Cargando…

An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging

Chive gnat (Bradysia odoriphaga) is a soil-borne pest of Chinese chives, which causes millions of dollars in yield losses per year. Traditional methods, such as chemical pesticides leave detrimental chemical residues on plants, which potentially threaten human health. To find a sustainable method of...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Chaoying, Ma, Haikun, Ma, Mingyang, Li, Jingjing, Zheng, Shuyuan, Song, Qifeng, Gu, Xinghui, Shapiro-Ilan, David, Ruan, Weibin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Exeley Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7366836/
https://www.ncbi.nlm.nih.gov/pubmed/32628823
http://dx.doi.org/10.21307/jofnem-2020-057
_version_ 1783560297590554624
author Chen, Chaoying
Ma, Haikun
Ma, Mingyang
Li, Jingjing
Zheng, Shuyuan
Song, Qifeng
Gu, Xinghui
Shapiro-Ilan, David
Ruan, Weibin
author_facet Chen, Chaoying
Ma, Haikun
Ma, Mingyang
Li, Jingjing
Zheng, Shuyuan
Song, Qifeng
Gu, Xinghui
Shapiro-Ilan, David
Ruan, Weibin
author_sort Chen, Chaoying
collection PubMed
description Chive gnat (Bradysia odoriphaga) is a soil-borne pest of Chinese chives, which causes millions of dollars in yield losses per year. Traditional methods, such as chemical pesticides leave detrimental chemical residues on plants, which potentially threaten human health. To find a sustainable method of reducing the chive gnat, the authors evaluated the effects of waterlogging and the addition of entomopathogenic nematode (EPN) on reducing chive gnat in Chinese chives via three pot experiments and one field demonstration. Results indicated that increasing the duration of waterlogging markedly increases chive gnat mortality. The presence of EPN also caused chive gnat mortality to increase with exposure time. Most importantly, the combination of waterlogging and EPN had synergistic effects on chive gnat mortality; the combination led to higher mortality than using waterlogging and EPN alone. The study demonstrated that a combination of two environmental friendly methods of fungus gnat control could lead to synergistic effects, which may provide novel approaches to economic and environmentally sustainable pest management measures.
format Online
Article
Text
id pubmed-7366836
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Exeley Inc.
record_format MEDLINE/PubMed
spelling pubmed-73668362020-07-20 An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging Chen, Chaoying Ma, Haikun Ma, Mingyang Li, Jingjing Zheng, Shuyuan Song, Qifeng Gu, Xinghui Shapiro-Ilan, David Ruan, Weibin J Nematol Arts & Humanities Chive gnat (Bradysia odoriphaga) is a soil-borne pest of Chinese chives, which causes millions of dollars in yield losses per year. Traditional methods, such as chemical pesticides leave detrimental chemical residues on plants, which potentially threaten human health. To find a sustainable method of reducing the chive gnat, the authors evaluated the effects of waterlogging and the addition of entomopathogenic nematode (EPN) on reducing chive gnat in Chinese chives via three pot experiments and one field demonstration. Results indicated that increasing the duration of waterlogging markedly increases chive gnat mortality. The presence of EPN also caused chive gnat mortality to increase with exposure time. Most importantly, the combination of waterlogging and EPN had synergistic effects on chive gnat mortality; the combination led to higher mortality than using waterlogging and EPN alone. The study demonstrated that a combination of two environmental friendly methods of fungus gnat control could lead to synergistic effects, which may provide novel approaches to economic and environmentally sustainable pest management measures. Exeley Inc. 2020-07-06 /pmc/articles/PMC7366836/ /pubmed/32628823 http://dx.doi.org/10.21307/jofnem-2020-057 Text en © 2020 Authors https://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/This is an Open Access article licensed under the Creative Commons CC BY 4.0 license, https://creativecommons.org/licenses/by/4.0/
spellingShingle Arts & Humanities
Chen, Chaoying
Ma, Haikun
Ma, Mingyang
Li, Jingjing
Zheng, Shuyuan
Song, Qifeng
Gu, Xinghui
Shapiro-Ilan, David
Ruan, Weibin
An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title_full An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title_fullStr An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title_full_unstemmed An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title_short An innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
title_sort innovative strategy for control of fungus gnats using entomopathogenic nematodes alone or in combination with waterlogging
topic Arts & Humanities
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7366836/
https://www.ncbi.nlm.nih.gov/pubmed/32628823
http://dx.doi.org/10.21307/jofnem-2020-057
work_keys_str_mv AT chenchaoying aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT mahaikun aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT mamingyang aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT lijingjing aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT zhengshuyuan aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT songqifeng aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT guxinghui aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT shapiroilandavid aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT ruanweibin aninnovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT chenchaoying innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT mahaikun innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT mamingyang innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT lijingjing innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT zhengshuyuan innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT songqifeng innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT guxinghui innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT shapiroilandavid innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging
AT ruanweibin innovativestrategyforcontroloffungusgnatsusingentomopathogenicnematodesaloneorincombinationwithwaterlogging