Abundant evidence indicates that developmental evolution, the foundation of morphological evolution, is based on changes in gene function. Over the past decade a consensus has developed that transcriptional regulation, acting through enhancer sequences, is the primary level of evolutionary significant change. Here we propose that other regulatory levels are probably as important as enhancers in developmental evolution. We also explain why these alternative regulatory levels might have been neglected, and briefly discuss ways to test our hypothesis
AbstractAt present several entirely different explanatory approaches compete to illuminate the mecha...
In considering the mechanisms which could have led to the amazing variety of biological structures i...
Biologists have long sought to understand which genes and what kinds of changes in their sequences a...
Major advances have been made in understanding the evolution of transcriptional regulation using mic...
How have animals evolved new body designs (morphological evolution)? This requires explanations both...
Metazoan genomes contain tens of thousands of regions for which there has been recent experimental e...
Enhancers are regulatory DNA sequences that control gene spatial-temporal patterning based on their ...
Recently evolved enhancers dominate mammalian gene regulatory landscapes. Mostly exapted from ancest...
SummaryThe sequences of some gene regulatory elements diverge considerably, even between closely rel...
Comparative developmental evidence indicates that reorganizations in developmental gene regulatory n...
Promoters and enhancers-key controllers of gene expression-have long been distinguished from each ot...
An important tenet of evolutionary developmental biology (“evo devo”) is that adaptive mutations aff...
Cis-regulatory elements ( Abstract | Cis-regulatory sequences, such as enhancers and promoters, cont...
Efforts to understand the genetic basis of evolutionary change have concentrated on proteins and the...
<div><p>Evidence is mounting that the evolution of gene expression plays a major role in adaptation ...
AbstractAt present several entirely different explanatory approaches compete to illuminate the mecha...
In considering the mechanisms which could have led to the amazing variety of biological structures i...
Biologists have long sought to understand which genes and what kinds of changes in their sequences a...
Major advances have been made in understanding the evolution of transcriptional regulation using mic...
How have animals evolved new body designs (morphological evolution)? This requires explanations both...
Metazoan genomes contain tens of thousands of regions for which there has been recent experimental e...
Enhancers are regulatory DNA sequences that control gene spatial-temporal patterning based on their ...
Recently evolved enhancers dominate mammalian gene regulatory landscapes. Mostly exapted from ancest...
SummaryThe sequences of some gene regulatory elements diverge considerably, even between closely rel...
Comparative developmental evidence indicates that reorganizations in developmental gene regulatory n...
Promoters and enhancers-key controllers of gene expression-have long been distinguished from each ot...
An important tenet of evolutionary developmental biology (“evo devo”) is that adaptive mutations aff...
Cis-regulatory elements ( Abstract | Cis-regulatory sequences, such as enhancers and promoters, cont...
Efforts to understand the genetic basis of evolutionary change have concentrated on proteins and the...
<div><p>Evidence is mounting that the evolution of gene expression plays a major role in adaptation ...
AbstractAt present several entirely different explanatory approaches compete to illuminate the mecha...
In considering the mechanisms which could have led to the amazing variety of biological structures i...
Biologists have long sought to understand which genes and what kinds of changes in their sequences a...