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Nogueira, B. R.

Publications and source records attributed to Nogueira, B. R..

2 recordsLinked to original sources

Myrmecocystus honeypot ants have species specific resident gut microbiome

Myrmecocystus honeypot ants rely on specialized workers, repletes, to store dissolved carbohydrates in their crops long term. The repletes store this liquid, which does not spoil in their crops, for many months at a time. When resources are scarce, repletes redistribute the stored nutrients to their colony members via trophallaxis. While we suspect that the gut microbiome of honeypot ants may aid in spoilage prevention, before we can investigate this, we must first characterize it. Here, we used 16S rRNA gene sequencing to determine the microbial community composition across six Myrmecocystus honeypot ant species, sampling multiple colonies, castes, and organs. We found that microbiome community composition was strongly shaped by species, with variation between colonies in M. arenarius, M. depilis, and M. mexicanus. Organ level differences were observed in the crop and midgut in M. mexicanus. Caste differences were observed in M. flaviceps and M. mexicanus. Replete crops of M. mexicanus and M. depilis were enriched in Fructilactobacillus, other lactic acid bacteria, and acetic acid bacteria, whereas halophiles were more prominent in the gut of species such as M. flaviceps and M. wheeleri. In this study we demonstrate that Myrmecocystus ants host species-specific gut microbiomes and identify an association between lactic acid bacteria, acetic acid bacteria, and halophiles within replete crops. While much work remains in understanding the roles of the microbes in the symbiosis with their host ants, the dominance of these particular taxonomic groups suggests an association with a high sugar environment and a potential microbial role in preventing spoilage of the crop contents.

microbiology↗

Convergently-evolved honeypot ants show mixed signs of niche conservatism

O_LIHoneypot ants are a compelling system for studying convergent evolution. In these ants, specialized workers store liquid food in distended crops, a trait known as repletism, which has evolved independently across multiple genera worldwide. Seasonal resource scarcity and aridity are hypothesized drivers of this trait, yet the role of environmental factors in shaping the evolution of repletism has never been empirically tested. C_LIO_LIWe modeled suitable habitats for 49 honeypot ant species using ensemble distribution models, then used the most important environmental predictors to compare niche structure across and within biogeographic regions (Nearctic, Australasia, Afrotropic, Neotropic, Palearctic). To address uneven sampling density among species, we independently applied occurrence-based and Boolean (suitable-pixel) approaches, comparing each against environmental background using PERMANOVA and PERMADISP. Niche overlap was also assessed using Schoeners D. C_LIO_LIVariable importance profiles showed no consistent patterns across genera or regions, but we observed clear distinction on species occupied environmental space both within and across biogeographic regions. The relatively few cases of niche similarity and overlap occurred mainly among congeneric species and between Nearctic and Afrotropical taxa. Globally, species distributions were structured along a gradient opposing dry, thermally extreme environments and wetter, more vegetated conditions. While accumulated heat, climatic seasonality, and water-energy balance also contributed to niche differentiation. C_LIO_LIDespite honeypot ants being considered desert specialists, our results show considerable environmental heterogeneity among species. As a group, honeypot ants neither occupy the same environmental space nor experience the same contemporary climatic pressures. This suggests that repletism is not a response to a single, conserved environmental condition, but to an interaction of physiological, morphological and behavioral constraints under different climatic contexts. C_LIO_LIBy characterizing the contemporary environmental niches of honeypot ants, this study establishes a baseline for further research on the evolution of repletism. While our results suggest that contemporary environmental factors cannot explain the convergence of honeypot ants, future work should examine paleoclimatic conditions along with species-level ecological traits. C_LI

ecology↗