Publications of HG Frohnhöfer
All genres
Journal Article (20)
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
12 (1), 3170 (2021)
Author Correction: Evolution of the potassium channel gene Kcnj13 underlies colour pattern diversification in Danio fish. Nature Communications 3.
Journal Article
11 (1), 6230 (2020)
Evolution of the potassium channel gene Kcnj13 underlies colour pattern diversification in Danio fish. Nature Communications 4.
Journal Article
30 (2), pp. 298 - 303 (2020)
Galanin Signaling in the Brain Regulates Color Pattern Formation in Zebrafish. Current Biology 5.
Journal Article
5 (6), pp. 736 - 744 (2016)
Spermidine, but not spermine, is essential for pigment pattern formation in zebrafish. Biology Open 6.
Journal Article
4, e06545 (2015)
Tight Junction Protein 1a regulates pigment cell organisation during zebrafish colour patterning. eLife 7.
Journal Article
348 (6232), p. 297 (2015)
Fish pigmentation. Response to Comment on "Local reorganization of xanthophores fine-tunes and colors the striped pattern of zebrafish". Science 8.
Journal Article
3, e05125 (2014)
Gap junctions composed of connexins 41.8 and 39.4 are essential for colour pattern formation in zebrafish. eLife 9.
Journal Article
3 (6), pp. 503 - 509 (2014)
Endothelin signalling in iridophore development and stripe pattern formation of zebrafish. Biology Open 10.
Journal Article
2 (9), p. 979 (2013)
Erratum: transparent, a gene affecting stripe formation in Zebrafish, encodes the mitochondrial protein Mpv17 that is required for iridophore survival. Biology Open 11.
Journal Article
140 (14), pp. 2997 - 3007 (2013)
Iridophores and their interactions with other chromatophores are required for stripe formation in zebrafish. Development 12.
Journal Article
2 (7), pp. 703 - 710 (2013)
transparent, a gene affecting stripe formation in Zebrafish, encodes the mitochondrial protein Mpv17 that is required for iridophore survival. Biology Open 13.
Journal Article
8 (3), pp. 119 - 123 (2011)
Enhancing the efficiency of N-ethyl-N-nitrosourea-induced mutagenesis in the zebrafish. Zebrafish 14.
Journal Article
135 (11), pp. 1935 - 1946 (2008)
The multidomain protein Brpf1 binds histones and is required for Hox gene expression and segmental identity. Development 15.
Journal Article
132 (4), pp. 645 - 658 (2005)
Monorail/Foxa2 regulates floorplate differentiation and specification of oligodendrocytes, serotonergic raphé neurones and cranial motoneurones. Development 16.
Journal Article
346 (6285), pp. 660 - 663 (1990)
Localized requirement for torso-like expression in follicle cells for development of terminal anlagen of the Drosophila embryo. Nature 17.
Journal Article
Supplement 107, pp. 21 - 29 (1989)
Segmental polarity and identity in the abdomen of Drosophila is controlled by the relative position of gap gene. Development 18.
Journal Article
Supplement 107, pp. 21 - 29 (1989)
Segmental polarity and identity in the abdomen of Drosophila is controlled by the relative position of gap gene expression. Development 19.
Journal Article
238 (4834), pp. 1675 - 1681 (1987)
Determination of anteroposterior polarity in Drosophila. Science 20.
Journal Article
97 (Supplement), pp. 169 - 179 (1986)
Manipulating the anteroposterior pattern of the Drosophila embryo. Journal of Embryology and Experimental Morphology