Javascript must be enabled to continue!
An explanatory evo-devo model for the developmental hourglass
View through CrossRef
The "developmental hourglass'' describes a pattern of increasing morphological divergence towards earlier and later embryonic development, separated by a period of significant conservation across distant species (the "phylotypic stage''). Recent studies have found evidence in support of the hourglass effect at the genomic level. For instance, the phylotypic stage expresses the oldest and most conserved transcriptomes. However, the regulatory mechanism that causes the hourglass pattern remains an open question. Here, we use an evolutionary model of regulatory gene interactions during development to identify the conditions under which the hourglass effect can emerge in a general setting. The model focuses on the hierarchical gene regulatory network that controls the developmental process, and on the evolution of a population under random perturbations in the structure of that network. The model predicts, under fairly general assumptions, the emergence of an hourglass pattern in the structure of a temporal representation of the underlying gene regulatory network. The evolutionary age of the corresponding genes also follows an hourglass pattern, with the oldest genes concentrated at the hourglass waist. The key behind the hourglass effect is that developmental regulators should have an increasingly specific function as development progresses. Analysis of developmental gene expression profiles from
Drosophila melanogaster
and
Arabidopsis thaliana
provide consistent results with our theoretical predictions.
Title: An explanatory evo-devo model for the developmental hourglass
Description:
The "developmental hourglass'' describes a pattern of increasing morphological divergence towards earlier and later embryonic development, separated by a period of significant conservation across distant species (the "phylotypic stage'').
Recent studies have found evidence in support of the hourglass effect at the genomic level.
For instance, the phylotypic stage expresses the oldest and most conserved transcriptomes.
However, the regulatory mechanism that causes the hourglass pattern remains an open question.
Here, we use an evolutionary model of regulatory gene interactions during development to identify the conditions under which the hourglass effect can emerge in a general setting.
The model focuses on the hierarchical gene regulatory network that controls the developmental process, and on the evolution of a population under random perturbations in the structure of that network.
The model predicts, under fairly general assumptions, the emergence of an hourglass pattern in the structure of a temporal representation of the underlying gene regulatory network.
The evolutionary age of the corresponding genes also follows an hourglass pattern, with the oldest genes concentrated at the hourglass waist.
The key behind the hourglass effect is that developmental regulators should have an increasingly specific function as development progresses.
Analysis of developmental gene expression profiles from
Drosophila melanogaster
and
Arabidopsis thaliana
provide consistent results with our theoretical predictions.
Related Results
Evolutionary Developmental Biology
Evolutionary Developmental Biology
Evolutionary developmental biology, or evo-devo, is the study of the reciprocal relationships between ontogenetic development and evolutionary processes. This still relatively new ...
Evolutionary Developmental Biology (Evo-Devo): Past, Present, and Future
Evolutionary Developmental Biology (Evo-Devo): Past, Present, and Future
AbstractEvolutionary developmental biology (evo–devo) is that part of biology concerned with how changes in embryonic development during single generations relate to the evolutiona...
Evo Devo and cognitive science
Evo Devo and cognitive science
AbstractEvo Devo (evolutionary developmental) biology forges a synthesis of evolutionary and developmental processes. Evo Devo is the result of collaborative work of evolutionary a...
Developmental hourglass: Verification by numerical evolution and elucidation by dynamical-systems theory
Developmental hourglass: Verification by numerical evolution and elucidation by dynamical-systems theory
Abstract
Determining the general laws between evolution and development is a fundamental biological challenge. Developmental hourglasses have attracted increased at...
An explanatory evo-devo model for the developmental hourglass
An explanatory evo-devo model for the developmental hourglass
The "developmental hourglass'' describes a pattern of increasing morphological divergence towards earlier and later embryonic development, separated by a period of significant cons...
Evodiamine targets ZO-1 to ameliorate cholestatic liver disease: intestinal homeostasis as the core mediator of gut-liver axis repair and bile acid metabolism remodeling
Evodiamine targets ZO-1 to ameliorate cholestatic liver disease: intestinal homeostasis as the core mediator of gut-liver axis repair and bile acid metabolism remodeling
BackgroundCholestatic liver disease (CLD) is a complex and multifactorial chronic disorder that requires a systematic and integrative approach for effective management. Evodiamine ...
From Embryology to Evo-Devo
From Embryology to Evo-Devo
Historians, philosophers, sociologists, and biologists explore the history of the idea that embryological development and evolution are linked.
Although we now know ...

