
Publications of C Nüsslein-Volhard
All genres
Journal Article (175)
1.
Journal Article
150 (16), dev.201627 (2023)
kcnj13 regulates pigment cell shapes in zebrafish and has diverged by cis-regulatory evolution between Danio species. Development 2.
Journal Article
119 (30), e2122148119 (2022)
Developmental genetics with model organisms. Proceedings of the National Academy of Sciences of the United States of America 3.
Journal Article
485, pp. 93 - 122 (2022)
The great small organisms of developmental genetics: Caenorhabditis elegans and Drosophila melanogaster. Developmental Biology 4.
Journal Article
6 (5), pp. 1474 - 1488 (2022)
M-CSFR/CSF1R signaling regulates myeloid fates in zebrafish via distinct action of its receptors and ligands. Blood Advances 5.
Journal Article
38 (3), pp. 231 - 245 (2022)
The Toll gene in Drosophila pattern formation. Trends in Genetics 6.
Journal Article
166, 203684 (2021)
Zebrafish twist2/dermo1 regulates scale shape and scale organization during skin development and regeneration. Cells & Development 7.
Journal Article
12 (1), 3170 (2021)
Author Correction: Evolution of the potassium channel gene Kcnj13 underlies colour pattern diversification in Danio fish. Nature Communications 8.
Journal Article
11 (1), 6230 (2020)
Evolution of the potassium channel gene Kcnj13 underlies colour pattern diversification in Danio fish. Nature Communications 9.
Journal Article
30 (2), pp. 298 - 303 (2020)
Galanin Signaling in the Brain Regulates Color Pattern Formation in Zebrafish. Current Biology 10.
Journal Article
57, pp. 31 - 38 (2019)
The identification of genes involved in the evolution of color patterns in fish. Current Opinion in Genetics & Development 11.
Journal Article
115 (4), pp. E630 - E638 (2018)
ALKALs are in vivo ligands for ALK family receptor tyrosine kinases in the neural crest and derived cells. Proceedings of the National Academy of Sciences of the United States of America 12.
Journal Article
144 (11), pp. 2059 - 2069 (2017)
Gain-of-function mutations in Aqp3a influence zebrafish pigment pattern formation through the tissue environment. Development 13.
Journal Article
39 (3), 201600231 (2017)
How fish colour their skin: A paradigm for development and evolution of adult patterns: Multipotency, plasticity, and cell competition regulate proliferation and spreading of pigment cells in Zebrafish coloration. Bioessays 14.
Journal Article
39 (3), 1600231 (2017)
How fish color their skin: A paradigm for development and evolution of adult patterns: Multipotency, plasticity, and cell competition regulate proliferation and spreading of pigment cells in Zebrafish coloration. Bioessays 15.
Journal Article
5 (11), pp. 1680 - 1690 (2016)
Heterotypic interactions regulate cell shape and density during color pattern formation in zebrafish. Biology Open 16.
Journal Article
32, pp. 1 - 46 (2016)
The Heidelberg Screen for Pattern Mutants of Drosophila: A Personal Account. Annual Review of Cell and Developmental Biology 17.
Journal Article
38 (3), pp. 316 - 330 (2016)
Pigment Cell Progenitors in Zebrafish Remain Multipotent through Metamorphosis. Developmental Cell 18.
Journal Article
5 (6), pp. 736 - 744 (2016)
Spermidine, but not spermine, is essential for pigment pattern formation in zebrafish. Biology Open 19.
Journal Article
29 (3), pp. 284 - 296 (2016)
Zebrafish Leucocyte tyrosine kinase controls iridophore establishment, proliferation and survival. Pigment Cell & Melanoma Research 20.
Journal Article
143 (8), pp. 1231 - 1233 (2016)
Obituary: Hans Meinhardt (1938-2016). Development