Javascript must be enabled to continue!
Exogenous systemin peptide treatment in olive alters Bactrocera oleae (Diptera, Tephritidae) oviposition preference
View through CrossRef
Abstract
The olive fruit fly, Bactrocera oleae (Rossi), is a key pest of the olive crop, whose control relies mostly on the use of insecticides. Plant peptides may represent a more environmentally-friendly tool to manage olive fly, due to their recognized role to activate and/or prime plant defence responses against pests. In this work, behavioural experiments (no-choice and two-choice) and analysis of volatile compounds were carried out in order to evaluate the impact of the exogenous application of the peptide systemin to olive tree on olive fly infestation, and to elucidate its mode of action to prime plant defence. The treatment of olive branches with 10 nM systemin showed to confer protection against olive fly, by reducing significantly the ovipositions (up to 3.0-fold) and the number of infested fruits (up to 2.9-fold) when compared to not-treated branches. This protective effect was even detected in neighbouring not-treated branches, suggesting the ability of systemin to trigger plant-to-plant communication. The deterrent activity of the primed olives was associated with the emission of the volatiles 2-ethyl-1-hexanol, 4-tert-butylcyclohexyl acetate and 1,2,3-trimethyl-benzene, which were negatively correlated with oviposition and fly infestation. Systemin also showed to trigger the biosynthesis of specific volatiles (esters) in olives in response to fly attacks. Overall, the observed protection conferred by systemin against olive fly is likely due to the emission of specific volatiles that can act as a defence and/or as signalling molecules to upregulate the plant defence response. Thus, systemin represents a novel and useful tool to manage olive fruit fly.
Research Square Platform LLC
Title: Exogenous systemin peptide treatment in olive alters Bactrocera oleae (Diptera, Tephritidae) oviposition preference
Description:
Abstract
The olive fruit fly, Bactrocera oleae (Rossi), is a key pest of the olive crop, whose control relies mostly on the use of insecticides.
Plant peptides may represent a more environmentally-friendly tool to manage olive fly, due to their recognized role to activate and/or prime plant defence responses against pests.
In this work, behavioural experiments (no-choice and two-choice) and analysis of volatile compounds were carried out in order to evaluate the impact of the exogenous application of the peptide systemin to olive tree on olive fly infestation, and to elucidate its mode of action to prime plant defence.
The treatment of olive branches with 10 nM systemin showed to confer protection against olive fly, by reducing significantly the ovipositions (up to 3.
0-fold) and the number of infested fruits (up to 2.
9-fold) when compared to not-treated branches.
This protective effect was even detected in neighbouring not-treated branches, suggesting the ability of systemin to trigger plant-to-plant communication.
The deterrent activity of the primed olives was associated with the emission of the volatiles 2-ethyl-1-hexanol, 4-tert-butylcyclohexyl acetate and 1,2,3-trimethyl-benzene, which were negatively correlated with oviposition and fly infestation.
Systemin also showed to trigger the biosynthesis of specific volatiles (esters) in olives in response to fly attacks.
Overall, the observed protection conferred by systemin against olive fly is likely due to the emission of specific volatiles that can act as a defence and/or as signalling molecules to upregulate the plant defence response.
Thus, systemin represents a novel and useful tool to manage olive fruit fly.
Related Results
Flight activity of Bactrocera oleae (Rossi, 1790) (Diptera: Tephritidae) infesting two Algerian olive varieties in north-west Algeria
Flight activity of Bactrocera oleae (Rossi, 1790) (Diptera: Tephritidae) infesting two Algerian olive varieties in north-west Algeria
Bactrocera oleae (Rossi, 1790) (Diptera: Tephritidae) is the most dangerous insect pest of the olive tree in the Mediterranean region. This study was conducted in the Mascara regio...
First Record of Cheiloneurus clαviger (Thomson) (Hymenoptera: Encyrtidae) on Corfu Island
First Record of Cheiloneurus clαviger (Thomson) (Hymenoptera: Encyrtidae) on Corfu Island
During an ongoing research programme on Saissetia oleae (Oliv.) (Homoptera: Coccidae) and its parasites on the island of Corfu, the presence of the hyperparasite Cheiloneurus clαvi...
Thyroid-Modulating Activities of Olive and Its Polyphenols: A Systematic Review
Thyroid-Modulating Activities of Olive and Its Polyphenols: A Systematic Review
Olive oil, which is commonly used in the Mediterranean diet, is known for its health benefits related to the reduction of the risks of cancer, coronary heart disease, hypertension,...
Fluktuasi Populasi Lalat Buah Bactrocera spp. (Diptera : Tephritidae) pada Pertanaman Cabai Merah (Capsicum Annuum) di Kabupaten Bandung, Jawa Barat
Fluktuasi Populasi Lalat Buah Bactrocera spp. (Diptera : Tephritidae) pada Pertanaman Cabai Merah (Capsicum Annuum) di Kabupaten Bandung, Jawa Barat
ABSTRACTFluctuation population of fruit flies Batrocera spp. (Dipthera: Tephritidae) on chilli (Capsicum annuum) plantation areas in Bandung Regency, West JavaFruit flies (Bactroce...
The attractive host volatiles can enhance oviposition of Anoplophora glabripennis on a non‐host tree
The attractive host volatiles can enhance oviposition of Anoplophora glabripennis on a non‐host tree
AbstractBackgroundThe Asian longhorned beetle (ALB), Anoplophora glabripennis, is a serious wood borer of hardwood trees. Populus deltoides ‘Shalinyang’ (PdS) is attractive to ALB ...
Development of Net-Zero Emission Olive Oil Mills in the Island of Crete, Greece
Development of Net-Zero Emission Olive Oil Mills in the Island of Crete, Greece
Olive oil industry is one of the main industries in the island of Crete, Greece. Olive oil is extracted in around 550 small-size olive oil mills in the island. These olive oil mill...
Specialist pollinating seed predator exhibits oviposition strategy consistent with optimal oviposition theory
Specialist pollinating seed predator exhibits oviposition strategy consistent with optimal oviposition theory
Abstract
The outcome of mutualistic interactions depends on the co...
Kaolin clay for sustainable olive growing: Biophysical protection and environmental compatibility
Kaolin clay for sustainable olive growing: Biophysical protection and environmental compatibility
Olive cultivation faces increasing challenges from environmental stressors such as extreme heat, water scarcity, and pest infestations, especially the olive fruit fly (Bactrocera o...

