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Phylogenetic inconsistency of pairwise SNP clustering for inferring tuberculosis transmission in a high-burden, endemic setting: a case study from Thailand.

Whole-genome sequence analysis is now widely used to delineate tuberculosis transmission clusters. A standard practice is to cluster bacterial isolates based on a fixed maximum genome-wide pairwise single nucleotide polymorphism (pwSNP) distance threshold. In this study, we evaluated the phylogenetic consistency of pwSNP-distance clustering with thresholds ranging between 1 and 25 single nucleotide polymorphisms (SNPs) using two contrasting data sets: (i) a data set from the UK (N = 390) published by T. M. Walker, C. L. C. Ip, R. H. Harrell, J. T. Evans, et al. (Lancet Infect Dis 13:137-146, 2013, https://doi.org/10.1016/S1473-3099(12)70277-3), which was foundational to the establishment of this method, and (ii) a data set from Thailand (N = 3,341), characterized by persistent transmission and sparse, non-systematic sampling. For the UK data set, the standard pwSNP-distance clustering using thresholds of &#x2265;12 SNPs yielded entirely monophyletic clusters and showed high concordance with a comparative monophyly constrained, tree-based method. In contrast, for the Thai data set, pwSNP-distance clustering often generated non-monophyletic clusters, even by the 25-SNP threshold. The pwSNP-distance and comparative tree-based clustering methods only showed large consistency at thresholds of &#x2265;22 SNPs. This suggests that SNP clusters defined by low distance thresholds (i.e., <12 SNPs for the UK data set, and <22 SNPs for the Thai data set) may lack robustness, and the problem is particularly severe for data sets characterized by persistent transmission, likely due to poorer cluster separation. Moreover, our findings indicate that large cluster sizes, high maximum intra-cluster genetic distances, and broad sample collection time spans may serve as useful indicators of potentially non-monophyletic clusters. We also demonstrate that mixed infections can produce spurious, phylogenetically long-range SNP linkages, underscoring the necessity of strict sequence quality control.IMPORTANCEFixed-threshold pairwise single nucleotide polymorphism (pwSNP)-distance clustering is commonly used to delineate tuberculosis transmission clusters. From an epidemiological perspective, a genuine transmission cluster must be monophyletic, originating from a single source. However, pwSNP-distance clustering is inherently simplistic and can therefore violate this principle, making the assessment of its phylogenetic consistency critical. Our results demonstrate that while this method effectively delineated complete transmission clusters for the data set from the UK, a low-burden and non-persistent transmission setting, it frequently generated non-monophyletic clusters when applied to the Thai data set, characterized by persistent transmission alongside sparse and non-systematic sampling. Furthermore, we found that clusters derived using low distance thresholds could notably vary between the pwSNP-distance and comparative tree-based clustering methods, suggesting limited reliability and robustness. To accurately delineate tuberculosis transmission clusters, especially for complex data from high-burden, endemic settings, we recommend transitioning from pwSNP-distance clustering toward more robust, phylogenetic clustering that respects evolutionary descent.

Mycobacterium tuberculosis

Phylogenetic consequences of symbioses: Eukarya and Eubacteria are not monophyletic taxa.

In the past systematists have not been concerned with distinguishing the different phylogenetic histories for symbiont taxa that have merged within a composite taxon, or holobiont. I suggest that symbionts can retain their status as discrete taxa and that their independent histories can be included in phylogenetic analyses intending to discover monophyletic groups. Use of reticulate branches to include independent histories for different symbionts, incorporates our improving understanding of evolution and provides greater accuracy in denoting monophyletic groups. In an expanded view, a monophyletic group includes only and all the descendants of the merged-symbionts' common ancestor. Holobiont taxa will have constituent symbionts included in different monophyletic groups and there will be a reduction in the number of monophyletic groups recognized, particularly at higher taxonomic levels. As a consequence of considering symbioses in phylogenetic analyses, the proposed taxa Eubacteria and Eukarya are seen to be non-monophyletic, and, thus, poor indicators of evolutionary history.

Animal Population Groups

Nuclear single-copy orthologous genes as phylogenomic markers for resolving the closely related firefly genera Pteroptyx, Medeopteryx, and Trisinuata (Coleoptera: Lampyridae: Luciolinae).

Fireflies (Lampyridae) are bioluminescent beetles with broad ecological roles across temperate and tropical ecosystems, occupying diverse habitats including forests, wetlands, grasslands, mangroves, and riverine systems. The subfamily Luciolinae is primarily distributed across Asia and the Indo-Pacific. Phylogenetic relationships among three closely related Luciolinae genera - Medeopteryx, Pteroptyx, and Trisinuata - remain unresolved using mitochondrial genome data alone. This study used nuclear genome data to resolve relationships among these genera and identify a lighter-weight nuclear marker panel for expanding taxon sampling. Draft genomes were reconstructed for fifteen firefly species, eight from the focal genera, and analyzed with five published firefly genomes. Using BUSCO and OrthoFinder, 1,011 nuclear single-copy orthologs (SCOs) were identified for phylogenomic inference. Discordance between concatenation- and coalescence-based phylogenies indicated incomplete lineage sorting (ILS). The coalescence-based phylogeny recoveredPteroptyxas monophyletic and sister to a (Medeopteryx,Trisinuata) clade, with Trisinuata nested within a non-monophyletic Medeopteryx; however, quartet support at the base of Pteroptyx, particularly at Pt. valida, was low.Filtering for compositional homogeneity, clock-likeness, and species-tree concordance yielded 103 SCOs with a significantly higher proportion of parsimony-informative sites than non-selected loci, retaining the backbone topology with higher gene concordance support at scored clades, while ILS-driven discordance at Pt. valida persists - confirming that the reduced panel retains phylogenetic resolving power for future taxon sampling. These findings demonstrate a practical framework for using nuclear SCOs to resolve close phylogenetic relationships within Luciolinae. Future work should expand taxon sampling - especially forTrisinuata - alongside long-read assemblies, for a more robust phylogenomic framework.

Fireflies

Genome-wide phylogeny reshapes our understanding of the evolution of deep-sea dragonfishes, bristlemouths, viperfishes, and allies (Stomiiformes).

BACKGROUND: The evolutionary relationships within Stomiiformes, a diverse order of deep-sea fishes dominating the mesopelagic and bathypelagic zones, remain contentious due to conflicting morphological and molecular evidence. These fishes, comprising 464 species across four traditionally recognized families (Gonostomatidae, Sternoptychidae, Phosichthyidae, and Stomiidae), exhibit remarkable adaptations such as bioluminescence, ultra-black pigmentation, and extreme jaw morphologies. Their global abundance and ecological significance, including contributions to the biological carbon pump, underscores the need to resolve their phylogeny amid escalating threats from climate change and human activities. RESULTS: We conducted the most comprehensive phylogenomic analysis of Stomiiformes to date, integrating 936 nuclear loci from 60 species and an expanded dataset of 135 species with mitochondrial sequences from publicly available repositories such as the Barcode of Life Data Systems (BOLD) database. We used maximum likelihood and coalescent-based approaches to assess family monophyly and relationships, including extensive quality control to address contamination in public databases. Our analyses reveal unstable tree topologies and complex evolutionary histories that challenge traditional classifications, while our quality control analyses identified 29% of BOLD sequences as misidentified or contaminated, emphasizing rigorous curation for deep-sea taxa. Congruent with a recent taxonomic treatment of Stomiiformes, the families Phosichthyidae and Gonostomatidae exhibit polyphyly and paraphyly, respectively, while subfamilies within Stomiidae are extensively non-monophyletic, leading us to recommend their abandonment. We propose the recognition of eight monophyletic families: Vinciguerriidae, Diplophidae, Gonostomatidae, Yarrellidae, Ichthyococcidae, Phosichthyidae, Sternoptychidae, and Stomiidae, supported by robust molecular and morphological evidence. CONCLUSIONS: This revised classification reflects the morphological and ecological diversity of Stomiiformes, aligning with their evolutionary diversification in the deep sea. Our phylogenomic framework resolves longstanding systematic uncertainties and highlights the power of genome-wide data in tackling taxonomically challenging clades. These findings provide a foundation for understanding deep-sea fish diversification and assessing the potential ecological drivers for their evolutionary diversity.

Animals

Molecular phylogeny of some Carangid species from the Egyptian Red Sea using cytochrome c oxidase subunit I (COI) and small (12S rRNA) mitochondrial rRNA genes.

BACKGROUND: Study of five Carangid species to estimate the degree of genetic divergence and draw phylogenetic relationships by using cytochrome c oxidase subunit I (COI), and small (12S rRNA) mitochondrial rRNA genes. AIM: This investigation was designed to evaluate genetic relationships and association analyses in the taxonomy studies of Carangid fishes using mitochondrial sequences. METHODS: The present study analyzed sequence data using two genes to estimate the relationships among five species of the family Carangidae (ray-finned fish), such as Carangoides bajad (gold-spotted trevally), Carangoides malabaricus (Malabar trevally), Caranx melampygus (Bluefin trevally), Caranx sexfasciatus (Bigeye trevally), and Scomberoides lysan (doublespotted queenfish) and to assess the phylogenetic utility of these markers. RESULTS: The classification analysis of the family Carangidae is controversial. Our study was performed to examine the phylogenetic relationships among five Carangid species using 12S rRNA and COI genes, that illustrated certain Carangidae family genera are not monophyletic that does not include all the descendants of a common ancestor (Paraphyletic) refers to a taxonomic grouping that includes a common ancestor and some, but not all, of its descendants. This means that a paraphyletic group consists of the last common ancestor and excludes certain lineages that are part of the broader group, for example, in traditional taxonomy, the class of fish is considered paraphyletic because it does not include all descendants. The data reported here may be employed in study and analysis of the phylogenetic variety and relationships among species and genera of the family Carangidae. CONCLUSION: Our results confirmed the thermostability and environmental adaptation of the five species of the Carangidae family due to higher A+T content. Our results also confirmed the earlier conclusions of other authors that several genera of the Carangidae family are not monophyletic which does not include all the descendants of a common ancestor (Paraphyletic) and demonstrated the usefulness of the 12S rRNA gene and the COI gene in the phylogenetic analysis of the Carangid species.

RNA, Ribosomal