Javascript must be enabled to continue!
Tracing the vertebrate selenoproteome evolution reveals expansions in ray-finned fishes and convergent depletions in tetrapods
View through CrossRef
ABSTRACT
Selenoproteins incorporate the rare selenium-containing amino acid selenocysteine (Sec) and play crucial roles for redox homeostasis, stress response, and hormone regulation. Sec is inserted by co-translational recoding of the UGA codon, normally a stop. As a consequence, selenoproteins are often misannotated in public databases and require specialized bioinformatic methods and resources.
Here, we present a refined characterization of the composition and evolution of the vertebrate selenoproteome. Based on analyses of 19 gene families across hundreds of genomes, we show that extant selenoproteomes were shaped by extensive gene duplications (56 selenoproteins), losses (50), and Sec-to-cysteine (Cys) conversions (21). Tetrapods including mammals encode 24-25 selenoproteins, with variations in 6 families. Notably, the same genes underwent convergent evolutionary events in multiple tetrapods, namely Sec-to-Cys substitutions (
SELENOU1
,
GPX6
) and gene losses (
SELENOV
). In contrast, ray-finned fish exhibit larger and more dynamic selenoproteomes, reinforcing the hypothesis that the selective advantage of Sec is stronger in aquatic environments. We detected selenoprotein duplications spread across the actinopterygian clade involving 13 families, mainly involved in antioxidant defense. The richest selenoproteomes were found in Salmonidae and Cyprinoidei fish with 56 and 44 selenoproteins, respectively, owing to whole genome duplications. Among our findings, the
SELENOP
family stands out in lampreys, carrying up to an unprecedented 162 UGAs putatively recoded to Sec.
Our study presents the most comprehensive evolutionary map of vertebrate selenoproteins to date and delineates the specific selenoproteome of each lineage, establishing a foundational framework for selenium biology research in the era of biodiversity genomics.
Title: Tracing the vertebrate selenoproteome evolution reveals expansions in ray-finned fishes and convergent depletions in tetrapods
Description:
ABSTRACT
Selenoproteins incorporate the rare selenium-containing amino acid selenocysteine (Sec) and play crucial roles for redox homeostasis, stress response, and hormone regulation.
Sec is inserted by co-translational recoding of the UGA codon, normally a stop.
As a consequence, selenoproteins are often misannotated in public databases and require specialized bioinformatic methods and resources.
Here, we present a refined characterization of the composition and evolution of the vertebrate selenoproteome.
Based on analyses of 19 gene families across hundreds of genomes, we show that extant selenoproteomes were shaped by extensive gene duplications (56 selenoproteins), losses (50), and Sec-to-cysteine (Cys) conversions (21).
Tetrapods including mammals encode 24-25 selenoproteins, with variations in 6 families.
Notably, the same genes underwent convergent evolutionary events in multiple tetrapods, namely Sec-to-Cys substitutions (
SELENOU1
,
GPX6
) and gene losses (
SELENOV
).
In contrast, ray-finned fish exhibit larger and more dynamic selenoproteomes, reinforcing the hypothesis that the selective advantage of Sec is stronger in aquatic environments.
We detected selenoprotein duplications spread across the actinopterygian clade involving 13 families, mainly involved in antioxidant defense.
The richest selenoproteomes were found in Salmonidae and Cyprinoidei fish with 56 and 44 selenoproteins, respectively, owing to whole genome duplications.
Among our findings, the
SELENOP
family stands out in lampreys, carrying up to an unprecedented 162 UGAs putatively recoded to Sec.
Our study presents the most comprehensive evolutionary map of vertebrate selenoproteins to date and delineates the specific selenoproteome of each lineage, establishing a foundational framework for selenium biology research in the era of biodiversity genomics.
Related Results
THE ORIGIN OF THE TETRAPODS
THE ORIGIN OF THE TETRAPODS
Summary1. Only Crossopterygii* and Dipnoi can be considered as possible tetrapod ancestors. Early tetrapods converge on Stegocephalia and allied groups in early Carboniferous time....
Historical Changes in Large River Fish Assemblages of the Americas
Historical Changes in Large River Fish Assemblages of the Americas
<em>Abstract.</em>—Recent decades have seen substantial changes in fish assemblages in rivers of peninsular Florida. The most striking change has involved the addition ...
Some results on beta-expansions and generalized Thue-Morse sequences
Some results on beta-expansions and generalized Thue-Morse sequences
Quelques résultats sur les bêta-expansions et sur les suites de Thue-Morse généralisées
Cette thèse se compose de trois chapitres comprenant dix sections, qui se co...
The evolution of fitness during range expansions in different dimensions
The evolution of fitness during range expansions in different dimensions
ABSTRACT
We develop a set of programs – the range expansions simulation kit (RESK) – to efficiently simulate range expansions of populations on a square lattice in ...
Individual variation in dispersal, and its sources, shape the fate of pushed vs. pulled range expansions
Individual variation in dispersal, and its sources, shape the fate of pushed vs. pulled range expansions
AbstractEcological and evolutionary dynamics of range expansions are shaped by both dispersal and population growth. Accordingly, density-dependence in either dispersal or growth c...
Principles and applications of pencil tracing
Principles and applications of pencil tracing
Pencil tracing, a new approach to ray tracing, is introduced for faster image synthesis with more physical fidelity. The paraxial approximation theory for efficiently tracing a pen...
Evolution and Functional Diversification of the GLI Family of Transcription Factors in Vertebrates
Evolution and Functional Diversification of the GLI Family of Transcription Factors in Vertebrates
Background
In vertebrates the “SONIC HEDGEHOG” signalling pathway has been implicated in cell-fate determination, proliferation and the patterning of many diffe...

