(Press-News.org) Contact information: Gozde Zoru
gozde.zorlu@frontiersin.org
Frontiers
Do you have a sweet tooth? Honeybees have a sweet claw
New research on the ability of honeybees to taste with claws on their forelegs reveals details on how this information is processed, according to a study published in the open-access journal, Frontiers in Behavioral Neuroscience.
Insects taste through sensilla, hair-like structures on the body that contain receptor nerve cells, each of which is sensitive to a particular substance. In many insects, for example the honeybee, sensilla are found on the mouthparts, antenna and the tarsi – the end part of the legs. Honeybees weigh information from both front tarsi to decide whether to feed, finds the latest study led by Dr. Gabriela de Brito Sanchez, researcher, University of Toulouse, and Dr. Martin Giurfa, Director of the Research Centre on Animal Cognition, University of Toulouse, France.
Hundreds of honeybees were included in the study. Sugary, bitter and salty solutions were applied to the tarsi of the forelegs to test if this stimulated the bees to extend or retract their tongue – reflex actions that indicate whether or not they like the taste and are preparing to drink. Results revealed that honeybee tarsi are highly sensitive to sugar: even dilute sucrose solutions prompted the bees to extend their tongue. Measurements of nerve cell activity showed that the part of the honeybee tarsus most sensitive to sugary tastes is the double claw at its end. Also, the segments of the tarsus before the claws, known as the tarsomeres, were found to be highly sensitive to saline solutions.
"Honeybees rely on their color vision, memory, and sense of smell and taste to find nectar and pollen in the ever-changing environment around the colony," says Dr. Giurfa. "The high sensitivity to salts of the tarsomeres and to sugar of the tarsal claws is impressive given that each tarsus has fewer sensilla than the other sense organs. The claw's sense of taste allows workers to detect nectar immediately when they land on flowers. Also, bees hovering over water ponds can promptly detect the presence of salts in water through the tarsomeres of their hanging legs."
But what if honeybees receive contradictory information, for example, about tasty sucrose from the right foreleg, but about water or distasteful caffeine from the left? The central nervous system of honeybees weighs this information from both sides, but unequally: input from the side that is first to taste something tasty or distasteful counts for more. For example, if a bee first tasted sucrose on one side, she would typically extend her tongue and subsequently ignore less attractive tastes on the other. But if the order was reversed, she was around 50% less likely than normally to extend her tongue for sucrose.
INFORMATION:
Note to editors
1. For a copy of the embargoed paper, please contact Gozde Zorlu: press@frontiersin.org
2. Please refer to the source of publication, Frontiers in Neuroscience, and for online articles, please include a link to the study: http://www.frontiersin.org/Journal/10.3389/fnbeh.2014.00025/abstract
Article title: The tarsal taste of honey bees: behavioral and electrophysiological analyses
DOI: 10.3389/fnbeh.2014.00025
3. Contacts
Media requests should be directed to:
Dr. Martin Giurfa
Professor & Director
Research Centre on Animal Cognition
Centre National de la Recherche Scientifique
Université Paul Sabatier-Toulouse III, France
Email: martin.giurfa@univ-tlse3.fr
Gozde Zorlu
Communications Manager
Frontiers
Switzerland
E-mail: press@frontiersin.org
4. About Frontiers
Frontiers is a community driven open-access publisher and research networking platform. Launched and run by scientists since 2007, Frontiers empowers researchers to advance the way science is peer-reviewed, evaluated, published, communicated, and shared in the digital era. Frontiers joined the Nature Publishing Group family in 2013. The "Frontiers in" journal series has published 16,000 peer-reviewed articles, which receive 6 million monthly views, and are supported by over 100,000 editors, reviewers and authors world-wide.
Do you have a sweet tooth? Honeybees have a sweet claw
2014-02-05
ELSE PRESS RELEASES FROM THIS DATE:
Clearer labels needed on drugs containing animal products
2014-02-05
Dr Kinesh Patel and Dr Kate Tatham say most medications prescribed in primary care contain animal derived products and it ...
Is institutional racism happening in our hospitals?
2014-02-05
Dr Nadeem Moghal, from George Eliot Hospital in Warwickshire, draws on the Macpherson report (the police ...
Time to act on mobile phone use while driving, say experts
2014-02-05
Charles and Barry Pless argue that, with a quarter of crashes in the United States now attributed to mobile phone use, "we can't wait for perfect evidence before ...
Largest evolutionary study of sponges sheds new light on animal evolution
2014-02-05
Sponges are an important animal for marine and freshwater ecology and represent a rich animal diversity ...
Orca's survival during the Ice Age
2014-02-05
In the ocean, the killer whale rules as a top predator, feeding on everything from seals to sharks. Being at the apex of the food chain, ...
How your memory rewrites the past
2014-02-05
CHICAGO --- Your memory is a wily time traveler, plucking fragments of the present and inserting them into the past, reports a new Northwestern Medicine® ...
Mediterranean diet linked with lower risk of heart disease among young US workers
2014-02-05
Boston, MA -- Among a large group of Midwestern firefighters, greater adherence to Mediterranean-style diet was associated with lower risk factors for cardiovascular disease ...
Heart disease warning at age 18
2014-02-05
CHICAGO – –Elevated blood pressure as young as age 18 is a warning sign of cardiovascular disease developing later in life and the time ...
MRIs help predict which atrial fibrillation patients will benefit from catheter ablation
2014-02-05
MAYWOOD, Il. – A new type of contrast MRI can predict which heart patients with atrial fibrillation are most likely to benefit from ...
Sucker-footed fossils broaden the bat map
2014-02-05
DURHAM, N.C. -- Today, Madagascar sucker-footed bats live nowhere outside their island home, but new research shows that hasn't always been the case. The ...