Comparative toxicity and enzymatic detoxification responses in Spodoptera frugiperda (Lepidoptera: Noctuidae) to two insecticides

被引:4
作者
Zhang, Qiangyan [1 ]
Wang, Fawu [1 ]
Ul Haq, Inzamam [2 ]
Li, Chunchun [1 ]
Gou, Yuping [1 ]
Zhang, Kexin [1 ]
Liu, Huiping [1 ]
Liu, Changzhong [1 ]
机构
[1] Gansu Agr Univ, Coll Plant Protect, Biocontrol Engn Lab Crop Dis & Pests Gansu Prov, Lanzhou 730070, Peoples R China
[2] Fujian Agr & Forestry Univ, State Key Lab Ecol Pest Control Fujian & Taiwan Cr, Fuzhou 350002, Peoples R China
关键词
Fall armyworm; Exposure duration; Detoxification enzymes; Sublethal effects; Insecticide resistance; Pest management; INVASIVE FALL ARMYWORM; ORGANOPHOSPHATE INSECTICIDES; FIELD POPULATIONS; RESISTANCE; MECHANISMS; ACETYLCHOLINESTERASE; TRANSFERASES; EXPOSURE; INSECTS; LITURA;
D O I
10.1016/j.ecoenv.2024.116917
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The fall armyworm (FAW), Spodoptera frugiperda Smith (Lepidoptera: Noctuidae), poses a significant threat to food security, necessitating effective management strategies. While chemical control remains a primary approach, understanding the toxicity and detoxification mechanisms of different insecticides is crucial. In this study, we conducted leaf-dipping bioassays to assess the toxicity of quinalphos and beta-cypermethrin center dot emamectin benzoate ((3-cyp center dot EMB) on S. frugiperda larvae. Additionally, we assessed the response of alterations in CarE, GST, MFO, and AChE activities to sublethal concentrations of these insecticides over various treatment durations. Results indicated that (3-cyp center dot EMB exhibited higher toxicity than quinalphos in S. frugiperda. . Interestingly, the highest activities of GST, CarE, MFO, and AChE were observed at 6 h exposure to LC10 10 and LC25 25 of (3-cyp center dot EMB, surpassing equivalent sublethal concentrations of quinalphos. Subsequently, GST and CarE activities exposure to (3-cyp center dot EMB steadily decreased, while MFO and AChE activities exposure to both insecticides was initially decreased then increased. Conversely, two sublethal concentrations of quinalphos notably enhanced GST activity across all exposure durations, with significantly higher than (3-cyp center dot EMB at 12-48 h. Similarly, CarE activity was also increased at various durations. Our research has exhibited significant alterations in enzyme activities exposure to both concentration and duration. Furthermore, Pearson correlation analysis showed significant correlations among these enzyme activities at different treatment durations. These findings contribute to a better understanding of detoxification mechanisms across different insecticides, providing valuable insights for the rational management of S. frugiperda populations.
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页数:11
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共 70 条
[1]   Sublethal effects of buprofezin on development and reproduction in the white-backed planthopper, Sogatella furcifera (Hemiptera: Delphacidae) [J].
Ali, Ehsan ;
Liao, Xun ;
Yang, Peng ;
Mao, Kaikai ;
Zhang, Xiaolei ;
Shakeel, Muhammad ;
Salim, Abdalla M. A. ;
Wan, Hu ;
Li, Jianhong .
SCIENTIFIC REPORTS, 2017, 7
[2]   Could resistance to insecticides in Plutella xylostella (Lep., Plutellidae) be overcome by insecticide mixtures? [J].
Attique, MNR ;
Khaliq, A ;
Sayyed, AH .
JOURNAL OF APPLIED ENTOMOLOGY, 2006, 130 (02) :122-127
[3]   Exposure to sublethal doses of insecticide and their effects on insects at cellular and physiological levels [J].
Bantz, Alexandre ;
Camon, Jeremy ;
Froger, Josy-Anne ;
Goven, Delphine ;
Raymond, Valerie .
CURRENT OPINION IN INSECT SCIENCE, 2018, 30 :73-78
[4]   Antifeedant and sublethal effects of imidacloprid on Asian citrus psyllid, Diaphorina citri [J].
Boina, Dhana Raj ;
Onagbola, Ebenezer O. ;
Salyani, Masoud ;
Stelinski, Lukasz L. .
PEST MANAGEMENT SCIENCE, 2009, 65 (08) :870-877
[5]   Selection and characterization of the inheritance of resistance of Spodoptera frugiperda (Lepidoptera: Noctuidae) to chlorantraniliprole and cross-resistance to other diamide insecticides [J].
Bolzan, Anderson ;
Padovez, Fernando E. O. ;
Nascimento, Antonio R. B. ;
Kaiser, Ingrid S. ;
Lira, Ewerton C. ;
Amaral, Fernando S. A. ;
Kanno, Rubens H. ;
Malaquias, Jose B. ;
Omoto, Celso .
PEST MANAGEMENT SCIENCE, 2019, 75 (10) :2682-2689
[6]   Investigating the Molecular Mechanisms of Organophosphate and Pyrethroid Resistance in the Fall Armyworm Spodoptera frugiperda [J].
Carvalho, Renato A. ;
Omoto, Celso ;
Field, Linda M. ;
Williamson, Martin S. ;
Bass, Chris .
PLOS ONE, 2013, 8 (04)
[7]   Neuroactive Insecticides: Targets, Selectivity, Resistance, and Secondary Effects [J].
Casida, John E. ;
Durkin, Kathleen A. .
ANNUAL REVIEW OF ENTOMOLOGY, VOL 58, 2013, 58 :99-117
[8]   Molecular methods to detect Spodoptera frugiperda in Ghana, and implications for monitoring the spread of invasive species in developing countries [J].
Cock, Matthew J. W. ;
Beseh, Patrick K. ;
Buddie, Alan G. ;
Cafa, Giovanni ;
Crozier, Jayne .
SCIENTIFIC REPORTS, 2017, 7
[9]   Green peach aphid, Myzus persicae (Hemiptera: Aphididae), reproduction during exposure to sublethal concentrations of imidacloprid and azadirachtin [J].
Cutler, G. Christopher ;
Ramanaidu, Krilen ;
Astatkie, T. ;
Isman, Murray B. .
PEST MANAGEMENT SCIENCE, 2009, 65 (02) :205-209
[10]   The role of detoxification enzymes in the susceptibility of Brevipalpus californicus exposed to acaricide and insecticide mixtures [J].
Della Vechia, Jaqueline F. ;
Van Leeuwen, Thomas ;
Rossi, Guilherme D. ;
Andrade, Daniel J. .
PESTICIDE BIOCHEMISTRY AND PHYSIOLOGY, 2021, 175