Exploitation of insect vibrational signals reveals a new method of pest management.

Food production is considered to be the main source of human impact on the environment and the concerns about detrimental effects of pesticides on biodiversity and human health are likely to lead to an increasingly restricted use of chemicals in agriculture. Since the first successful field trial, p...

Full description

Bibliographic Details
Main Authors: Anna Eriksson, Gianfranco Anfora, Andrea Lucchi, Francesco Lanzo, Meta Virant-Doberlet, Valerio Mazzoni
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22457726/pdf/?tool=EBI
id doaj-bfe788a7193c4a408468d25dc8c394da
record_format Article
spelling doaj-bfe788a7193c4a408468d25dc8c394da2021-03-04T00:57:02ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0173e3295410.1371/journal.pone.0032954Exploitation of insect vibrational signals reveals a new method of pest management.Anna ErikssonGianfranco AnforaAndrea LucchiFrancesco LanzoMeta Virant-DoberletValerio MazzoniFood production is considered to be the main source of human impact on the environment and the concerns about detrimental effects of pesticides on biodiversity and human health are likely to lead to an increasingly restricted use of chemicals in agriculture. Since the first successful field trial, pheromone based mating disruption enabled sustainable insect control, which resulted in reduced levels of pesticide use. Organic farming is one of the fastest growing segments of agriculture and with the continuously growing public concern about use of pesticides, the main remaining challenge in increasing the safety of the global food production is to identify appropriate alternative mating disruption approaches for the numerous insect pests that do not rely on chemical communication. In the present study, we show for the first time that effective mating disruption based on substrate-borne vibrational signals can be achieved in the field. When disruptive vibrational signals were applied to grapevine plants through a supporting wire, mating frequency of the leafhopper pest Scaphoideus titanus dropped to 9 % in semi-field conditions and to 4 % in a mature vineyard. The underlying mechanism of this environmentally friendly pest-control tactic is a masking of the vibrational signals used in mate recognition and location. Because vibrational communication is widespread in insects, mating disruption using substrate vibrations can transform many open field and greenhouse based farming systems.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22457726/pdf/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Anna Eriksson
Gianfranco Anfora
Andrea Lucchi
Francesco Lanzo
Meta Virant-Doberlet
Valerio Mazzoni
spellingShingle Anna Eriksson
Gianfranco Anfora
Andrea Lucchi
Francesco Lanzo
Meta Virant-Doberlet
Valerio Mazzoni
Exploitation of insect vibrational signals reveals a new method of pest management.
PLoS ONE
author_facet Anna Eriksson
Gianfranco Anfora
Andrea Lucchi
Francesco Lanzo
Meta Virant-Doberlet
Valerio Mazzoni
author_sort Anna Eriksson
title Exploitation of insect vibrational signals reveals a new method of pest management.
title_short Exploitation of insect vibrational signals reveals a new method of pest management.
title_full Exploitation of insect vibrational signals reveals a new method of pest management.
title_fullStr Exploitation of insect vibrational signals reveals a new method of pest management.
title_full_unstemmed Exploitation of insect vibrational signals reveals a new method of pest management.
title_sort exploitation of insect vibrational signals reveals a new method of pest management.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Food production is considered to be the main source of human impact on the environment and the concerns about detrimental effects of pesticides on biodiversity and human health are likely to lead to an increasingly restricted use of chemicals in agriculture. Since the first successful field trial, pheromone based mating disruption enabled sustainable insect control, which resulted in reduced levels of pesticide use. Organic farming is one of the fastest growing segments of agriculture and with the continuously growing public concern about use of pesticides, the main remaining challenge in increasing the safety of the global food production is to identify appropriate alternative mating disruption approaches for the numerous insect pests that do not rely on chemical communication. In the present study, we show for the first time that effective mating disruption based on substrate-borne vibrational signals can be achieved in the field. When disruptive vibrational signals were applied to grapevine plants through a supporting wire, mating frequency of the leafhopper pest Scaphoideus titanus dropped to 9 % in semi-field conditions and to 4 % in a mature vineyard. The underlying mechanism of this environmentally friendly pest-control tactic is a masking of the vibrational signals used in mate recognition and location. Because vibrational communication is widespread in insects, mating disruption using substrate vibrations can transform many open field and greenhouse based farming systems.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22457726/pdf/?tool=EBI
work_keys_str_mv AT annaeriksson exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
AT gianfrancoanfora exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
AT andrealucchi exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
AT francescolanzo exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
AT metavirantdoberlet exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
AT valeriomazzoni exploitationofinsectvibrationalsignalsrevealsanewmethodofpestmanagement
_version_ 1714809885503258624