Unpublished conference/Abstract (Scientific congresses and symposiums)
两种挥发性化学信息素与小麦-豌豆间作协同作用
Xu, Qingxuan; Chevalier Mendes Lopes, Thomas; Hatt, Séverin et al.
2016中国植物保护学会2016年学术年会/2016-Annual Conference of Chinese Society for Plant Protection
 

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Keywords :
Biological Control; Methyl Salicylate; E-b-farnesene; Attract-Reward; Ecological agricultural
Abstract :
[en] Abstract: The concept of pest control has been changed from traditional “kill” to scientific “regulation”. Ecological regulation has become one of the hotspots in the field of sustainable agriculture. Intercropping (i.e., the simultaneous growing of two or more species in the same field for a significant period but without necessarily being sown and harvested at the same time), is one way to increase the plant diversity. In addition to intercropping, semiochemicals (i.e., informative molecules used in insect-insect or plant-insect interactions) have been widely considered within various Integrated Pest Management (IPM) strategies. Laboratory and field studies have demonstrated that releasing semiochemicals has the potential to simultaneously repel pests and attract natural enemies. For instance, methyl salicylate (MeSA) is a herbivore-induced plant volatile that is repellent to Rhopalosiphum padi (L.) and other cereal aphids, while being attractive to aphid predators such as ladybeetles, lacewings and hoverflies, and increasing parasitism rate. Moreover, the aphid alarm pheromone, which major component is E-β-farnesene (EBF), acts as a repellent for plant herbivores, and attracts predatory beetles, hoverflies and increase parasitism rate. Combining both strategies could be an interesting way to maximize pest control. In a 2 year set-up (March-August 2015, 2016), a wheat-pea strip intercropping combined with the release of EBF or MeSA was tested in Gembloux to improve push-pull strategy by repelling aphids and by attracting beneficials simultaneously. The results showed that the abundance of aphids, lacewings and mummified aphids on both pea plants and wheat tillers were all affected by the release of oil formulated EBF and MeSA. Parasitism rate was also affected by the treatments on both crops in both years. The occurrence of wheat aphids and pea aphids were reduced by 35% and 30%. In the case of wheat and pea, pea aphids peak earlier than wheat ones (in the present study on plants, pea aphids: 17 June 2015 and 3 June 2016, while wheat aphids: 25 June 2015 and 10 June 2016), hence associating these two crops allows natural enemies to quickly move from pea to wheat and controlling pests in the course of their occurrence, in fine protecting both crops. Wheat–pea intercropping combined with EBF oil and MeSA release, enhanced the abundance of predators and parasitoids on the pea, our results strongly support the efficacy of combining intercropping and semiochemical release to attain improved pest control. Key words: Ecological regulation; Methyl salicylate; Aphid alarm pheromone; Push-pull; Green control
Disciplines :
Entomology & pest control
Author, co-author :
Xu, Qingxuan ;  Université de Liège - ULiège > Doct. sc. agro. & ingé. biol. (Paysage)
Chevalier Mendes Lopes, Thomas ;  Université de Liège > Agronomie, Bio-ingénierie et Chimie (AgroBioChem) > Entomologie fonctionnelle et évolutive
Hatt, Séverin ;  Université de Liège > Agronomie, Bio-ingénierie et Chimie (AgroBioChem) > Entomologie fonctionnelle et évolutive
Francis, Frédéric  ;  Université de Liège > Agronomie, Bio-ingénierie et Chimie (AgroBioChem) > Entomologie fonctionnelle et évolutive
Chen, Julian;  Chinese Academy of Agricultural Science > Institute of Plant Protection
Language :
Chinese
Title :
两种挥发性化学信息素与小麦-豌豆间作协同作用
Alternative titles :
[en] Effect of two types of semiochemical on population development of aphids in wheat-pea intercropping in Belgium
Publication date :
10 November 2016
Event name :
中国植物保护学会2016年学术年会/2016-Annual Conference of Chinese Society for Plant Protection
Event date :
10-13 Nov. 2016
Audience :
International
Name of the research project :
中比国际科技合作项目(2014DFG32270)
Available on ORBi :
since 19 December 2016

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