Organellar Genome Analysis of the Red Alga Rhodymenia intricata (Rhodophyta, Florideophyceae) and Its Phylogenetic Analysis

Red algae (Rhodophyta) are an ancient lineage of photosynthetic eukaryotes that play important roles in marine ecosystems. However, genomic information for many species within the order Rhodymeniales remains limited, particularly for mitochondrial genomes. In this study, we sequenced, assembled, and analyzed the complete mitochondrial genome (mitogenome) of Rhodymenia intricata to investigate its genome organization, gene content, and phylogenetic position within Rhodymeniales. The mitogenome of R. intricata is a circular DNA molecule of 26,213 bp containing 49 genes, including 25 protein-coding genes (PCGs), 21 tRNA genes, and 3 rRNA genes. The genome shows a strong A + T bias (70.9%) and positive AT and GC skews, typical of red algal mitogenomes. Comparative analysis with other Rhodymeniales mitogenomes revealed generally conserved gene content and organization, with several lineage-specific features such as the presence of the rpl20 gene, an additional open reading frame (orf148), and three rRNA genes (rnl, rns, and rns5). Codon usage analysis indicated a preference for leucine and isoleucine codons and dominant start and stop codons (ATG and TAA). Phylogenetic analysis based on a concatenated dataset of 23 mitochondrial PCGs strongly supported the monophyly of Rhodymeniales and confirmed the close relationship between R. intricata and R. pseudopalmata. Overall, this study presents the first complete mitogenome of R. intricata and expands mitogenomic resources for Rhodymeniales, providing new insights into mitogenome evolution and phylogenetic relationships in red algae.

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Journal
Life
Published
2026-08-24
DOI
https://doi.org/10.3390/life16091391
Primary Topic
Marine and coastal plant biology
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article
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article

Organellar Genome Analysis of the Red Alga Rhodymenia intricata (Rhodophyta, Florideophyceae) and Its Phylogenetic Analysis

Jong‐Oh Kim, Rakesh E. Mutha, Kyunghoi Kim, K.Y. Lee et al.
Life
Marine and coastal plant biology
article

Organellar Genome Analysis of the Red Alga Rhodymenia intricata (Rhodophyta, Florideophyceae) and Its Phylogenetic Analysis

Jong‐Oh Kim, Rakesh E. Mutha, Kyunghoi Kim, K.Y. Lee, Maheshkumar Prakash Patil, Shin‐Ichi Kitamura, Ganesh Bansi Patil, Jeong Woo Cho, Yong Jun Park
article en

Abstract

Red algae (Rhodophyta) are an ancient lineage of photosynthetic eukaryotes that play important roles in marine ecosystems. However, genomic information for many species within the order Rhodymeniales remains limited, particularly for mitochondrial genomes. In this study, we sequenced, assembled, and analyzed the complete mitochondrial genome (mitogenome) of Rhodymenia intricata to investigate its genome organization, gene content, and phylogenetic position within Rhodymeniales. The mitogenome of R. intricata is a circular DNA molecule of 26,213 bp containing 49 genes, including 25 protein-coding genes (PCGs), 21 tRNA genes, and 3 rRNA genes. The genome shows a strong A + T bias (70.9%) and positive AT and GC skews, typical of red algal mitogenomes. Comparative analysis with other Rhodymeniales mitogenomes revealed generally conserved gene content and organization, with several lineage-specific features such as the presence of the rpl20 gene, an additional open reading frame (orf148), and three rRNA genes (rnl, rns, and rns5). Codon usage analysis indicated a preference for leucine and isoleucine codons and dominant start and stop codons (ATG and TAA). Phylogenetic analysis based on a concatenated dataset of 23 mitochondrial PCGs strongly supported the monophyly of Rhodymeniales and confirmed the close relationship between R. intricata and R. pseudopalmata. Overall, this study presents the first complete mitogenome of R. intricata and expands mitogenomic resources for Rhodymeniales, providing new insights into mitogenome evolution and phylogenetic relationships in red algae.

LifeVol. 16(9)
Mie University (JP), Korea Environmental Industry and Technology Institute (KR), Parul University (IN), Shri Vile Parle Kelavani Mandal (IN), Pukyong National University (KR)
Life below water
Openalex Percentile: Top 12%
Marine and coastal plant biology
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