Individual Ants Do Not Show Active-rest Rhythms in Natural Nest Conditions

Author:

Fujioka HarunaORCID,Abe Masato S.ORCID,Okada YasukazuORCID

Abstract

AbstractCircadian rhythms, which respond to the day/night cycle on the earth, arise from the endogenous timekeeping system within organisms, called the biological clock. For accurate circadian rhythms, endogenous oscillations are synchronized to light and temperature. In social insects, both abiotic and biotic factors (i.e., social interactions) play a significant role in active/rest rhythm regulation. However, it is challenging to monitor individual active-rest rhythms in a colony because of the large group size and small body size. Therefore, it is unclear how social interactions coordinate each individual’s active/rest rhythms. This study developed an image-based tracking system using 2D barcodes for <I>Diacamma</I> sp. (a monomorphic ant) and measured the locomotor activities of all colony members under laboratory colony conditions. We also investigated the effect of broods on active/rest rhythms by removing all broods under colony conditions. Active/rest rhythms appeared only in solitary ants, not under colony conditions. In addition, arrhythmic active-rest rhythms were retained after brood removal. Therefore, a mixture of social interactions, not abiotic factors, induces the loss of active/rest rhythms. These results contribute to the knowledge of the diversity pattern of circadian rhythms in social insects.

Publisher

Cold Spring Harbor Laboratory

Reference60 articles.

1. Quantification and Analysis on Animal Social Behavior;Journal of the Robotics Society of Japan,2017

2. Abril S , Oliveras J and Gómez C (2007) Foraging Activity and Dietary Spectrum of the Argentine Ant (Hymenoptera: Formicidae) in Invaded Natural Areas of the Northeast Iberian Peninsula. Environmental Entomology. DOI: 10.1603/0046-225x(2007)36[1166:faadso]2.0.co;2.

3. Exogenous and Endogenous Components in Circadian Rhythms

4. Reversal of honeybee behavioural rhythms

5. Behavioral Rhythmicity, Age, Division of Labor and period Expression in the Honey Bee Brain

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