Nagayasu Nakanishi, Ph.D.
Affiliations: | 2009 | University of California, Los Angeles, Los Angeles, CA |
Area:
Evolution/Development of Invertebrate Body Plans, Paleobiology and Marine SpeciationGoogle:
"Nagayasu Nakanishi"Parents
Sign in to add mentorDavid K Jacobs | grad student | 2009 | UCLA | |
(Development of the nervous system in Aurelia (Cnidaria, Scyphozoa).) |
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Publications
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Ozment E, Tamvacakis AN, Zhou J, et al. (2021) Cnidarian hair cell development illuminates an ancient role for the class IV POU transcription factor in defining mechanoreceptor identity. Elife. 10 |
Zang H, Nakanishi N. (2020) Expression Analysis of Cnidarian-Specific Neuropeptides in a Sea Anemone Unveils an Apical-Organ-Associated Nerve Net That Disintegrates at Metamorphosis. Frontiers in Endocrinology. 11: 63 |
Silva MAP, Nakanishi N. (2019) Genotyping of Sea Anemone during Early Development. Journal of Visualized Experiments : Jove |
Nakanishi N, Martindale MQ. (2018) CRISPR knockouts reveal an endogenous role for ancient neuropeptides in regulating developmental timing in a sea anemone. Elife. 7 |
Gold DA, Nakanishi N, Hensley NM, et al. (2016) Cell tracking supports secondary gastrulation in the moon jellyfish Aurelia. Development Genes and Evolution |
Sogabe S, Nakanishi N, Degnan BM. (2016) The ontogeny of choanocyte chambers during metamorphosis in the demosponge Amphimedon queenslandica. Evodevo. 7: 6 |
Levin M, Anavy L, Cole AG, et al. (2016) The mid-developmental transition and the evolution of animal body plans. Nature |
Gold DA, Nakanishi N, Hensley NM, et al. (2015) Structural and Developmental Disparity in the Tentacles of the Moon Jellyfish Aurelia sp.1. Plos One. 10: e0134741 |
Nakanishi N, Camara AC, Yuan DC, et al. (2015) Gene Expression Data from the Moon Jelly, Aurelia, Provide Insights into the Evolution of the Combinatorial Code Controlling Animal Sense Organ Development. Plos One. 10: e0132544 |
Gaiti F, Fernandez-Valverde SL, Nakanishi N, et al. (2015) Dynamic and Widespread lncRNA Expression in a Sponge and the Origin of Animal Complexity. Molecular Biology and Evolution. 32: 2367-82 |