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Pestic Biochem Physiol


Title:The aggregation pheromone phenylacetonitrile: Joint action with the entomopathogenic fungus Metarhizium anisopliae var. acridum and physiological and transcriptomic effects on Schistocerca gregaria nymphs
Author(s):Abdellaoui K; Miladi M; Mkhinini M; Boughattas I; Ben Hamouda A; Hajji-Hedfi L; Tlili H; Acheuk F;
Address:"Department of Biological Sciences and Plant Protection, Higher Agronomic Institute of Chott Mariem, Sousse University, Tunisia. Electronic address: kemais_a@yahoo.fr. Department of Biological Sciences and Plant Protection, Higher Agronomic Institute of Chott Mariem, Sousse University, Tunisia. Laboratory of Biochemistry and Environmental Toxicology, Higher Agronomic Institute of Chott Mariem, Sousse University, Tunisia. Department of Biological Sciences, Faculty of Science of Tunis, University of Tunis El Manar, Tunisia. Laboratory of Valorization and Conservation of Biological Resources 'Valcore' Department of Biology, Faculty of Sciences, University of Boumerdes, Algeria"
Journal Title:Pestic Biochem Physiol
Year:2020
Volume:20200423
Issue:
Page Number:104594 -
DOI: 10.1016/j.pestbp.2020.104594
ISSN/ISBN:1095-9939 (Electronic) 0048-3575 (Linking)
Abstract:"The combined use of entomopathogenic fungi and sublethal rate of chemical insecticides or other biological control agents have been proposed as an environmentally and sustainable strategy in the control of locust pests. In this paper, the quarter and the half of the recommended dose of Metarhizium anisopliae var. acridum ((1/4) and (1/2) Ma) and the aggregation pheromone (Phenylacetonitrile: PAN) were applied simultaneously and sequentially to Schistocerca gregaria fifth-instar nymphs. In addition, the physiological effects of PAN on locusts were assessed at the behavior, immune response, and biochemical level by evaluating for glutathione-S-transferase (GST), acetylcholinesterase inhibition (AChE), and malondialdehyde accumulation (MDA). Results showed that simultaneous application of PAN and the entomopathogenic fungus exhibited additive interaction. Synergistic interaction was also demonstrated when nymphs were exposed to PAN first, then treated with M. anisopliae var. acridum. Behavioral bioassay revealed that fifth-instar nymphs avoided the PAN odour and tended to remain away from the stimulus cup. In the choice assay, the pheromone significantly repelled the locusts at 2, 4, and 6 h of exposure which selected the PAN-free arena chamber. Moreover, treated nymphs become hyperactive and disoriented as evidenced by the cumulative distance travelled and the trajectory of locusts during the experiment. Immunological studies showed that PAN significantly decreased the differential haemocyte counts (prohemocytes and plasmatocytes) with a dose-response relationship. Data of biochemical analyzes showed that the PAN exposure reduced the activity of acetylcholinesterase and induced significantly the glutathione S-transferases and MDA concentration in the desert locust fifth-instar nymphs. Moreover, transcriptomic responses to the PAN exposure were evaluated using gene expression levels of CYP540 and GST. The transcript levels showed an up-regulation in GST expression level particularly in nymphs exposed for 4 and 6 h. A significant increase in CYP450 transcript level was also observed after 2 h of exposure, which decreased significantly after 4 and 6 h"
Keywords:Acetonitriles Animals *Grasshoppers *Metarhizium Pheromones Transcriptome Gene expression Metarhizium Oxidative stress Phenylacetonitrile Physiology S.gregaria;
Notes:"MedlineAbdellaoui, Khemais Miladi, Meriam Mkhinini, Marouane Boughattas, Iteb Ben Hamouda, Amel Hajji-Hedfi, Lobna Tlili, Haithem Acheuk, Fatma eng 2020/06/13 Pestic Biochem Physiol. 2020 Jul; 167:104594. doi: 10.1016/j.pestbp.2020.104594. Epub 2020 Apr 23"

 
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