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

Resolving Rapid Radiations Within Angiosperm Families Using Anchored Phylogenomics

View through CrossRef
Abstract Despite the promise that molecular data would provide a seemingly unlimited source of independent characters, many plant phylogenetic studies are based on only two regions, the plastid genome and nuclear ribosomal DNA (nrDNA). Their popularity can be explained by high copy numbers and universal PCR primers that make their sequences easily amplified and converted into parallel datasets. Unfortunately, their utility is limited by linked loci and limited characters resulting in low confidence in the accuracy of phylogenetic estimates, especially when rapid radiations occur. In another contribution on anchored phylogenomics in angiosperms, we presented flowering plant-specific anchored enrichment probes for hundreds of conserved nuclear genes and demonstrated their use at the level of all angiosperms. In this contribution, we focus on a common problem in phylogenetic reconstructions below the family level: weak or unresolved backbone due to rapid radiations (≤ 10 million years) followed by long divergence, using the Cariceae-Dulichieae-Scirpeae clade (CDS, Cyperaceae) as a test case. By comparing our nuclear matrix of 461 genes to a typical Sanger-sequence dataset consisting of a few plastid genes (matK, ndhF) and an nrDNA marker (ETS), we demonstrate that our nuclear data is fully compatible with the Sanger dataset and resolves short backbone internodes with high support in both concatenated and coalescence-based analyses. In addition, we show that nuclear gene tree incongruence is inversely proportional to phylogenetic information content, indicating that incongruence is mostly due to gene tree estimation error. This suggests that large numbers of conserved nuclear loci could produce more accurate trees than sampling rapidly evolving regions prone to saturation and long-branch attraction. The robust phylogenetic estimates obtained here, and high congruence with previous morphological and molecular analyses, are strong evidence for a complete tribal revision of CDS. The anchored hybrid enrichment probes used in this study should be similarly effective in other flowering plant groups. [Carex, coalescent based species tree, flowering plants, low-copy nuclear genes, low-level phylogenetics, universal hybrid enrichment probes]
Title: Resolving Rapid Radiations Within Angiosperm Families Using Anchored Phylogenomics
Description:
Abstract Despite the promise that molecular data would provide a seemingly unlimited source of independent characters, many plant phylogenetic studies are based on only two regions, the plastid genome and nuclear ribosomal DNA (nrDNA).
Their popularity can be explained by high copy numbers and universal PCR primers that make their sequences easily amplified and converted into parallel datasets.
Unfortunately, their utility is limited by linked loci and limited characters resulting in low confidence in the accuracy of phylogenetic estimates, especially when rapid radiations occur.
In another contribution on anchored phylogenomics in angiosperms, we presented flowering plant-specific anchored enrichment probes for hundreds of conserved nuclear genes and demonstrated their use at the level of all angiosperms.
In this contribution, we focus on a common problem in phylogenetic reconstructions below the family level: weak or unresolved backbone due to rapid radiations (≤ 10 million years) followed by long divergence, using the Cariceae-Dulichieae-Scirpeae clade (CDS, Cyperaceae) as a test case.
By comparing our nuclear matrix of 461 genes to a typical Sanger-sequence dataset consisting of a few plastid genes (matK, ndhF) and an nrDNA marker (ETS), we demonstrate that our nuclear data is fully compatible with the Sanger dataset and resolves short backbone internodes with high support in both concatenated and coalescence-based analyses.
In addition, we show that nuclear gene tree incongruence is inversely proportional to phylogenetic information content, indicating that incongruence is mostly due to gene tree estimation error.
This suggests that large numbers of conserved nuclear loci could produce more accurate trees than sampling rapidly evolving regions prone to saturation and long-branch attraction.
The robust phylogenetic estimates obtained here, and high congruence with previous morphological and molecular analyses, are strong evidence for a complete tribal revision of CDS.
The anchored hybrid enrichment probes used in this study should be similarly effective in other flowering plant groups.
[Carex, coalescent based species tree, flowering plants, low-copy nuclear genes, low-level phylogenetics, universal hybrid enrichment probes].

Related Results

Family Pediatrics
Family Pediatrics
ABSTRACT/EXECUTIVE SUMMARYWhy a Task Force on the Family?The practice of pediatrics is unique among medical specialties in many ways, among which is the nearly certain presence of ...
Widespread evolution of poricidal flowers: A striking example of morphological convergence across flowering plants
Widespread evolution of poricidal flowers: A striking example of morphological convergence across flowering plants
AbstractThe evolution of tube-like floral morphologies that control pollen release via small openings (functionally poricidal flowers) represents a taxonomically and geographically...
Pterosaur assemblages of the Jehol Biota and their implication for the Early Cretaceous pterosaur radiation
Pterosaur assemblages of the Jehol Biota and their implication for the Early Cretaceous pterosaur radiation
AbstractThe Early Cretaceous Jehol Biota from northeast China is well known for many beautifully preserved feathered dinosaurs, early birds and angiosperms. A great number of ptero...
Development of a hardened processor for harsh environment applications on RISC-V architecture.
Development of a hardened processor for harsh environment applications on RISC-V architecture.
Développement d'un processeur durci sur architecture RISC-V pour applications en environnement sévère. Cette thèse explore le développement et la caractérisation du...
Modélisation des ceintures de radiations de Saturne
Modélisation des ceintures de radiations de Saturne
Les ceintures de radiation provoquent des dégâts irréversibles sur les satellites les traversant, détériorant ainsi les instruments de mesure embarqués. Les étudier est utile au dé...
A large-scale species level dated angiosperm phylogeny for evolutionary and ecological analyses
A large-scale species level dated angiosperm phylogeny for evolutionary and ecological analyses
Phylogenies are a central and indispensable tool for evolutionary and ecological research. Even though most angiosperm families are well investigated from a phylogenetic point of v...
A large-scale species level dated angiosperm phylogeny for evolutionary and ecological analyses
A large-scale species level dated angiosperm phylogeny for evolutionary and ecological analyses
Abstract Phylogenies are a central and indispensable tool for evolutionary and ecological research. Even though most angiosperm families are well...

Back to Top