ArticleBMC genomics2025
The first complete mitochondrial genome sequences of an ancient orphan evolutionary lineage of Eumolpinae leaf beetles endemic to the South Pacific.
Article in BMC genomics, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.
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Who cites it
1 citing paper in PubMed.
- Characterization of the complete mitogenomes of two species of Eumolpinae (Coleoptera: Chrysomelidae) and phylogenetic insights.Journal of insect science (Online) · 2026Article
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2 authors.
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Abstract
backgroundThere are very limited mitogenome data representing most animal groups, particularly among the insects, which are otherwise extremely diverse and fulfill important ecological, sanitary, forest and agroeconomic roles. Increasing taxonomic diversity with new additions to the pool of mitogenomes for unrepresented evolutionary lineages is an opportunity to increase the phylogenetic power of mitogenome data, as well as refining our understanding of mitogenome diversity. Here, we characterize the complete mitogenomes of three species in two subgenera of Taophila leaf beetles, members of the hyperdiverse Eumolpinae, currently very poorly represented by mitogenomes, and the first representing an enigmatic independent evolutionary branch of the Eumolpini tribe, originated in the Cretaceous-Paleogene transition and endemic to the South Pacific.
resultsThese mitogenomes, assembled from genomic Illumina libraries, are relatively small (15,484-15,597 bp), retain the ancestral gene order of insect mitogenomes, except for a switch in the positions of trnA and trnR, a synapomorphic trait of the leaf beetle clade including Eumolpinae, Cryptocephalinae and Lamprosomatinae. Nucleotide composition, codon usage, relative synonymous codon usage and initiation and termination codons of protein-coding genes of these mitogenomes are all typical of insect mitogenomes, where nucleotide composition bias may be the result of mutation pressure, rather than natural selection. A mitogenome phylogeny of Eumolpinae, Cryptocephalinae and Lamprosomatinae revealed a strongly supported topology concordant with previous molecular systematic studies of these groups, including the identification of polytomies consistent with rapid early diversification of the Cryptocephalinae tribes and the separation of the main lineages within Eumolpini, one of them represented by Taophila.
conclusionsNew mitogenomes from previously undersampled taxa contribute to an important, collective effort to populate mitogenome databases with an increasingly dense representation of the Tree-of-Life. It is crucial that these efforts are driven and supported by consolidated taxonomic expertise to guarantee the quality of results derived from these data. The availability of South Pacific Eumolpinae in the public mitogenome pool increases the likelihood of finding their missing link, if any, with other Eumolpini.
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