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Stabler, D.

Publications and source records attributed to Stabler, D..

2 recordsLinked to original sources

Nutrition of honeybees is constrained by the ratios of essential amino acids in pollen protein

Bees pollinate most of the worlds flowering plants and collect and eat floral pollen as their sole source of dietary protein, yet we know relatively little about nutritional constraints imposed on them by pollinivory. Pollen protein provides bees with essential amino acid (EAA) profiles that vary as a function of plant species, but the extent of this variation and its impact on bee feeding behaviour and performance are unknown. Here, we measured the EAA profiles of pollen, bee bread, honeybees, and royal jelly to understand natural variation in protein quality and tested how mismatches in EAAs relative to bee tissues impacted protein-to-carbohydrate regulation in adult workers. Bees fed diets with an EAA profile that matched their own tissues consumed more food, gained more weight, and ate proportionally more protein relative to carbohydrate (1:72 EAA:C) while those fed with pollen sources including bee bread ate proportionally less protein and less food overall. Deficiencies found in pollen led us to discover that nutrient balancing for protein and carbohydrate in bees was driven by the inverse relationship between quantities of the branched-chain amino acids relative to histidine in dietary protein. We predict that the creation of bee bread, a mixture of bee-collected pollen, is a general adaptation to pollen feeding that reduces the impact of imbalances in the EAA profile of pollen protein.

ecology↗

A technical semi-field methodology to measure the effect of nutrition on honeybee brood rearing

A honeybee colonys well-being is its ability to nurture larvae into healthy adults. Understanding how nutrition supports brood rearing is crucial for developing diets that could aid against environmental threats. Nutritional research on whole colony brood development has been historically challenging due to difficulties documenting the diets impact on brood production over time. We describe a novel semi-field method to study the influence of nutrition on brood rearing using standardised small colonies formed de novo (ca. 1500 nurse-age bees and a queen) housed in adapted mating-nucs, placed inside an enclosure and limited to feeding on chemically defined diets. Complete assessments were conducted every fifteen days, assisted by a bespoke device to photograph every frame to measure cell contents. A novel metric describes the number of bees generated per gram of diet consumed, measuring the impact of nutrition on brood rearing and overall colony size.

animal behavior and cognition↗