×

Message

EU e-Privacy Directive

This website uses cookies to manage authentication, navigation, and other functions. By using our website, you agree that we can place these types of cookies on your device.

View e-Privacy Directive Documents

You have declined cookies. This decision can be reversed.

Drumming

A mechanical signal biases caste development in wasps📎

Written by CYBERMED LIFE NEWS
Attachments:
Download this file (A mechanical signal biases caste development in a social wasp..pdf)A mechanical signal biases caste development in a social wasp..pdf[A mechanical signal biases caste development in a social wasp.]204 kB
Abstract Title:

A mechanical signal biases caste development in wasps.

Abstract Source:

Curr Biol. 2011 Feb 8 ;21(3):231-5. Epub 2011 Jan 20. PMID: 21256023

Abstract Author(s):

Sainath Suryanarayanan, John C Hermanson, Robert L Jeanne

Article Affiliation:

Department of Entomology, 1630 Linden Drive, University of Wisconsin, Madison WI 53706, USA. This email address is being protected from spambots. You need JavaScript enabled to view it.

Abstract:

Understanding the proximate mechanisms of caste development in eusocial taxa can reveal how social species evolved from solitary ancestors. In Polistes wasps, the current paradigm holds that differential amounts of nutrition during the larval stage cause the divergence of worker and gyne (potential queen) castes. But nutrition level alone cannot explain how the first few females to be produced in a colony develop rapidly yet have small body sizes and worker phenotypes. Here, we provide evidence that a mechanical signal biases caste toward a worker phenotype. In Polistes fuscatus, the signal takes the form of antennal drumming (AD), wherein a female trills her antennae synchronously on the rims of nest cells while feeding prey-liquid to larvae. The frequency of AD occurrence is high early in the colony cycle, when larvae destined to become workers are being reared, and low late in the cycle, when gynes are being reared. Subjecting gyne-destined brood to simulated AD-frequency vibrations caused them to emerge as adults with reduced fat stores, a worker trait. This suggests that AD influences the larval developmental trajectory by inhibiting a physiological element that is necessary to trigger diapause, a gyne trait.