TY - JOUR
T1 - Development of multi-component non-sex pheromone blends to monitor both sexes of Cydia pomonella (Lepidoptera: Tortricidae)
AU - Preti, Michele
AU - Knight, Alan Lee
AU - Mujica, Maria Valentina
AU - Basoalto, Esteban
AU - Larsson Herrera, Sebastian
AU - Tasin, Marco
AU - Angeli, Sergio
PY - 2021
Y1 - 2021
N2 - Nineteen host plant volatiles (HPVs) were screened for attractivity to adult codling moth Cydia pomonella (L.) as a fourth component of core blends (3K) including (E,Z)-2,4-ethyl decadienoate, (E)-4,8-dimethyl-1,3,7-nonatriene and acetic acid. Each new quaternary combination was compared with a previously reported attractive bisexual lure (4K), consisting of the 3K blend plus 6-ethenyl-2,2,6-trimethyloxan-3-ol (pyranoid linalool oxide, pyrLOX). All lure evaluations were conducted in apple, Malus domestica (Borkhausen). Several compounds were found to significantly lower total and/or female catches when added to the 3K blend, including (Z)-3-hexenol, (E)-2-hexanal and hexyl butanoate (female and total moths), and (Z)-3-hexenyl acetate and linalool (female moths). Other compounds when added to the 3K blend did not increase or decrease moth catches, including methyl salicylate, (E)-beta-ocimene, limonene, beta-caryophyllene, butyl hexanoate, farnesol, terpineol, terpinen-4-ol and alpha-pinene. A few added compounds significantly increased moth catches compared with the 3K blend, including beta-pinene (male moths), (Z)-jasmone (male and total moths), (E)-beta-farnesene and beta-myrcene (female and total moths), and (E,E)-alpha-farnesene (male, female, and total moths). In addition, each of these five compounds when added to the 3K core blend performed similarly to the 4K lure (male, females, and total moths). Further studies should expand these results through tests of these and other new blends with a range of component ratios and total loading amounts. Field trials should also be replicated within all host crops of codling moth and across major geographical production regions.
AB - Nineteen host plant volatiles (HPVs) were screened for attractivity to adult codling moth Cydia pomonella (L.) as a fourth component of core blends (3K) including (E,Z)-2,4-ethyl decadienoate, (E)-4,8-dimethyl-1,3,7-nonatriene and acetic acid. Each new quaternary combination was compared with a previously reported attractive bisexual lure (4K), consisting of the 3K blend plus 6-ethenyl-2,2,6-trimethyloxan-3-ol (pyranoid linalool oxide, pyrLOX). All lure evaluations were conducted in apple, Malus domestica (Borkhausen). Several compounds were found to significantly lower total and/or female catches when added to the 3K blend, including (Z)-3-hexenol, (E)-2-hexanal and hexyl butanoate (female and total moths), and (Z)-3-hexenyl acetate and linalool (female moths). Other compounds when added to the 3K blend did not increase or decrease moth catches, including methyl salicylate, (E)-beta-ocimene, limonene, beta-caryophyllene, butyl hexanoate, farnesol, terpineol, terpinen-4-ol and alpha-pinene. A few added compounds significantly increased moth catches compared with the 3K blend, including beta-pinene (male moths), (Z)-jasmone (male and total moths), (E)-beta-farnesene and beta-myrcene (female and total moths), and (E,E)-alpha-farnesene (male, female, and total moths). In addition, each of these five compounds when added to the 3K core blend performed similarly to the 4K lure (male, females, and total moths). Further studies should expand these results through tests of these and other new blends with a range of component ratios and total loading amounts. Field trials should also be replicated within all host crops of codling moth and across major geographical production regions.
KW - acetic acid
KW - codling moth
KW - kairomones
KW - linalool oxide
KW - nonatriene
KW - pear ester
KW - acetic acid
KW - codling moth
KW - kairomones
KW - linalool oxide
KW - nonatriene
KW - pear ester
UR - https://res.slu.se/id/publ/112008
U2 - 10.1111/jen.12898
DO - 10.1111/jen.12898
M3 - Journal article
SN - 0931-2048
VL - 145
SP - 822
EP - 830
JO - Journal of Applied Entomology
JF - Journal of Applied Entomology
IS - 8
ER -