Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

ladybird, a new component of the cardiogenic pathway in Drosophila required for diversification of heart precursors

View through CrossRef
ABSTRACT The embryonic heart precursors of Drosophila are arranged in a repeated pattern of segmental units. There is growing evidence that the development of individual elements of this pattern depends on both mesoderm intrinsic patterning information and inductive signals from the ectoderm. In this study, we demonstrate that two homeobox genes, ladybird early and ladybird late, are involved in the cardiogenic pathway in Drosophila. Their expression is specific to a subset of cardioblast and pericardial cell precursors and is critically dependent on mesodermal tinman function, epidermal Wingless signaling and the coordinate action of neurogenic genes. Negative regulation by hedgehog is required to restrict ladybird expression to two out of six cardioblasts in each hemisegment. Overexpression of ladybird causes a hyperplasia of heart precursors and alters the identity of even-skipped-positive pericardial cells. Loss of ladybird function leads to the opposite transformation, suggesting that ladybird participates in the determination of heart lineages and is required to specify the identities of subpopulations of heart cells. We find that both early Wingless signaling and ladybird-dependent late Wingless signaling are required for proper heart formation. Thus, we propose that ladybird plays a dual role in cardiogenesis: (i) during the early phase, it is involved in specification of a segmental subset of heart precursors as a component of the cardiogenic tinman-cascade and (ii) during the late phase, it is needed for maintaining wingless activity and thereby sustaining the heart pattern process. These events result in a diversification of heart cell identities within each segment.
Title: ladybird, a new component of the cardiogenic pathway in Drosophila required for diversification of heart precursors
Description:
ABSTRACT The embryonic heart precursors of Drosophila are arranged in a repeated pattern of segmental units.
There is growing evidence that the development of individual elements of this pattern depends on both mesoderm intrinsic patterning information and inductive signals from the ectoderm.
In this study, we demonstrate that two homeobox genes, ladybird early and ladybird late, are involved in the cardiogenic pathway in Drosophila.
Their expression is specific to a subset of cardioblast and pericardial cell precursors and is critically dependent on mesodermal tinman function, epidermal Wingless signaling and the coordinate action of neurogenic genes.
Negative regulation by hedgehog is required to restrict ladybird expression to two out of six cardioblasts in each hemisegment.
Overexpression of ladybird causes a hyperplasia of heart precursors and alters the identity of even-skipped-positive pericardial cells.
Loss of ladybird function leads to the opposite transformation, suggesting that ladybird participates in the determination of heart lineages and is required to specify the identities of subpopulations of heart cells.
We find that both early Wingless signaling and ladybird-dependent late Wingless signaling are required for proper heart formation.
Thus, we propose that ladybird plays a dual role in cardiogenesis: (i) during the early phase, it is involved in specification of a segmental subset of heart precursors as a component of the cardiogenic tinman-cascade and (ii) during the late phase, it is needed for maintaining wingless activity and thereby sustaining the heart pattern process.
These events result in a diversification of heart cell identities within each segment.

Related Results

ladybird determines cell fate decisions during diversification of Drosophila somatic muscles
ladybird determines cell fate decisions during diversification of Drosophila somatic muscles
ABSTRACT In the mesoderm of Drosophila embryos, a defined number of cells segregate as progenitors of individual body wall muscles. Progenitors and their progeny fou...
Biological and Ecological Characteristics of the Ladybird Beetle (Lemnia biplagiata Swartz, 1808) (Coccinellidae: Coleoptera)
Biological and Ecological Characteristics of the Ladybird Beetle (Lemnia biplagiata Swartz, 1808) (Coccinellidae: Coleoptera)
This paper studies the ladybird beetle in the laboratory at two average temperature levels:  22.2 ± 0.02 and 30.7 ± 0.03oC with average humidities of 69.5 ± 0.05 and 86.8 ± 0.06%, ...
Dietary Ecology of Predatory Insects Examining the Role of Prey and Non Prey Foods of Ladybird Beetle
Dietary Ecology of Predatory Insects Examining the Role of Prey and Non Prey Foods of Ladybird Beetle
Ladybird beetles consume a wide variety of non-prey items in their natural habitats, including aphids, fruits, plants, fungi, honeydew, and nectar. These non-prey foods play severa...
Export concentration and diversification impact on economic growth in the developed and developing countries of the world
Export concentration and diversification impact on economic growth in the developed and developing countries of the world
There is much evidence that export diversity has a positive effect on economic growth, but there is some evidence that the concentration of exports may be also related to economic ...
What is the evidence for IABP in STEMI with and without cardiogenic shock?
What is the evidence for IABP in STEMI with and without cardiogenic shock?
Intraaortic balloon pump (IABP) is the most widely used left ventricular support device in a variety of indications. This review focuses on the current literature and discusses the...
Effects of environmental factors and biotic interactions on diversification of Neotropical groups
Effects of environmental factors and biotic interactions on diversification of Neotropical groups
Effets des facteurs environnementaux et des interactions biotiques sur la diversification de groupes néotropicaux Cette thèse s’attèle à comprendre comment les fact...

Back to Top