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result(s) for
"Witharana, Eranga Pawani"
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Subfamily evolution analysis using nuclear and chloroplast data from the same reads
2025
The chloroplast (cp) genome is a widely used tool for exploring plant evolutionary relationships, yet its effectiveness in fully resolving these relationships remains uncertain. Integrating cp genome data with nuclear DNA information offers a more comprehensive view but often requires separate datasets. In response, we employed the same raw read sequencing data to construct cp genome-based trees and nuclear DNA phylogenetic trees using Read2Tree, a cost-efficient method for extracting conserved nuclear gene sequences from raw read data, focusing on the Aurantioideae subfamily, which includes
Citrus
and its relatives. The resulting nuclear DNA trees were consistent with existing nuclear evolutionary relationships derived from high-throughput sequencing, but diverged from cp genome-based trees. To elucidate the underlying complex evolutionary processes causing these discordances, we implemented an integrative workflow that utilized multiple alignments of each gene generated by Read2Tree, in conjunction with other phylogenomic methods. Our analysis revealed that incomplete lineage sorting predominantly drives these discordances, while introgression and ancient introgression also contribute to topological discrepancies within certain clades. This study underscores the cost-effectiveness of using the same raw sequencing data for both cp and nuclear DNA analyses in understanding plant evolutionary relationships.
Journal Article
Characterization and organelle genome sequencing of Pyropia species from Myanmar
2023
Pyropia
is a genus comprising red algae of the Bangiaceae family that is commonly found in intertidal zones worldwide. However, understanding of
Pyropia
species that are prone to tropical regions remains limited despite recent breakthroughs in genomic research. Within the realm of
Pyropia s
pecies thriving in tropical regions,
P. vietnamensis
stands out as a widely recognized species. In this study, we aimed to investigate
Pyropia
species in the southwest coast of Myanmar using physiological and molecular approaches, culture-based analyses, chloroplast
rbcL
and nuclear SSU gene sequencing, and whole chloroplast and mitochondrial genome sequencing. Physiological analysis showed that the Myanmar samples were more heat-tolerant than their Japanese counterparts, including those of subtropical origin. Additionally, molecular characterization revealed that the Myanmar samples were closely related to
P. vietnamensis
from India. This study is the first to sequence the chloroplast and mitochondrial genomes of
Pyropia
species from tropical regions. A unique deletion event was observed within a ribosomal RNA gene cluster in the chloroplast genome of the studied
Pyropia
species, which is a deviation from the usual characteristics of most
Pyropia
species. This study improves current understanding of the physiological and molecular characteristics of this comparatively understudied
Pyropia
species that grows in tropical regions.
Journal Article
Subfamily evolution analysis using nuclear and chloroplast data from the same reads
by
Kotoda, Nobuhiro
,
Nagano, Yukio
,
Jayawardana, Nadeeka U
in
Aurantioideae
,
Chloroplasts
,
Classification
2024
The chloroplast (cp) genome is a widely used tool for exploring plant evolutionary relationships, yet its effectiveness in fully resolving these relationships remains uncertain. Integrating cp genome data with nuclear DNA information offers a more comprehensive view but often requires separate datasets. In response, we employed the same raw read sequencing data to construct cp genome-based trees and nuclear DNA phylogenetic trees using Read2Tree, a cost-efficient method for extracting conserved nuclear gene sequences from raw read data, focusing on the Aurantioideae subfamily, which includes Citrus and its relatives. The resulting nuclear DNA trees were consistent with existing nuclear evolutionary relationships derived from high-throughput sequencing, but diverged from cp genome-based trees. To elucidate the underlying complex evolutionary processes causing these discordances, we implemented an integrative workflow that utilized multiple alignments of each gene generated by Read2Tree, in conjunction with other phylogenomic methods. Our analysis revealed that incomplete lineage sorting predominantly drives these discordances, while introgression and ancient introgression also contribute to topological discrepancies within certain clades. This study underscores the cost-effectiveness of using the same raw sequencing data for both cp and nuclear DNA analyses in understanding plant evolutionary relationships.Competing Interest StatementThe authors have declared no competing interest.Footnotes* Revisions in the Peer Review Process of Scientific Journal