Application of Agroecological Crop Protection to Fruit Crops: The BIOPHYTO Experience

2017 ◽  
pp. 77-107 ◽  
Author(s):  
Caroline Gloanec ◽  
Jean-Philippe Deguine ◽  
Didier Vincenot ◽  
Philippe Laurent ◽  
Maxime Jacquot ◽  
...  
Keyword(s):  
2010 ◽  
Vol 3 (1) ◽  
pp. 29-61 ◽  
Author(s):  
Robert Bartelt ◽  
Mofakhar Hossain

AbstractNitidulid beetles of the genus Carpophilus are significant pests of a wide variety of fruits and grains and are also vectors of harmful microorganisms. The beetles are difficult to control with conventional insecticides because the beetle damage typically occurs just before harvest, when toxic residues must be avoided. These insects are generally attracted to scents such as from overripe or decomposing fruit. Starting in the 1960's, research was done to develop fermenting fruit and similar materials as trap baits, initially with the intent of achieving beetle control. These studies provided much new information about the ecology and chemistry of host location, but they did not prove successful in protecting crops from beetle damage. Beginning in the late 1980's, pheromones were discovered in Carpophilus beetles. These were potent, male-produced aggregation pheromones, and over the next 20 years much new information was gained about their ecological properties, physiology, and novel chemistry. Importantly, the pheromones were strongly synergistic with fermenting host odors, and the combination was far more attractive than fruit-related baits or pheromones alone, which greatly improved the ability to attract these pests to traps. A practical attract-and-kill method using the pheromones and host volatiles has been developed in Australia and shown to be at least as effective as insecticides for protecting stone fruit crops.


2011 ◽  
Vol 6 (3) ◽  
pp. 1934578X1100600 ◽  
Author(s):  
Huguette Agnaniet ◽  
Abdelhamid Agrebi ◽  
Raphaël Bikanga ◽  
Thomas Makani ◽  
Jacques Lebibi ◽  
...  

Water distilled essential oils from leaves of Plectranthus tenuicaulis (Hook. f.) J. K. Morton collected in Gabon were analyzed using GC-FID and GC-MS. The main constituent, unusual within the genus Plectranthus, was isolated and formally identified as being the (+)-( R)-enantiomer of ( E)-6,7-epoxyocimene [( E)-myroxide]. This enantiomer, which represents about 75% of the essential oil, has been previously identified as a pheromone emitted by the male fruit-spotting bug Amblypelta nitida; this insect is responsible of destruction of most fruit crops in tropical and subtropical areas. The potential application of P. tenuicaulis essential oil in crop protection programs is discussed and the atypical chemical profile of the gabonese essential oil is compared with those previously reported in the genus Plectranthus (or Coleus).


Planta Medica ◽  
2016 ◽  
Vol 81 (S 01) ◽  
pp. S1-S381 ◽  
Author(s):  
A Bruguière ◽  
AM Le Ray ◽  
D Bréard ◽  
N Blon ◽  
N Bataillé ◽  
...  

ENTOMON ◽  
2020 ◽  
Vol 45 (1) ◽  
pp. 81-86
Author(s):  
Mohammad Yosof Amini ◽  
Ahamad Shah Mohammadi ◽  
Srinivasa N ◽  
Onkarappa S

False spider mites are serious pests of pomegranate and frequently cause considerable economic losses in other fruit crops as well. A field experiment conducted to evaluate eleven acaricides against Tenuipalpus aboharensis infesting pomegranate plants, revealed that wettable sulphur at 2.5 g and dicofol at 2.5 ml per litre were very effective and other acaricides viz. propargite, fenpyroximate, chlorfenapyr and buprofezin were also found effective against T. aboharensis.


2020 ◽  
Vol 31 (2) ◽  
pp. 83-88 ◽  
Author(s):  
Fernando K. Carvalho ◽  
Rodolfo G. Chechetto ◽  
Alisson A. B. Mota ◽  
Ulisses R. Antuniassi

Crop protection on major crops is now required to follow the principles of integrated pest management so the timing and accuracy of any application of a pesticide or biopesticide has to be more precise to minimize adverse effects on non-target species. The development of UAVs (unmanned aerial vehicles) provides a means of providing a more targeted application of the correct dose, especially by using formulations that are more persistent, thus minimizing loss of spray in areas subject to rain. Avoiding use of too high a dosage allows greater survival of natural enemies and reduces the selection pressure for pests becoming resistant to specific modes of action. The downward flow of air from a UAV should also provide better distribution and impaction of droplets within a crop canopy, reduce soil impaction caused by taking heavy loads of spray applied with 200 l ha–1 of water, and allow treatments when fields are too wet to access with ground equipment. In Asia, many smallholder farmers are using a drone in preference to using a knapsack sprayer. According to Matthews, it has been shown that ULV spraying can be effective, but it needs a narrow droplet spectrum with the droplets remaining stable and not shrinking to become too small. Formulation research can reduce the volatility of the spray, hence the success of oil-based sprays. However, instead of petroleum-based oils, there is a chance to develop vegetable oil carriers with micro-sized particle suspensions to deliver low toxicity pesticides in droplets that can be deposited within the crop and not drift beyond the crop boundary. Oil deposits will be less prone to loss after rain so less should be lost in neighbouring ditches and water courses, especially as rainfall patterns are forecast to change. More studies are needed to evaluate the swath for deposition, buffer zones, formulation, nozzle selection, to guide future specific legislation for UAV applications.


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