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Biology subjects

Weinberg, I. P.

Publications and source records attributed to Weinberg, I. P..

2 recordsLinked to original sources

Nest attributes influence choice accuracy, but not decision speed in acorn ants

Decision making can have significant fitness consequences across various aspects of animal life. For acorn ants, Temnothorax curvispinosus, choosing a new nest quickly and accurately can affect the survival and fitness of the whole colony. When emigrating, ants consider several nest attributes such as cavity shape, thickness, and brightness. Ants may benefit from having more attributes differentiating potential nests only if they can quickly and accurately assess all possible attributes and make well-informed decisions. Here, we asked if the number and type of attributes differentiating potential nests affect the accuracy and latency of colony decision-making. We used pair-wise tests, where potential nests differed in 1-3 attributes, with one nest within the pair considered less optimal. We recorded the nest the colonies chose and the time it took to make the decision. We found that the degree of difference did not affect the decision-making latency, suggesting that ant colonies searching for a new nest might be constrained temporally when selecting a new nest site. We also found that accuracy increased with the number of attributes, particularly when nest brightness was manipulated, indicating that increasing the number of attributes may help facilitate nest-site selection.

animal behavior and cognition↗

Reduction of Deformed Wing Virus-B levels in Colonies of the Honey bee Apis mellifera after Queen Vaccination with inactivated Paenibacillus larvae

Deformed wing virus (DWV) is a virulent and ubiquitous disease that affects honey bee colonies. DWV infects bees at all life stages, but is most noticeable in adult bees, where clinical symptoms include shriveled, non-functional wings, and a drastically shortened lifespan. DWV is recorded in upwards of 90% of honey bee colonies worldwide, and has been linked to colony loss in symptomatic hives. DWV is primarily spread by Varroa destructor mites, who feed on the fat bodies of honey bee adults and pupae. There is currently no direct treatment or preventative for DWV, with the primary method of reduction being vector control using acaracides. In this study, we tested the effect that vaccinating honey bee queens using killed Paenibacillus larvae bacterin, the causative agent of the honey bee disease American Foulbrood, had on deformed wing virus load in honey bee colonies. We placed vaccinated queens in 200 honey bee colonies, and unvaccinated queens in 200 colonies, and measured quantities of DWV-B in both groups immediately before, and 4 months after vaccination. We found that levels of DWV-B were identical before vaccination, but were significantly reduced in colonies 4 months post vaccination. This change was found despite no difference in mite quantities between groups. Overall, these data provide evidence that vaccination of queens with P. larvae bacterin is an effective method for reduction of DWV-B quantities in honey bee colonies in a commercially relevant field setting.

immunology↗