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Characterization of mitogenome revealed a remarkable evolution in genome size and composition of protein-coding genes. | LitMetric

Characterization of mitogenome revealed a remarkable evolution in genome size and composition of protein-coding genes.

Front Plant Sci

Key Laboratory of Green Prevention and Control of Tropical Plant Diseases and Pests, Ministry of Education, School of Tropical Agriculture and Forestry, Hainan University, Haikou, China.

Published: August 2025


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Article Abstract

Red root disease in rubber trees, caused by , is a prevalent and severe soil-borne disease in rubber tree cultivation areas. The pathogen exhibits complex infections, with multiple transmission pathways, making the disease highly concealed and difficult to diagnose in its early stages. As a result, prevention and control are challenging, posing a serious threat to rubber production. Currently, the relevant information, evolutionary trajectory, and sequence divergence of the mitochondrial genome of remain unknown. Here, we assembled the complete mitochondrial genome of ,which is 40, 719 bp long and contains 14 protein-coding genes (PCGs), genes encoding small and large ribosomal subunits, 22 mitochondrial-encoded tRNAs, and four hypothetical proteins. The genomic content and characteristics, along with IPS mapping analysis and phylogenetic analysis, reveal a significant similarity between and The results of RNA editing site analysis, codon usage bias and evolutionary pressure analysis reveal that during environmental adaptation, species of Ganoderma may alter certain key PCGs to adopt distinct evolutionary trajectories, differentiating themselves from other fungi in Basidiomycota, while leaving evolutionary traces. Our study provides new insights into the evolutionary direction and pattern of and by exploring the evolutionary trajectory of mitochondrial genomes of . and Ganoderma.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12405218PMC
http://dx.doi.org/10.3389/fpls.2025.1532782DOI Listing

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