Javascript must be enabled to continue!
A gene expression study of dorso-ventrally restricted pigment pattern in adult fins of Neolamprologus meeli , an African cichlid species
View through CrossRef
Fish color patterns are among the most diverse phenotypic traits found in the animal kingdom. Understanding the molecular and cellular mechanisms that control in chromatophore distribution and pigmentation underlying this diversity is a major goal in developmental and evolutionary biology, which has predominantly been pursued in the zebrafish model system. Here, we apply results from zebrafish work to study a naturally occurring color pattern phenotype in the fins of an African cichlid species from Lake Tanganyika. The cichlid fish
Neolamprologus meeli
displays a distinct dorsal color pattern, with black and white stripes along the edges of the dorsal fin and of the dorsal half of the caudal fin, corresponding with differences in melanophore density. To elucidate the molecular mechanisms controlling the differences in dorsal and ventral color patterning in the fins, we quantitatively assessed the expression of 15 candidate target genes involved in adult zebrafish pigmentation and stripe formation. For reference gene validation, we screened the expression stability of seven widely expressed genes across the investigated tissue samples and identified
tbp
as appropriate reference. Relative expression levels of the candidate target genes were compared between the dorsal, striped fin regions and the corresponding uniform, grey-colored regions in the anal and ventral caudal fin. Dorso-ventral expression differences, with elevated levels in both white and black stripes, were observed in two genes, the melanosome protein coding gene
pmel
and in
igsf11
, which affects melanophore adhesion, migration and survival. Next, we predicted potential shared upstream regulators of
pmel
and
igsf11
. Testing the expression patterns of six predicted transcriptions factors revealed dorso-ventral expression difference of
irf1
and significant, negative expression correlation of
irf1
with both
pmel
and
igsf11
. Based on these results, we propose
pmel
,
igsf11
and
irf1
as likely components of the genetic mechanism controlling distinct dorso-ventral color patterns in
N. meeli
fins.
Title: A gene expression study of dorso-ventrally restricted pigment pattern in adult fins of
Neolamprologus meeli
, an African cichlid species
Description:
Fish color patterns are among the most diverse phenotypic traits found in the animal kingdom.
Understanding the molecular and cellular mechanisms that control in chromatophore distribution and pigmentation underlying this diversity is a major goal in developmental and evolutionary biology, which has predominantly been pursued in the zebrafish model system.
Here, we apply results from zebrafish work to study a naturally occurring color pattern phenotype in the fins of an African cichlid species from Lake Tanganyika.
The cichlid fish
Neolamprologus meeli
displays a distinct dorsal color pattern, with black and white stripes along the edges of the dorsal fin and of the dorsal half of the caudal fin, corresponding with differences in melanophore density.
To elucidate the molecular mechanisms controlling the differences in dorsal and ventral color patterning in the fins, we quantitatively assessed the expression of 15 candidate target genes involved in adult zebrafish pigmentation and stripe formation.
For reference gene validation, we screened the expression stability of seven widely expressed genes across the investigated tissue samples and identified
tbp
as appropriate reference.
Relative expression levels of the candidate target genes were compared between the dorsal, striped fin regions and the corresponding uniform, grey-colored regions in the anal and ventral caudal fin.
Dorso-ventral expression differences, with elevated levels in both white and black stripes, were observed in two genes, the melanosome protein coding gene
pmel
and in
igsf11
, which affects melanophore adhesion, migration and survival.
Next, we predicted potential shared upstream regulators of
pmel
and
igsf11
.
Testing the expression patterns of six predicted transcriptions factors revealed dorso-ventral expression difference of
irf1
and significant, negative expression correlation of
irf1
with both
pmel
and
igsf11
.
Based on these results, we propose
pmel
,
igsf11
and
irf1
as likely components of the genetic mechanism controlling distinct dorso-ventral color patterns in
N.
meeli
fins.
Related Results
Genome-wide protein phylogenies for four African cichlid species
Genome-wide protein phylogenies for four African cichlid species
ABSTRACT
Background
The thousands of species of closely related cichlid fishes in the great lakes of East Africa are a powerful...
Understanding multi-fin swimming and maneuvering to develop highly capable swimming robots
Understanding multi-fin swimming and maneuvering to develop highly capable swimming robots
Fish swim underwater with levels of agility and maneuverability that far exceed those of contemporary unmanned underwater vehicles (UUVs). While UUVs primarily rely on rectilinear ...
Ancient origin of the dorso-ventral patterning system of vertebrate paired fins
Ancient origin of the dorso-ventral patterning system of vertebrate paired fins
Abstract
The origin of paired fins was a major event in early vertebrate history that fuelled the adaptive radiation of the gnathostome clade. Ev...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Solidification Enhancement in a Triple-Tube Latent Heat Energy Storage System Using Twisted Fins
Solidification Enhancement in a Triple-Tube Latent Heat Energy Storage System Using Twisted Fins
This work evaluates the influence of combining twisted fins in a triple-tube heat exchanger utilised for latent heat thermal energy storage (LHTES) in three-dimensional numerical s...
Early Ontogeny of Cichlids Using Selected Species as Examples
Early Ontogeny of Cichlids Using Selected Species as Examples
The purpose of this study was to characterize in detail the reproductive strategy, course of embryogenesis, and development of larvae in three species of fishes of the genus Cichla...
Ancestral and derived attributes of the dlx gene repertoire, cluster structure and expression patterns in an African cichlid fish
Ancestral and derived attributes of the dlx gene repertoire, cluster structure and expression patterns in an African cichlid fish
Abstract
Background
Cichlid fishes have undergone rapid, expansive evolutionary radiations that are manifested in the diversification of their tr...
The Prognostic Impact of High MEL1 Gene Expression in Pediatric Acute Myeloid Leukemia
The Prognostic Impact of High MEL1 Gene Expression in Pediatric Acute Myeloid Leukemia
Abstract
Background
Acute myeloid leukemia (AML) is a complex disease caused by mutations, epigenetic modifications, and deregulated expression of gen...

