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Biology subjects

Melin, A.

Publications and source records attributed to Melin, A..

3 recordsLinked to original sources

Sparse gut microbiomes in solitary bees and wasps

Bees and wasps are ecologically vital, but many species are declining due to anthropogenic stressors. Social bees harbour host-specific and dense gut microbiomes that affect their resilience to stress. However, there are tens of thousands of other bee and wasp species that vary in sociality and diet (including pollen-feeding and predatory guilds), traits known to influence host-microbe symbioses. The role of gut microbes in the biology of these species is largely unknown. Here, we measured the composition and absolute abundance of bacterial communities in adult abdomens across 61 genera and 14 families of field-collected bees, predatory wasps, and pollen wasps. We found that solitary bees and both wasp guilds harbor distinct bacterial taxa and lower bacterial abundances as compared with social bees. Bacterial abundances also varied extensively among and within genera of solitary bees, with little variation explained by body size, diet breadth, or nesting ecology. Further, microbiome composition was only weakly differentiated among solitary bees and the two wasp groups, even comparing herbivorous (pollen-feeding) and carnivorous taxa. We suggest that the sparse and somewhat stochastic microbiomes of solitary bees and wasps reflect weak host dependence on microbially mediated functions, a trait that may influence their responses to environmental change.

ecology↗

A phylogenetic protein-coding genome-phenome map of complex traits across 224 primate species.

Complex traits arise from networks of coding and regulatory loci, making it difficult to resolve their genetic basis. Macroevolutionary studies leverage tens of millions of years of divergence across species to uncover fixed genomic changes invisible to within-species approaches, such as GWAS, offering a complementary framework for generating hypotheses in biomedical research. Here, we present the first phylogenetic protein-coding primate-wide genome-phenome map (P3GMap), spanning 200 curated traits across 224 primate species, which we release through the Primate Genome-Phenome Archive (PGA, https://pgarchive.github.io). Using two complementary approaches, convergent amino acid substitutions and relative evolutionary rates, we linked protein-coding variation to complex phenotypes and identified thousands of candidate gene-trait associations, including lineage-specific signals related to diet, immunity, and lifespan. One sentence summaryCross-species genome-phenome mapping in primates reveals thousands of protein-coding variants linked to the evolution of complex traits.

evolutionary biology↗

The platyrrhine primate Cebus imitator uses gaze to adjust grasp posture for food handling and withdraw to the mouth

Orienting a food item held in the hand to withdraw it to the mouth for eating is mediated by vision in catarrhine anthropoids and by nonvisual strategies in strepsirrhines. The present study asks whether vision contributes to the withdraw in a platyrrhine anthropoid, a member of a monophyletic primate suborder whose stem group diverged from catarrhines about 40 million years ago. We examined gaze and hand use in arboreal fruit picking by the Costa Rican capuchin, Cebus imitator, a platyrrhine known for its skilled object-handling and tool use. Videos clips of reach, grasp and withdraw movements and associated gaze were examined frame-by-frame to assess hand shaping and sensory control of eating. Cebus imitator used vision and touch to reach for and grasp food items with precision or whole hand grasps. They used vision to orient food items held inhand into a precision grip and their withdraw of food items to the mouth was assisted with a vertically oriented hand. The conjoint use of vision, grasp and hand posture by capuchins is discussed in relation to the staged evolution of visual manipulation of objects, one of which is featured in this platyrrhine primate.

evolutionary biology↗