Jr-Kai Yu

Affiliations: 
Institute of Cellular and Organismic Biology Academia Sinica, Moni Vatopediou, Taipei City, Taiwan 
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"Jr-Kai Yu"

Parents

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Linda Z. Holland grad student 2000-2005 UCSD
Marianne E. Bronner grad student 2005-2007 Caltech (DevTree)

Children

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Yi-Jyun Luo research assistant 2009-2012 Academia Sinica

Collaborators

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Jia-Xing Yue collaborator 2012- Academia Sinica
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Publications

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Carvalho JE, Lahaye F, Yong LW, et al. (2021) An Updated Staging System for Cephalochordate Development: One Table Suits Them All. Frontiers in Cell and Developmental Biology. 9: 668006
Yong LW, Lu TM, Tung CH, et al. (2021) Somite Compartments in Amphioxus and Its Implications on the Evolution of the Vertebrate Skeletal Tissues. Frontiers in Cell and Developmental Biology. 9: 607057
Bertrand S, Carvalho JE, Dauga D, et al. (2021) The Ontology of the Amphioxus Anatomy and Life Cycle (AMPHX). Frontiers in Cell and Developmental Biology. 9: 668025
Lin CY, Lu MJ, Yue JX, et al. (2020) Molecular asymmetry in the cephalochordate embryo revealed by single-blastomere transcriptome profiling. Plos Genetics. 16: e1009294
Lin CY, Yu JK, Su YH. (2020) Evidence for BMP-mediated specification of primordial germ cells in an indirect-developing hemichordate. Evolution & Development. e12361
Simakov O, Marlétaz F, Yue JX, et al. (2020) Deeply conserved synteny resolves early events in vertebrate evolution. Nature Ecology & Evolution
Barre B, Hallin J, Yue JX, et al. (2020) Intragenic repeat expansion in the cell wall protein gene controls yeast chronological aging. Genome Research
Wang YT, Tseng TL, Kuo YC, et al. (2019) Genetic Reprogramming of Positional Memory in a Regenerating Appendage. Current Biology : Cb
Su YH, Chen YC, Ting HC, et al. (2019) BMP controls dorsoventral and neural patterning in indirect-developing hemichordates providing insight into a possible origin of chordates. Proceedings of the National Academy of Sciences of the United States of America
Kawaguchi M, Sugiyama K, Matsubara K, et al. (2019) Co-option of the PRDM14-CBFA2T complex from motor neurons to pluripotent cells during vertebrate evolution. Development (Cambridge, England)
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