Cnidarian hair cell development illuminates an ancient role for the class IV POU transcription factor in defining mechanoreceptor identity

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Developmental genetics of sea anemone mechanosensory neurons provides insights into the deep evolutionary history of mechanoreceptor development in animals.
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Transcription factors with conserved binding sites near ATOH1 on
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Figure supplement 2: Immunostaining with a preadsorbed anti-POU-IV
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Brn3/POU‐IV‐type POU homeobox genes—Paradigmatic regulators of
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
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Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
October in preprints - the Node
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Cnidarian hair cell development illuminates an ancient role for
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Brn3/POU‐IV‐type POU homeobox genes—Paradigmatic regulators of
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Cnidarian hair cell development illuminates an ancient role for
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
PDF) Cnidarian hair cell development illuminates an ancient role
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
PDF] Diversity of cilia-based mechanosensory systems and their
Cnidarian hair cell development illuminates an ancient role for the class  IV POU transcription factor in defining mechanoreceptor identity
Chromatin Immunoprecipitation in the Cnidarian Model System
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