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Research findings in natural sciences need to be comparable and reproducible to effectively improve our understanding of ecological and behavioural patterns. In this sense, knowledge frontiers in biodiversity studies are directly tied to taxonomic research, especially in species-rich tropical regions. Here we analysed the taxonomic information available in 470 studies on Brazilian ant diversity published in the last 50 years. We aimed to quantify the proportion of studies that provide enough data to validate taxonomic identification, explore the frequency of studies that properly acknowledge their taxonomic background, and investigate the primary resources for ant identification in Brazil. We found that most studies on Brazilian ant diversity (73.6%) explicitly stated the methods used to identify their specimens. However, the proportion of papers that provide complete data for the repository institutions and vouchered specimens is vanishingly small (5.8%). Additionally, only 40.0% of the studies consistently presented taxon authorities and years of description, rarely referencing taxonomic publications correctly. In turn, the number of specialists and institutions consulted for ant identification in Brazil has increased in the last years, along with the number of studies that explicitly provide their taxonomic procedures for ant identification. Our findings highlight a shift between generations regarding the recognition of taxonomy as fundamental science, deepening our understanding of biodiversity.
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http://dx.doi.org/10.1098/rsos.221170 | DOI Listing |
J R Soc Interface
September 2025
Department of Bioengineering, Imperial College London, London, UK.
Insects and plants have been locked in an evolutionary arms race spanning 350 million years. Insects evolved specialized tools to cut into plant tissue, and plants, to counter these attacks, developed diverse defence strategies. Much previous worked has focused on chemical defences.
View Article and Find Full Text PDFAnnu Rev Entomol
September 2025
2Department of Entomology and Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, New York, USA; email:
Nutritional symbioses with microorganisms have profoundly shaped the evolutionary success of ants, enabling them to overcome dietary limitations and thrive across diverse ecological niches and trophic levels. These interactions are particularly crucial for ants with specialized diets, where microbial symbionts compensate for dietary imbalances by contributing to nitrogen metabolism, vitamin supplementation, and the catabolism of plant fibers and proteins. This review synthesizes recent advances in our understanding of ant-microbe symbioses, focusing on diversity, functional roles in host nutrition, and mechanisms of transmission of symbiotic microorganisms.
View Article and Find Full Text PDFBiological invasions pose a significant threat to ecosystem stability by altering the taxonomic and functional diversity of native communities. It is still uncertain, however, whether multiple invasive species have varying effects on native communities, or whether their interactions in a co-invasion scenario are antagonistic or facilitative. To address this gap, this study investigated 24 sampling sites in Hong Kong, encompassing single invasion, co-invasion, and non-invaded control scenarios across the dry and wet seasons.
View Article and Find Full Text PDFMicrobiol Spectr
September 2025
School of Biological and Behavioural Sciences, Queen Mary University of LondonLondon, United Kingdom.
Ants are among the most ecologically diverse insects, especially in tropical forest ecosystems, yet what shapes their microbial associates remains poorly understood. Most research has focused on Neotropical ants, where strong microbial associations have been linked to shifts in diet-such as herbivory-and nesting ecology. In contrast, Indo-Pacific ants, which have independently evolved similar specialized lifestyles, remain largely unstudied for their microbial associations.
View Article and Find Full Text PDFYing Yong Sheng Tai Xue Bao
July 2025
College of Soil and Water Conservation, Southwest Forestry University, Kunming 650224, China.
To explore the underlying biotic and abiotic mechanisms of ant nesting affecting soil methane (CH) oxidation dynamics, we used indoor methane-oxidation incubation and static chamber-gas chromatography to examine the dynamics of CH oxidation in ant nest and adjacent reference soil in Xishuangbanna tropical secondary forest. We investigated the effects of ant-mediated changes in microbial composition and diversity as well as soil properties on spatiotemporal dynamics of CH oxidation rate. The results showed that: 1) Ant nesting significantly affected soil CH oxidation rate.
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