Results 171 to 180 of about 3,978 (192)
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Mechanisms of tentacle morphogenesis in the sea anemone Nematostella vectensis
Development, 2013Evolution of the capacity to form secondary outgrowths from the principal embryonic axes was a crucial innovation that potentiated the diversification of animal body plans. Precisely how such outgrowths develop in early-branching metazoan species remains poorly understood.
Ashleigh E, Fritz +4 more
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Chemical transmission in the sea anemone Nematostella vectensis: A genomic perspective
Comparative Biochemistry and Physiology Part D: Genomics and Proteomics, 2009The sequencing of the starlet sea anemone (Nematostella vectensis) genome provides opportunities to investigate the function and evolution of genes associated with chemical neurotransmission and hormonal signaling. This is of particular interest because sea anemones are anthozoans, the phylogenetically basal cnidarians least changed from the common ...
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Characterization of larval neurons in Nematostella vectensis
Der zu den Cnidaria gehörenden Modellorganismus Nematostella vectensis, eine Seeanemone, durchläuft eine leichte Form von Metamorphose von der frei-schwimmenden Planula-Larve bis hin zum sessilen Polypen, wobei die Fähigkeit zu schwimmen verloren geht. Das Nervensystem von Nematostella besteht aus einem diffusen Nervennetz.openaire +1 more source
Notum is probably not a Wnt-signaling antagonist in Nematostella vectensis
2021Der hoch konservierte Wnt/ß-catenin Signalweg spielt eine wichtige Rolle bei vielen verschiedenen Mechanismen wie der Spezifikation, Proliferation oder Differenzierung des Zellschicksals in allen Metazoen. Bei der Seeanemone Nematostella vectensis, ein bilateral symmetrisches Nesseltier, ist der Wnt-Signalweg ebenfalls ein entscheidender Bestandteil ...
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[Gap junctions in sea anemone, Nematostella vectensis, embryo].
Zhurnal obshchei biologii, 2012Gap junctions (GJs) are composed of membrane proteins that form channels connecting the cytoplasm of adjacent cells and permeable to ions and small molecules. They are considered to be the main or only type of intercellular channels and a universal feature of all multicellular animals (Metazoa).
L B, Popova +3 more
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Proceedings of the National Academy of Sciences of the United States of America, 2021
Beth Hayes +2 more
exaly
Beth Hayes +2 more
exaly
Initial Virome Characterization of the Common Cnidarian Lab Model Nematostella vectensis
Viruses, 2020Magda Lewandowska +2 more
exaly
Characterization of the piRNA pathway during development of the sea anemone Nematostella vectensis
RNA Biology, 2017Yehu Moran +2 more
exaly

