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Developmental Cell|January 16, 2008
A Wnt-FoxQ2-nodal pathway links primary and secondary axis specification in sea urchin embryosShunsuke Yaguchi, Junko Yaguchi, Robert C Angerer, et al.
Development, Growth & Differentiation|March 14, 2018
HpBase: A genome database of a sea urchin, Hemicentrotus pulcherrimusSonoko Kinjo, Masato Kiyomoto, Takashi Yamamoto, et al.
Development (Cambridge, England)|August 11, 2011
The evolution of nervous system patterning: insights from sea urchin developmentLynne M Angerer, Shunsuke Yaguchi, Robert C Angerer, et al.
Nature Communications|October 18, 2024
Light-modulated neural control of sphincter regulation in the evolution of through-gutJunko Yaguchi, Kazumi Sakai, Atsushi Horiuchi, et al.
Development, Growth & Differentiation|April 18, 2024
Assembly of continuous high-resolution draft genome sequence of Hemicentrotus pulcherrimus using long-read sequencingTetsushi Komoto, Kazuho Ikeo, Shunsuke Yaguchi, et al.
Development (Cambridge, England)|March 10, 2009
The sea urchin animal pole domain is a Six3-dependent neurogenic patterning centerZheng Wei, Junko Yaguchi, Shunsuke Yaguchi, et al.
Development, Growth & Differentiation|April 22, 2022
TrBase: A genome and transcriptome database of Temnopleurus reevesiiSonoko Kinjo, Masato Kiyomoto, Haruka Suzuki, et al.
Developmental Biology|August 17, 2010
TGFβ signaling positions the ciliary band and patterns neurons in the sea urchin embryoShunsuke Yaguchi, Junko Yaguchi, Robert C Angerer, et al.
Developmental Biology|September 30, 2010
ankAT-1 is a novel gene mediating the apical tuft formation in the sea urchin embryoShunsuke Yaguchi, Junko Yaguchi, Zheng Wei, et al.
The Journal of Comparative Neurology|March 16, 2006
Neuron-specific expression of a synaptotagmin gene in the sea urchin Strongylocentrotus purpuratusRobert D Burke, Lisa Osborne, Diana Wang, et al.
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