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

Ontogeny of the anuran urostyle and the developmental context of evolutionary novelty

View through CrossRef
Developmental novelties often underlie the evolutionary origins of key metazoan features. The anuran urostyle, which evolved nearly 200 MYA, is one such structure. It forms as the tail regresses during metamorphosis, when locomotion changes from an axial-driven mode in larvae to a limb-driven one in adult frogs. The urostyle comprises of a coccyx and a hypochord. The coccyx forms by fusion of caudal vertebrae and has evolved repeatedly across vertebrates. However, the contribution of an ossifying hypochord to the coccyx in anurans is unique among vertebrates and remains a developmental enigma. Here, we focus on the developmental changes that lead to the anuran urostyle, with an emphasis on understanding the ossifying hypochord. We find that the coccyx and hypochord have two different developmental histories: First, the development of the coccyx initiates before metamorphic climax whereas the ossifying hypochord undergoes rapid ossification and hypertrophy; second, thyroid hormone directly affects hypochord formation and appears to have a secondary effect on the coccygeal portion of the urostyle. The embryonic hypochord is known to play a significant role in the positioning of the dorsal aorta (DA), but the reason for hypochordal ossification remains obscure. Our results suggest that the ossifying hypochord plays a role in remodeling the DA in the newly forming adult body by partially occluding the DA in the tail. We propose that the ossifying hypochord-induced loss of the tail during metamorphosis has enabled the evolution of the unique anuran bauplan .
Title: Ontogeny of the anuran urostyle and the developmental context of evolutionary novelty
Description:
Developmental novelties often underlie the evolutionary origins of key metazoan features.
The anuran urostyle, which evolved nearly 200 MYA, is one such structure.
It forms as the tail regresses during metamorphosis, when locomotion changes from an axial-driven mode in larvae to a limb-driven one in adult frogs.
The urostyle comprises of a coccyx and a hypochord.
The coccyx forms by fusion of caudal vertebrae and has evolved repeatedly across vertebrates.
However, the contribution of an ossifying hypochord to the coccyx in anurans is unique among vertebrates and remains a developmental enigma.
Here, we focus on the developmental changes that lead to the anuran urostyle, with an emphasis on understanding the ossifying hypochord.
We find that the coccyx and hypochord have two different developmental histories: First, the development of the coccyx initiates before metamorphic climax whereas the ossifying hypochord undergoes rapid ossification and hypertrophy; second, thyroid hormone directly affects hypochord formation and appears to have a secondary effect on the coccygeal portion of the urostyle.
The embryonic hypochord is known to play a significant role in the positioning of the dorsal aorta (DA), but the reason for hypochordal ossification remains obscure.
Our results suggest that the ossifying hypochord plays a role in remodeling the DA in the newly forming adult body by partially occluding the DA in the tail.
We propose that the ossifying hypochord-induced loss of the tail during metamorphosis has enabled the evolution of the unique anuran bauplan .

Related Results

Anuran altitudinal distribution in an Atlantic Forest hill: band area and Rapoport effect driving it
Anuran altitudinal distribution in an Atlantic Forest hill: band area and Rapoport effect driving it
We evaluated how anuran species richness and composition changed along altitude, whether species distribution was consistent with predictions of the mid-domain effect, Rapoport eff...
Comparative genomics reveals insights into anuran genome size evolution
Comparative genomics reveals insights into anuran genome size evolution
Abstract Background Amphibians, particularly anurans, display an enormous variation in genome size. Due to the unavailability of whole genome datase...
Inferring the dynamics of selective constraints across complex ontogenies
Inferring the dynamics of selective constraints across complex ontogenies
Most organisms undergo a series of complex phenotypic changes throughout their life cycles that allow them to meet the demands of different niches throughout ontogeny. Theory sugge...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Evolution and the cell
Evolution and the cell
Genotype to phenotype, and back again Evolution is intimately linked to biology at the cellular scale- evolutionary processes act on the very genetic material that is carried and ...
Evolutionary developmental biology
Evolutionary developmental biology
Evolutionary developmental biology is the study of evolutionary change (called phylogeny) as it is revealed through the embryological development of individual organisms (called on...
Developmental examination
Developmental examination
All doctors working with children should have good knowledge of normal developmental milestones, as early diagnosis of developmental problems and appropriate intervention is desira...
Contextual, Taphonomic, and Paleoecological Insights from Anurans on Tiwanaku Sites in Southern Peru
Contextual, Taphonomic, and Paleoecological Insights from Anurans on Tiwanaku Sites in Southern Peru
We examine the processes that resulted in the deposition of bones of at least three anuran genera on four archaeological sites associated with the Tiwanaku culture occupied between...

Back to Top