The original FASTA sequences, alignment matrices, and all resulting phylogenetic tree files used in mito-APG analysis
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Resolving the phylogenetic relationships among the five major angiosperm lineages remains challenging, with large-scale nuclear and plastid datasets often yielding conflicting topologies. We successfully assembled the first complete mitochondrial genomes for two of the five major lineages within core angiosperm—Ceratophyllales (Ceratophyllum) and Chloranthales (Chloranthus)—and comprehensively assessed the utility of mitochondrial genome in resolving deep angiosperm phylogeny. Through analyses of multiple mitochondrial and plastid datasets using diverse phylogenetic methods, we found consistent support for two important relationships despite overall topological discordance between genomic compartments: (1) all mitochondrial datasets recovered Ceratophyllum + Chloranthus as a monophyletic clade with strong support, and (2) protein-based analyses from both mitochondrial and plastid genomes, along with approximately half of all mitochondrial trees, supported monocots and eudicots as sister groups. We demonstrate that topological instability often observed in mitochondrial phylogenies can be effectively mitigated through RNA editing adjustment strategies (C-to-U edit or delete), which significantly increased tree consistency across inference methods. However, substantial gene tree conflict persisted, particularly at deep nodes. Our investigation revealed that this conflict frequency is significantly negatively correlated with gene entropy (R = -0.55, p
创建时间:
2025-02-09



