial genome of Xenoturbella. We support the clades Olfactores (urochordates and vertebrates) and Ambulacraria (hemichordates and echino- derms6). Analyses using our new data, however, do not support a cephalochordate and echinoderm grouping and we conclude that chordates are monophyletic. Finally, nuclear and mitochondrial data place Xenoturbella as the sister group of the two ambulacrar- ian phyla1. As such, Xenoturbella is shown to be an independent phylum, Xenoturbellida, bringing the number of living deutero- stome phyla to four.
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4.
  • Bourlat, Sarah, et al. (författare)
  • Feeding ecology of Xenoturbella bocki (phylum Xenoturbellida) revealed by genetic barcoding
  • 2008
  • Ingår i: Molecular Ecology Resources. - 1755-098X. ; 8, s. 18-22
  • Tidskriftsartikel (refereegranskat)abstract
    • The benthic marine worm Xenoturbella is frequently contaminated with molluscan DNA, which had earlier caused confusion resulting in a suggested bivalve relationship. In order to find the source of the contaminant, we have used molluscan sequences derived from Xenoturbella and compared them to barcodes obtained from several individuals of the nonmicroscopic molluscs sharing the same environment as Xenoturbella. Using cytochrome oxidase 1, we found the contaminating sequences to be 98% similar to the bivalve Ennucula tenuis. Using the highly variable D1-D2 region of the large ribosomal subunit in Xenoturbella, we found three distinct species of contaminating molluscs, one of which is 99% similar to the bivalve Abra nitida, one of the most abundant bivalves in the Gullmarsfjord where Xenoturbella was found, and another 99% similar to the bivalve Nucula sulcata. These data clearly show that Xenoturbella only contains molluscan DNA originating from bivalves living in the same environment, refuting former hypotheses of a bivalve relationship. In addition, these data suggest that Xenoturbella feeds specifically on bivalve prey from multiple species, possibly in the form of eggs and larvae.
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5.
  • Fritzsch, Guido, et al. (författare)
  • PCR Survey of Xenoturbella bocki Hox Genes
  • 2008
  • Ingår i: JOURNAL OF EXPERIMENTAL ZOOLOGY (MOL DEV EVOL). - : Wiley. ; 310B:3, s. 278-284
  • Tidskriftsartikel (refereegranskat)abstract
    • Xenoturbella bocki has recently been identified as one of the most basal deuterostomes, although an even more basal phylogenetic position cannot be ruled out. Here we report on a polymerase chain reaction survey of partial Hox homeobox sequences of X. bocki. Surprisingly, we did not find evidence for more than five Hox genes, one clear labial/PG1 ortholog, one posterior gene most similar to the PG9/10 genes of Ambulacraria, and three central group genes whose precise assignment to a specific paralog group remains open. We furthermore report on a re-evaluation of the available published evidence of Hox genes in other basal deuterostomes.
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6.
  • Hara, Yuko, et al. (författare)
  • Expression patterns of Hox genes in larvae of the sea lily Metacrinus rotundus
  • 2006
  • Ingår i: Development Genes and Evolution. ; 216, s. 797-809
  • Tidskriftsartikel (refereegranskat)abstract
    • We cloned eight Hox genes (MrHox1, MrHox2, MrHox4, MrHox5, MrHox7, MrHox8, MrHox9/10, and MrHox11/13c) from the sea lily Metacrinus rotundus, a member of the most basal group of the extant echinoderms. At the auricularia stage, before the formation of the pentaradial rudiment, four MrHox genes were expressed sequentially along the anteroposterior (AP) axis in the straightened mesodermal somatocoels in the order MrHox5, MrHox7, MrHox8, and MrHox9/10. The expression of MrHox7 and MrHox8 was detected as early as the hatching stage in the presumptive somatocoel region of the archenteral sac. MrHox5 was expressed in the anteriormost region of the somatocoels, where a stalk-related structure (the chambered organ) forms later. In addition to the mesodermal somatocoels, MrHox7 was expressed in the oral hood ectoderm, which gives rise to the adhesive pit. The expression of four other MrHox genes (MrHox1, MrHox2, MrHox4, and MrHox11/13c) was not detected in any of the larval stages we examined. In comparison with the mesodermal sea urchin Hox genes, the MrHox genes are expressed more posteriorly along the AP (oral–anal) axis than the sea urchin orthologs, implying that the evolution of the eleutherozoans was accompanied by a posteriorization of the larval body. Our study illuminates the possible body plan and Hox expression patterns of the ancestral echinoderm and sheds light on the larval body plan of the last common ancestor of the echinoderms and chordates.
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7.
  • Kjeldsen, Kasper Urup, et al. (författare)
  • Two types of endosymbiotic bacteria in the enigmatic marine worm Xenoturbella.
  • 2010
  • Ingår i: Applied and Environmental Microbiology. - 1098-5336. ; 76:8, s. 2657-2662
  • Tidskriftsartikel (refereegranskat)abstract
    • Two types of endosymbiotic bacteria were identified in the gastrodermis of the marine invertebrate Xenoturbella bocki (Xenoturbellida, Bilateria). While previously described Chlamydia-like endosymbionts were rare, Gammaproteobacteria distantly related to other endosymbionts and pathogens were abundant. The endosymbionts should be considered when interpreting the poorly understood ecology and evolution of Xenoturbella.
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9.
  • Kohtsuka, Hisanori, et al. (författare)
  • Development and growth of the feather star Decametra tigrina (Crinoidea), with emphasis on the morphological di¡erences between adults and juveniles
  • 2005
  • Ingår i: Journal of the Marine Biological Association of the United Kingdom. ; 85:6, s. 1503-1510
  • Tidskriftsartikel (refereegranskat)abstract
    • The development and growth of a feather star Decametra tigrina from Notojima Island, Japan, is reported. This is the first record describing the complete development, from early embryos to juveniles, in the family Colobometridae. Their larval development was observed to progress independently from the adults, and was similar to other feather star species. Embryos hatched as uniformly ciliated gastrulae, which turned into doliolaria larvae when four narrow circumferential ciliated bands were formed. Skeletal ossicles began to form inside the doliolaria larvae, which subsequently settled to the substrate, proceeding to the cystidean stage. The protrusion of the arms from the oral opening marked the beginning of the pentacrinoid stage. About 45 days after hatching, they autotomized their stalks and became juvenile comatulids with arms about 6 mm long. These early juveniles apparently differ from the adults in morphological characters, such as having no pairs of tubercles or spines on the dorsal of their cirrals, and no proximal pinnules except for the first pinnule (P1). Both features are prominent in adults and are used for the classification of D. tigrina. Morphological differences between juveniles and the adults may also occur in other feather star species. A revision of the classification of comatulids, which considers morphological changes with growth, is required.
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