The adult striped pattern of zebrafish is composed of melanophores, iridophores and xanthophores arranged in superimposed layers in the skin. Previous studies have revealed that the assembly of pigment cells into stripes involves heterotypic interactions between all three chromatophore types. Here we investigate the role of homotypic interactions between cells of the same chromatophore type. Introduction of labelled progenitors into mutants lacking the corresponding cell type allowed us to define the impact of competitive interactions via long-term in vivo imaging. In the absence of endogenous cells, transplanted iridophores and xanthophores show an increased rate of proliferation and spread as a coherent net into vacant space. By contrast,...
Color patterns are prominent features of many animals; they are highly variable and evolve rapidly l...
AbstractAdult zebrafish stripes are formed from stripes of gold iridophores alternating with stripes...
Changes in gene activity are essential for evolutionary diversification. Yet, elucidating the cellul...
The conspicuous striped coloration of zebrafish is produced by cell-cell interactions among three di...
The conspicuous striped coloration of zebrafish is produced by cell-cell interactions among three di...
Vertebrates possess a unique structure, the neural crest, which contributes cells to a wide spectrum...
<div><p>Skin pigment patterns of vertebrates are a classic system for understanding fundamental mech...
Pigment cells in zebrafish - melanophores, iridophores, and xanthophores - originate from neural cre...
The pattern of alternating blue and golden stripes displayed by adult zebrafish is composed of three...
Pigment cells in zebrafish - melanophores, iridophores, and xanthophores - originate from neural cre...
Colour patterns are prominent features of many animals and have important functions in communication...
Thesis (Ph.D.)--University of Washington, 2014Pigment patterns are among the most striking of traits...
Animals have evolved a fascinating diversity in their color patterns, which serves as an essential c...
Animals have evolved a fascinating diversity in their color patterns, which serves as an essential c...
Changes in gene activity are essential for evolutionary diversification. Yet, elucidating the cellul...
Color patterns are prominent features of many animals; they are highly variable and evolve rapidly l...
AbstractAdult zebrafish stripes are formed from stripes of gold iridophores alternating with stripes...
Changes in gene activity are essential for evolutionary diversification. Yet, elucidating the cellul...
The conspicuous striped coloration of zebrafish is produced by cell-cell interactions among three di...
The conspicuous striped coloration of zebrafish is produced by cell-cell interactions among three di...
Vertebrates possess a unique structure, the neural crest, which contributes cells to a wide spectrum...
<div><p>Skin pigment patterns of vertebrates are a classic system for understanding fundamental mech...
Pigment cells in zebrafish - melanophores, iridophores, and xanthophores - originate from neural cre...
The pattern of alternating blue and golden stripes displayed by adult zebrafish is composed of three...
Pigment cells in zebrafish - melanophores, iridophores, and xanthophores - originate from neural cre...
Colour patterns are prominent features of many animals and have important functions in communication...
Thesis (Ph.D.)--University of Washington, 2014Pigment patterns are among the most striking of traits...
Animals have evolved a fascinating diversity in their color patterns, which serves as an essential c...
Animals have evolved a fascinating diversity in their color patterns, which serves as an essential c...
Changes in gene activity are essential for evolutionary diversification. Yet, elucidating the cellul...
Color patterns are prominent features of many animals; they are highly variable and evolve rapidly l...
AbstractAdult zebrafish stripes are formed from stripes of gold iridophores alternating with stripes...
Changes in gene activity are essential for evolutionary diversification. Yet, elucidating the cellul...