scholarly journals Honey bee pollen foraging ecology across an urbanization gradient

2019 ◽  
Author(s):  
Rodney T. Richardson ◽  
Tyler D. Eaton ◽  
Chia-Hua Lin ◽  
Garrett Cherry ◽  
Reed M. Johnson ◽  
...  

AbstractUnderstanding animal foraging ecology requires large samples sizes spanning broad environmental and temporal gradients. For pollinators, this has been hampered by the laborious nature of morphologically identifying pollen. Metagenetic pollen analysis is a solution to this issue, but the field has struggled with poor quantitative performance. Building upon prior laboratory and bioinformatic methods, we applied quantitative multi-locus metabarcoding to characterize the foraging ecology of honey bee colonies situated along an urban-agricultural gradient in central Ohio, USA. In cross-validating a subset of our metabarcoding results using microscopic palynology, we find strong concordance between the molecular and microscopic methods. Our results show that, relative to the agricultural environment, urban and suburban environments were associated with higher taxonomic diversity and temporal turnover of honey bee pollen forage. This is likely reflective of the fine-grain heterogeneity and high beta diversity of urban floral landscapes at the scale of honey bee foraging. Our work also demonstrates the power of honey bees as environmental samplers of floral community composition at large spatial scales, aiding in the distinction of taxa characteristically associated with urban or agricultural land use from those distributed ubiquitously across our landscape gradient.

PLoS ONE ◽  
2017 ◽  
Vol 12 (8) ◽  
pp. e0183716 ◽  
Author(s):  
Nadja Danner ◽  
Alexander Keller ◽  
Stephan Härtel ◽  
Ingolf Steffan-Dewenter

PLoS ONE ◽  
2016 ◽  
Vol 11 (12) ◽  
pp. e0167487 ◽  
Author(s):  
Marek Łukasz Roszko ◽  
Marta Kamińska ◽  
Krystyna Szymczyk ◽  
Renata Jędrzejczak

2018 ◽  
Vol 27 (2) ◽  
pp. 349-360 ◽  
Author(s):  
Bahram Kheradmand ◽  
Julian Cassano ◽  
Selena Gray ◽  
James C. Nieh

2021 ◽  
Author(s):  
Asem Surindro Singh ◽  
Machathoibi Chanu Takhellambam

The foraging of honey bees is one of the most well organized and admirable behaviors that exist among social insects. In behavioral studies, these beautiful insects have been extensively used for understanding time-space learning, landmark use and concept of learning etc. Highly organized behaviors such as social interaction and communication are systematically well organized behavioral components of honeybee foraging. Over the last two decades, understanding the regulatory mechanisms underlying honey bee foraging at the cellular and molecular levels has been increasingly interested to several researchers. Upon the search of regulatory genes of brain and behavior, immediate early (IE) genes are considered as tool to begin the investigation. Our two recent studies, have demonstrated three IE genes namely Egr-1, Hr38 and kakusei having a role in the daily foraging of bees and their association with learning and memory during the foraging. These studies further evidence that IE genes can be used as a tool in finding the specific molecular/cellular players of foraging in honey bees and its behavioral components such as learning, memory, social interaction, social communication etc. In this article we provide the details of the method of sample collection at different times during foraging to investigate the foraging regulatory molecules. Key words: Honey bee foraging, learning and memory, immediate early genes, Egr-1, Hr38, Kakusei.


2021 ◽  
Vol 1 ◽  
Author(s):  
Asem Surindro Singh ◽  
Machathoibi Chanu Takhellambam

The foraging of honey bees is one of the most well-organized and admirable behaviors that exist among social insects. In behavioral studies, these beautiful insects have been extensively used for understanding time–space learning, landmark use, and the concept of learning. Highly organized behaviors such as social interaction and communication are systematically well-organized behavioral components of honey bee foraging. Over the last two decades, understanding the regulatory mechanisms underlying honey bee foraging at the cellular and molecular levels has been increasingly interested to several researchers. Upon the search of regulatory genes of brain and behavior, immediate early (IE) genes are considered as a good tool to begin the search investigation. Our two recent studies have demonstrated three IE genes, namely, Egr-1, Hr38, and Kakusei, playing a role in the daily foraging of bees and their association with learning and memory during foraging. These studies further evidence that IE genes can be used as a tool in finding the specific molecular/cellular players of foraging in honey bees and its behavioral components such as learning, memory, social interaction, and social communication. In this article, we provide the details of the method of sample collection at different times during foraging to investigate the foraging regulatory molecules.


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