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March 13, 2026Frontiers in Plant Science0 citationsOpen Access

Assembly and comparative analysis of the complete multichromosomal mitochondrial genome of an endangered orchid species, Calanthe sieboldii

JLJing LiJLJun LuLXLi Xiong

Key Points

  • The aim is to assemble and analyze the complete mitochondrial genome of the endangered orchid Calanthe sieboldii to understand its evolution.
  • Hybrid sequencing using Nanopore long reads and BGI short reads for denovo assembly.
  • Annotation of the mitogenome including protein-coding, tRNA, and rRNA genes.
  • Comparative analyses of repetitive sequences, interorganellar DNA transfer, codon usage, RNA editing, and synteny.
  • The 644,236 bp mitogenome contains 21 independent circular chromosomes with varying sizes.
  • Annotated 39 unique protein-coding genes, 23 tRNA genes, and 3 rRNA genes.
  • Identified a significant presence of repetitive sequences and mitochondrial–plastid DNA accounting for 12.72% of the genome.
  • Revealed extreme structural rearrangement and an almost complete loss of gene order compared to other orchids.

Abstract

Introduction Plant mitochondrial genomes (mitogenomes) are known for their structural complexity, particularly within the Orchidaceae. To understand the evolutionary dynamics in the endangered genus Calanthe , this study provides the first complete mitogenome assembly for the endangered species Calanthe sieboldii , a species of horticultural and conservation importance. Methods A hybrid sequencing approach combining Nanopore long reads and BGI short reads was used for denovo assembly. The genome was annotated, and we performed comparative analyses of repetitive sequences, interorganellar DNA transfer, codon usage, RNA editing, synteny, and phylogeny. Results The 644,236 bp mitogenome exhibits a highly fragmented architecture, comprising 21 independent circular chromosomes ranging from 19.9 to 48.7 kb. We annotated 39 unique protein-coding genes, 23 tRNA genes, and 3 rRNA genes. The genome is characterized by a high density of repetitive sequences and a massive influx of chloroplast DNA, with mitochondrial–plastid sequences accounting for 12.72% of the total length. Comparative synteny analysis with other orchid species revealed an almost complete loss of gene order, highlighting extreme structural rearrangement. Despite this plasticity, core molecular features, such as codon usage and predicted RNA editing patterns, remain conserved. Phylogenetic analysis robustly placed C. sieboldii within the Orchidaceae. Discussion This study decodes a complex multichromosomal mitogenome, reinforcing the paradigm of dynamic structural evolution in orchids and providing a vital genomic resource to support conservation efforts and evolutionary research on the Calanthe genus.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69b3aad702a1e69014ccb8e6https://doi.org/10.3389/fpls.2026.1701753
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