Team Finds Common Bioindicator Resistant to Insecticides 28 October 2013

Team Finds Common Bioindicator Resistant to Insecticides 28 October 2013

Team finds common bioindicator resistant to insecticides 28 October 2013 In a novel study, a University of Oklahoma reliable as a bioindicator when used to test the researcher and collaborators found a common toxicity of water and sediment. bioindicator, Hyalella azteca, used to test the toxicity of water or sediment was resistant to More information: A technical article on this insecticides used in agricultural areas of central study was published in the October 8, 2013 issue of California. The study is the first to demonstrate that the Proceedings of the National Academy of the indicator species may adapt to polluted Sciences. conditions of a habitat and become an entirely unreliable source of information about ecosystem health. Provided by University of Oklahoma Gary Wellborn, professor of biology in the OU College of Arts and Sciences and director of the Oklahoma Biological Station; Donald P. Weston, University of California, Berkeley; and Helen C. Poyton, University of Massachusetts, Boston; tested cultures in the laboratory and water samples from California lakes, ponds and streams. The Hyalella amphipods are aquatic crustaceans commonly used by scientists and agencies as an indicator species of a healthy, unpolluted environment. "Our study documented the specific genetic changes that allow the amphipods to survive at 500-times the normal lethal dose of the pesticide," says Wellborn. "The results have far-reaching implications for biomonitoring programs that rely on H. azteca as a bioindicator. H. azteca, a species common across North America, may prove to be an unreliable indicator in other agricultural states where biomonitoring programs use H. azteca as a principal species for monitoring and environmental policy decisions." Insecticides for agricultural crops are regulated by the Environmental Protection Agency, but runoff during rains can enter a lake, pond or stream and contaminate a non-target species, like H. azteca. The evolution of H. azteca in this study occurred when the species mutated and adapted to the widely used pyrethroid insecticides—a principle known as adaptive evolution. As reported in this study, the resistant H. azteca was no longer 1 / 2 APA citation: Team finds common bioindicator resistant to insecticides (2013, October 28) retrieved 26 September 2021 from https://phys.org/news/2013-10-team-common-bioindicator-resistant- insecticides.html This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only. 2 / 2 Powered by TCPDF (www.tcpdf.org).

View Full Text

Details

  • File Type
    pdf
  • Upload Time
    -
  • Content Languages
    English
  • Upload User
    Anonymous/Not logged-in
  • File Pages
    2 Page
  • File Size
    -

Download

Channel Download Status
Express Download Enable

Copyright

We respect the copyrights and intellectual property rights of all users. All uploaded documents are either original works of the uploader or authorized works of the rightful owners.

  • Not to be reproduced or distributed without explicit permission.
  • Not used for commercial purposes outside of approved use cases.
  • Not used to infringe on the rights of the original creators.
  • If you believe any content infringes your copyright, please contact us immediately.

Support

For help with questions, suggestions, or problems, please contact us