Bacteria stimulate hatching of yellow fever mosquito eggs

Loganathan Ponnusamy1, Katalin Böröczky, Dawn M Wesson

  • 1Department of Entomology, North Carolina State University, Raleigh, North Carolina, United States of America. loganathan_ponnusamy@ncsu.edu

Plos One
|September 15, 2011
PubMed
Abstract

Insights

Bacterial cues, not just low dissolved oxygen (DO), trigger hatching of Aedes aegypti mosquito eggs. This finding reveals new insights into the oviposition biology of this globally important virus vector.

Area of Science:

  • Entomology
  • Vector Biology
  • Microbiology

Background:

  • Aedes aegypti mosquitoes lay desiccation-resistant eggs in artificial containers.
  • Previous studies linked egg hatching to low dissolved oxygen (DO) and bacterial growth, but did not isolate bacterial influence.
  • The specific role of microbes in egg hatching remained unclear.

Purpose of the Study:

  • To investigate environmental factors stimulating Aedes aegypti egg hatching.
  • To differentiate the roles of dissolved oxygen (DO) and microbial activity in egg hatch.
  • To identify bacterial cues involved in Aedes aegypti oviposition.

Main Methods:

  • Compared egg hatching rates in non-sterile and sterile white oak leaf infusions.
  • Tested hatching in a mixed bacterial culture and bacterial cells suspended in saline.
  • Assessed hatching with ultra-filtered bacterial cultures and cell-free filtrate.

Main Results:

  • High egg hatch rates (92.4%) occurred in non-sterile infusions with active microbes and moderate DO.
  • Bacterial cultures stimulated significant hatching (95.2%) even with low DO (0.73 ppm).
  • Sterile infusions with high DO showed minimal hatching (4.0%), while bacterial cells in saline induced 93.8% hatch.

Conclusions:

  • Bacteria or their secreted compounds, not solely low DO, are primary stimuli for Aedes aegypti egg hatching.
  • These findings challenge previous assumptions and propose a new understanding of oviposition cues.
  • Identifies a crucial aspect of the biology of this global virus vector, impacting control strategies.