Javascript must be enabled to continue!
A comparative analysis of planarian genomes reveals regulatory conservation in the face of rapid structural divergence
View through CrossRef
Abstract
The planarian
Schmidtea mediterranea
can regenerate its entire body from small tissue fragments and is studied as regeneration model species. The assembly and functional analysis of planarian genomes has proven challenging due its high A/T content (70% A/T), repetitive nature, and limited transferability of routine laboratory protocols due to their divergent biochemistry. Only few and often fragmented genome assemblies are currently available, and open challenges include the provision of well-annotated chromosome-scale reference assemblies of the model species and other planarians for a comparative genome evolution perspective. Here we report a haplotype-phased, chromosome-scale genome assembly and high-quality gene annotations of the sexual S2 strain of
S. mediterranea
and provide putative regulatory region annotations via optimized ATAC-seq and ChIP-seq protocols. To additionally leverage sequence conservation for regulatory element annotations, we generated chromosome-scale genome assemblies and chromatin accessibility data for the three closest relatives of
S. mediterranea
:
S. polychroa
,
S. nova
, and
S. lugubris
. We find substantial divergence in protein-coding sequences and regulatory regions, yet reveal remarkable conservation in ChIP-mark bearing open chromatin regions identified as promoters and enhancers in
S. mediterranea
. The resulting high-confidence set of evolutionary conserved enhancers and promoters provides a valuable resource for the analysis of gene regulatory circuits and their evolution within the taxon. In addition, our four chromosome-scale genome assemblies provide a first comparative perspective on planarian genome evolution. Our analyses reveal frequent retrotransposon-associated chromosomal inversions and inter-chromosomal translocations that lead to a degradation of synteny across the genus. Interestingly, we further find independent and near-complete losses of the ancestral metazoan synteny across
Schmidtea
and two other flatworm groups, indicating that platyhelminth genomes largely evolve without syntenic constraints. Our work provides valuable genome resources for the planarian research community and sets a foundation for the comparative genomics of planarians. We reveal a contrast between the fast structural evolution of planarian genomes and the conservation of their regulatory elements, suggesting a unique genome evolution in flatworms where gene positioning may not be essential.
Title: A comparative analysis of planarian genomes reveals regulatory conservation in the face of rapid structural divergence
Description:
Abstract
The planarian
Schmidtea mediterranea
can regenerate its entire body from small tissue fragments and is studied as regeneration model species.
The assembly and functional analysis of planarian genomes has proven challenging due its high A/T content (70% A/T), repetitive nature, and limited transferability of routine laboratory protocols due to their divergent biochemistry.
Only few and often fragmented genome assemblies are currently available, and open challenges include the provision of well-annotated chromosome-scale reference assemblies of the model species and other planarians for a comparative genome evolution perspective.
Here we report a haplotype-phased, chromosome-scale genome assembly and high-quality gene annotations of the sexual S2 strain of
S.
mediterranea
and provide putative regulatory region annotations via optimized ATAC-seq and ChIP-seq protocols.
To additionally leverage sequence conservation for regulatory element annotations, we generated chromosome-scale genome assemblies and chromatin accessibility data for the three closest relatives of
S.
mediterranea
:
S.
polychroa
,
S.
nova
, and
S.
lugubris
.
We find substantial divergence in protein-coding sequences and regulatory regions, yet reveal remarkable conservation in ChIP-mark bearing open chromatin regions identified as promoters and enhancers in
S.
mediterranea
.
The resulting high-confidence set of evolutionary conserved enhancers and promoters provides a valuable resource for the analysis of gene regulatory circuits and their evolution within the taxon.
In addition, our four chromosome-scale genome assemblies provide a first comparative perspective on planarian genome evolution.
Our analyses reveal frequent retrotransposon-associated chromosomal inversions and inter-chromosomal translocations that lead to a degradation of synteny across the genus.
Interestingly, we further find independent and near-complete losses of the ancestral metazoan synteny across
Schmidtea
and two other flatworm groups, indicating that platyhelminth genomes largely evolve without syntenic constraints.
Our work provides valuable genome resources for the planarian research community and sets a foundation for the comparative genomics of planarians.
We reveal a contrast between the fast structural evolution of planarian genomes and the conservation of their regulatory elements, suggesting a unique genome evolution in flatworms where gene positioning may not be essential.
Related Results
Primerjalna književnost na prelomu tisočletja
Primerjalna književnost na prelomu tisočletja
In a comprehensive and at times critical manner, this volume seeks to shed light on the development of events in Western (i.e., European and North American) comparative literature ...
A comparative analysis of planarian genomes reveals regulatory conservation in the face of rapid structural divergence
A comparative analysis of planarian genomes reveals regulatory conservation in the face of rapid structural divergence
Abstract
The planarian
Schmidtea mediterranea
is being studied as a model species for regeneration, b...
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...
Increased life expectancy of heart failure patients in a rural center by a multidisciplinary program
Increased life expectancy of heart failure patients in a rural center by a multidisciplinary program
Abstract
Funding Acknowledgements
Type of funding sources: None.
INTRODUCTION Patients with heart failure (HF)...
Does face-drawing experience enhance face processing abilities? Evidence from hidden Markov modeling of eye movements
Does face-drawing experience enhance face processing abilities? Evidence from hidden Markov modeling of eye movements
Recent research has suggested the importance of part-based information in face recognition in addition to global information. Consistent with this finding, eye movement patterns th...
Statistique des comparaisons de génomes complets bactériens
Statistique des comparaisons de génomes complets bactériens
La génomique comparative est l'étude des relations structurales et fonctionnelles entre des génomes appartenant à différentes souches ou espèces. Cette discipline offre ainsi la po...
Contributions of m6A RNA methylation to germline development in the planarian Schmidtea mediterranea
Contributions of m6A RNA methylation to germline development in the planarian Schmidtea mediterranea
N6-methyladenosine (m6A) is one of the most prevalent post-transcriptional modifications of eukaryotic RNA molecules. This post-transcriptional modification is essential in biologi...
Genomic characterization of the
C. tuberculostearicum
species complex, a ubiquitous member of the human skin microbiome
Genomic characterization of the
C. tuberculostearicum
species complex, a ubiquitous member of the human skin microbiome
ABSTRACT
Corynebacterium
is a predominant genus in the skin microbiome, yet its genetic diversity on skin is incompletely chara...

