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Turgut, A. E.

Publications and source records attributed to Turgut, A. E..

3 recordsLinked to original sources

FloBuzz: A Modular Feeder System for Automated Aversive Conditioning in Bees

Understanding how environmental stressors affect pollinator behavior is essential for assessing ecosystem health. Automated flower and robotic feeder systems (AFRFSs) have transformed how pollinator foraging and learning are studied. Still, most systems remain reward-centric, limiting their ability to probe aversive learning and nociception under field conditions. Here, we present FloBuzz, a modular AFRFS that couples automated reward delivery with computer-vision-based visit detection to trigger closed-loop electric-shock stimulation in free-flying honey bees. In our setup, FloBuzz consisted of a 3D-printed feeder with a shock grid, a syringe pump with fluid-level feedback, and an electric shock stimulus trigger module that applied user-defined shock patterns. In a proof-of-concept trial that alternated between shock-free, 6 V, and shock-free, 9 V intervals, bee visitation increased over time during shock-free periods but declined during shock periods, with a steeper decline at 9 V than at 6 V, demonstrating a voltage-dependent avoidance. By enabling programmable, time-resolved aversive stimulation at an artificial flower in outdoor conditions, FloBuzz expanded AFRFS capabilities beyond purely reward-based paradigms. Evidently, FloBuzzs modular design will permit the investigation of diverse behavioral paradigms, including studies of toxin exposure, cognitive plasticity, and reward processing.

animal behavior and cognition↗

Caste-specific proboscis extension responses in honey bees to sucrose and royal jelly stimuli

Understanding the nutritional preferences of honey bees (Apis mellifera) is essential for comprehending their behavioral ecology and the division of labor within a colony. While gustatory sensitivity to sucrose is well-documented in workers, a significant research gap exists regarding the sensory responses of queens and their reactions to caste-specific nutrition such as royal jelly. This study utilized the proboscis extension response (PER) assay to compare the food preferences of three distinct bee categories: foragers, 1-day-old workers, and queens. Subjects were presented repeatedly, in a pseudorandom order, with water, sucrose, royal jelly, and a sucrose-royal jelly mixture as gustatory stimuli. Foragers exhibited a high responsiveness to sucrose and showed uniformly low responsiveness to other stimuli. Although 1-day-old workers showed high responsiveness to sucrose, unlike foragers, they also responded to the sucrose-royal jelly mixture. Queens displayed a unique response profile, with near-ceiling responsiveness to both royal jelly and the mixture, followed by response to sucrose solution without habituation. Additionally, responsiveness to the sucrose was higher in foragers than in 1-day-old workers. These findings suggest that the honey bee gustatory and sensory system is tuned to the specific nutritional requirements of caste and age.

animal behavior and cognition↗

Specific Wavelengths of Light Modulate Honey Bee Locomotor Activity

Light plays a crucial role in honey bee (Apis mellifera) behavior by influencing foraging, navigation, and locomotor activity (LMA). While the effects of light on LMA have been previously documented, the specific roles of different wavelengths remain unknown. In this study, we investigated how exposure to specific infrared (IR, 849 nm), green (528 nm), blue (447 nm), and ultraviolet (UV, 372 nm) wavelengths, as well as their combinations, affects LMA. Specifically, using a custom-built illumination setup and the Api-TRACE video tracking system, we monitored and analyzed bee movement in a homogeneously illuminated environment. Our analysis revealed significant differences in LMA depending on the wavelength to which the bees were exposed. This study demonstrated that the green light promoted LMA. On the other hand, UV light suppressed the LMA of honey bees. The suppression was even greater when the UV light was combined with the blue light. That information can be applied to experimental standardization, the design of flight-room environments, and the management of colonies under artificial illumination.

animal behavior and cognition↗