Overview of Genetic and Genomic Research Related to Stingless Bees (Meliponini): An AI-Assisted Science Mapping and Structural Topic Modeling Analysis

Background/Objectives: Stingless bees (tribe Meliponini) are the most species-rich group of eusocial bees and critical pollinators across tropical ecosystems. Over the past seven decades, a growing number of studies have addressed their genetics and genomics, but coverage of the tribe remains taxonomically and geographically uneven. Here, we present a systematic evidence map and bibliometric science-mapping synthesis of this literature. Methods: We searched Scopus and Web of Science, retained 410 peer-reviewed articles published between 1950 and 2026, and applied structural topic modeling (STM) to characterize the thematic, temporal, taxonomic, and biogeographic structure of the corpus. Results: STM with K = 10 topics identified ten research themes, ranging from classical marker-based genetics and cytogenetics to phylogenomics, mitochondrial genomics, microbiome, and functional genomics. The estimated prevalence of phylogenomics/taxonomy and mitogenomics increased most steeply in recent years, a publication pattern consistent with—although not proof of—a shift toward genome-scale comparative approaches. Topic prevalence differed across biogeographic regions and subtribes: Neotropical and Meliponina-dominated studies were concentrated in population genetics, cytogenetics, and gene expression, whereas Indo-Australasian and Hypotrigonina-associated studies showed higher relative representation of DNA barcoding, mitogenomics, and microbiome research. Taxonomic representation was strongly skewed toward a few genera, with Melipona alone accounting for 43% of the corpus and most lineages across the Meliponini phylogeny remaining poorly studied. Conclusions: The principal contribution is a reproducible quantitative map of publication patterns; proposed research and conservation priorities are evidence-informed interpretations rather than direct outputs of STM.

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Journal
DNA
Published
2026-08-26
DOI
https://doi.org/10.3390/dna6030042
Primary Topic
Insect and Arachnid Ecology and Behavior
Type
article
Field-Weighted Citation Impact
0.00

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article

Overview of Genetic and Genomic Research Related to Stingless Bees (Meliponini): An AI-Assisted Science Mapping and Structural Topic Modeling Analysis

Renata O. Dias, Mariana Pires de Campos Telles, Larissa de Oliveira Rosa Marques, Carlos de Melo e Silva‐Neto et al.
DNA
Insect and Arachnid Ecology and Behavior
article

Overview of Genetic and Genomic Research Related to Stingless Bees (Meliponini): An AI-Assisted Science Mapping and Structural Topic Modeling Analysis

Renata O. Dias, Mariana Pires de Campos Telles, Larissa de Oliveira Rosa Marques, Carlos de Melo e Silva‐Neto, Cíntia Pelegrineti Targueta, Pedro Vale de Azevedo Brito, Thiago Mafra Batista, Leonardo Carlos Jeronimo Corvalán, Jamira Dias Rocha, Rhewter Nunes, Júllia Costa dos Reis
article en

Abstract

Background/Objectives: Stingless bees (tribe Meliponini) are the most species-rich group of eusocial bees and critical pollinators across tropical ecosystems. Over the past seven decades, a growing number of studies have addressed their genetics and genomics, but coverage of the tribe remains taxonomically and geographically uneven. Here, we present a systematic evidence map and bibliometric science-mapping synthesis of this literature. Methods: We searched Scopus and Web of Science, retained 410 peer-reviewed articles published between 1950 and 2026, and applied structural topic modeling (STM) to characterize the thematic, temporal, taxonomic, and biogeographic structure of the corpus. Results: STM with K = 10 topics identified ten research themes, ranging from classical marker-based genetics and cytogenetics to phylogenomics, mitochondrial genomics, microbiome, and functional genomics. The estimated prevalence of phylogenomics/taxonomy and mitogenomics increased most steeply in recent years, a publication pattern consistent with—although not proof of—a shift toward genome-scale comparative approaches. Topic prevalence differed across biogeographic regions and subtribes: Neotropical and Meliponina-dominated studies were concentrated in population genetics, cytogenetics, and gene expression, whereas Indo-Australasian and Hypotrigonina-associated studies showed higher relative representation of DNA barcoding, mitogenomics, and microbiome research. Taxonomic representation was strongly skewed toward a few genera, with Melipona alone accounting for 43% of the corpus and most lineages across the Meliponini phylogeny remaining poorly studied. Conclusions: The principal contribution is a reproducible quantitative map of publication patterns; proposed research and conservation priorities are evidence-informed interpretations rather than direct outputs of STM.

DNAVol. 6(3)
Universidade Estadual de Goiás (BR), Hospital Madre Teresa (BR), Institute for Biodiversity (DE), Instituto Federal de Goiás (BR), Pontifícia Universidade Católica de Goiás (BR), Universidade Federal de Goiás (BR)
Conselho Nacional de Desenvolvimento Científico e Tecnológico, Fundação de Amparo à Pesquisa do Estado de Goiás
Life in Land
Openalex Percentile: Top 11%
Insect and Arachnid Ecology and Behavior
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