• Title/Summary/Keyword: Sex pheromone trap

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Control of Beet Armyworm, Spodoptera exigua Hubner (Lepidoptera : Noctuidae), using Synthetic Sex Pheromone I. Control by Mass Trapping in Allium fistulosum Field (합성 성훼로몬에 의한 파밤나방(Spodoptera exigua)의 방제 I. 외대파에서의 대량유살에 의한 방제)

  • 박종대;고현관
    • Korean journal of applied entomology
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    • v.31 no.1
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    • pp.45-49
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    • 1992
  • Studies were conducted to control Spodoptera exigua in Allium fistulosum field using synthetic sex pheromone trap. Heavily, medium and lightly damagd fields at early transplanting time showed no differences in control effects after 8 weeks of establishment of pheromone traps in Allium fistulosum fields. Number of damaged leaves in each treated field was 0.2-3 individuals per 60 hills comparing with 33.2 individuals at non-treated field. Also, the numbers uf male adults attracted to pheromone traps were 1.8-5.0 individuals at the big inning of installation but increased to 25.8, 49.9, 74.9, and 77.4 individuals after 2, 4, 6, and 8 weeks, respectively. There was a negative correlation between amount of male adults attracted to pheromone traps and number of damaged leaves (r=-0.9572*). Number of adults attracted to various colored light trap for 30 days were 6 in red, 11 in white and none in blue comparing with 1,041 individuals in pheromone trap.

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Monitoring of Mythimna separata Adults by Using a Remote-sensing Sex Pheromone Trap (원격감지 성페로몬트랩을 이용한 멸강나방(Mythimna separata) 성충 예찰)

  • Jung, Jin Kyo;Seo, Bo Yoon;Cho, Jum Rae;Kim, Yong
    • Korean journal of applied entomology
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    • v.52 no.4
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    • pp.341-348
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    • 2013
  • We desinged and evaluated a remote-sensing sex pheromone trap for real-time monitoring of Mythimna separata (Lepidoptera: Noctuidae), a migratory insect in Korea. The system consisted of a modified cone-trap with a sex pheromone lure, a sensing module based on light interruption, a signal transmission module based on code division multiple access, a main electronic board for system control, a power supply based on a solar collector, a stainless steel-pole supporting the system, and a signal collection and display system based on an internet web page. The ratio (>92%) of the actual number of insects to the signal number in the remote-sensing trap was improved by sensing only within a limited period at night on the basis of the insect's circadian rhythm, control of signal sensitivity on the basis of sensing software programming, 1-h interval for signal transmission, and adjustment of the signal transmission program. The signal occurrence pattern in the remote-sensing trap was conclusively similar (correlation coefficient, >0.98) to the actual pattern of adult occurrence in the trap. The result indicated that the remote-sensing trap based on the attraction of the sex pheromone lure for M. separata has a promising potential for practical use. Occurrence of M. separata adults was observed several times in 2011 and 2012, and the peaks were sharp.

Ecological Characteristics of Adoxophyes sp. at Tea Tree Plantation (차애모무늬잎말이나방(Adoxophyes sp.)의 생태에 관한 연구)

  • 이승찬;김도익;김상수
    • Korean journal of applied entomology
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    • v.32 no.3
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    • pp.279-284
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    • 1993
  • This experiment was conducted to investigate the seasonal fluctuation of population density and the life history of Adoxophyes sp .. Under field-cage conditions, smaller tea tortrix had 4-5 generations a year. The average periods from egg to adult emergence were 43.7 days in spring and fall, and 35.2 days in summer. The average longevity of adults was 7.0 days in spring and fall, and 6.3 days in summer. The average numbers of egg masses and eggs laid by a female were 1.8 and 40.4 m spring and fall, and 2.3 and 49.5 in summer, respectively. Population density of smaller tea tortrix estimated by sex pheromone trap and light trap showed four peaks in each late May, late June, middle August and late September. The number of individuals caught by sex pheromone trap was 2~4 times as large as that by jight trap. Smaller tea tartrix overwimered in larval stage in southern region af Korea.

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Attractive Effect using Pheromone Trap of Various Conditions Against the Peach Pyralid Moth, Dichocrocis punctiferalis (복숭아명나방에 대한 페로몬 트랩의 처리조건에 따른 유인효과)

  • Kim, Young-Jae;Kim, Hyun Kyung;Kang, Kil-Nam;Kim, Young-Myung;Moon, Sun-Ju;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.17 no.3
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    • pp.200-205
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    • 2013
  • Mating disruption experiments were evaluated and compared in several pheromone traps and sex pheromone composition ratios at commercial chestnut garden for developing alternative control method of D. punctiferalis. The highest attractive was shown in Delta traps at the effective sex pheromone ratio of 75:25 (E10-16:A1:Z10-16:A1). Comparisons of domestic and imported pheromone constituents were not significant difference in 90:10 (E10-16:A1:Z10-16:A1). But, there was significant difference in sex pheromone ratio of 75:25. D. punctiferalis was caught the highest number in Gongju area for attractive test using pheromone trap. Attractive effects with dose of pheromone were showed the highest at 2.5 mg/lure and 1 mg/lure in Gongju area and Cheongyang area respectively. However, there was no significant difference among pheromone dose in Buyeo area. These data could be useful for eco-friendly managing of D. punctiferalis in the chestnut farm.

Factors Influencing Field Monitoring of the Oriental Fruit Moth, Grapholita molesta, with Sex Pheromone (성페로몬을 이용한 복숭아순나방(Grapholita molesta) 모니터링에 영향을 주는 요인)

  • Kim, Yong-Gyun;Jung, Sung-Chae;Bae, Sung-Woo;Kwon, Bo-Won;Yoon, Hyang-Mi;Hong, Yong-Pyo
    • Korean journal of applied entomology
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    • v.46 no.3
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    • pp.349-356
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    • 2007
  • Three active components (Z8-12:Ac, E8-12:Ac, and Z8-12:OH) are known in sex pheromone of the oriental fruit moth, Grapholita molesta, and have been commercially available to apply for population monitoring and mating disruption. However, there have been variation among commercial products in pheromone composition and amount impregnated in each pheromone releaser. This study was performed to optimize factors influencing on pheromone monitoring of G. molesta by analyzing pheromone composition/amount, effective period of releaser, and trap type/placement in apple trees. High purity of Z8-12:Ac component was effective to attract males, in which 96% or more of cis acetate isomer component appeared to be optimal composition. Pheromone amounts ($0.01-1\;{\mu}g$) impregnated in each rubber dispenser did not give significant effect on monitoring during 90 days from June to August. "Delta" trap was much more efficient than "cone" trap to collect males. Trap installation was another factor, in which placing traps at canopy level was much efficient than at trunk or ground levels. Pheromone trap monitoring with these optimal factors indicated three to four adult peaks from June to September in addition to high overwintering population from April to May in pesticide-applied orchards in Andong, Korea.

Attraction Effects of Sex Pheromone and LED Mass-Trap to Spodoptera exigua and Spodoptera litura (Fabricius) Adults around the Tomato Greenhouse (토마토 재배지 성페로몬 및 LED 유인 트랩을 이용한 파밤나방(Spodoptera exigua)과 담배거세미나방(Spodoptera litura) 대량 포획)

  • Lee, Jung Sup;Bang, Ji Wong;Lee, Jae Han;Jang, Hye Sook
    • Journal of Bio-Environment Control
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    • v.31 no.1
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    • pp.22-27
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    • 2022
  • The attraction effects of light emitting diode (LED) trap to Spodoptera exigua and Spodoptera litura adults were evaluated in greenhouse and compared with those of no light trap, which is typical used in commercial trap. At this time, in order to attract these two species of moths, sex pheromone traps were installed at the top side according to the degree of tomato growth inside the tomato cultivation greenhouse around the LED trap. In addition, two types of light-emitting traps (420 nm, 470 nm) were installed in the greenhouse at 1/40 m2, respectively. Also two sex pheromone were installed inside of the greenhouse according to the height of the tomato plants. 10 days later, Blue-light trap(BLB, 470 nm wavelength) was 3.1-3.5 times more attractive than Violet-light trap(VLB, 420 nm wavelength) in S. exigua (105.6 ± 7.3) and S. litura (42.0 ± 3.1) respectively, whereas the no-light trap was little attractive to S. exigua (33.7 ± 2.8) and S. litura (12.0 ± 1.5). On the other hand, after the installation of the sex pheromone trap and the LED trap, there was no damage to S. litura (Fabricius) and S. exigua in the pesticide-free area, indicating a high possibility of control. At this time, the operating cost of the two types of LED traps was 80 won/m2 per unit area, and it was confirmed that both types of moths could be controlled. In addition, as a result of confirming the number of two types of moths caught in the sexual pheromone trap and two types of LED traps after 4 months, it was judged that eco-friendly control was possible as more than 373 moths/trap were attracted to the two types of moths.

Electroantennogram Responses of Spodoptera frugiperda Males (Lepidoptera: Noctuidae) to Sex Pheromone Compounds (열대거세미나방 성페로몬 성분에 대한 수컷의 촉각 반응)

  • Cho, Jum Rae;Kim, Jeong Hwan;Seo, Bo Yoon;Seo, Meeja;Lee, Gwan Seok
    • Korean journal of applied entomology
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    • v.60 no.4
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    • pp.363-367
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    • 2021
  • This study was conducted to investigate the EAG (electroantennogram) response of Spodoptera frugiperda male to sex pheromone compounds and whether or not S. frugiperda male adults would undergo double mating. The EAG response of S. frugiperda male adult to Z9-14:Ac increased in a dose-dependent as the dose increased. Among the 7 sex pheromone components investigated, male EAG recording was the highest to Z9-14:Ac. The EAG response of S. frugiperda male adult to the mixed sex pheromone component was greater than that to the single component. Male adults of S. frugiperda were capable of double mating under laboratory condition, and the secondary mating rate increased to 72.2% compared to the 58.3% of primary mating rate. The EAG response of mated S. frugiperda male adult was not different from that of unmated S. frugiperda male. In the net house test with sex pheromone lure, mated male adults were not captured during the test period. Also, strangely, unmated male adults were not captured even in a trap equipped with virgin female adults, although the antennae of mated male adult were responded to the sex pheromone component in the laboratory. Probably, it is thought that the mated male adults may not have been caught in the trap be due to flight ability which has been decreased after mating. The field attractiveness of S. frugiperda male adults to sex pheromones remains to be further elucidated.

Seasonal Phenology of the Cryptic Mealybug, Pseudococcus cryptus (Homoptera: Pseudococcidae) Based on Attraction of Adult Males to a Sex Pheromone Trap (성페로몬 트랩에 유인된 수컷 성충에 의한 귤애가루깍지벌레의 연중 발생특성)

  • Song, Jeong-Heub;Choi, Kyung-San;Hong, Soon-Yeong;Lee, Shin-Chan
    • Korean journal of applied entomology
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    • v.51 no.3
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    • pp.207-213
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    • 2012
  • The cryptic mealybug, Pseudococcus cryptus, has been increasingly damaging citrus, particularly those plants grown in plastic greenhouses. This study was conducted to monitor the seasonal phenology of adult male cryptic mealybugs and to determine the timing for control using a sex pheromone trap. Adult males responded to a synthetic sex pheromone and trap color. An increasing number of males were attracted to the traps with increasing concentrations of sex pheromone up to 5 mg. The males occurred annually four times and had three cohorts at a time due to different overwintering developmental stages. After overwintering the adult males began to in mid-late April. A positive correlation was observed between the number of adult males caught in traps and the mean density per twig of all motile stages except first stage nymphs of the cryptic mealybugs. The peak time for the first nymph to occur was estimated from the maximum attraction time of the males, and the cumulative degree days (DD) was 350 DD, similar with the preoviposition period.

Analysis on the Mass-Trapping Effects by Spodoptere litura (Fabricius) (Lepidoptera: Noctuidae) Sex Pheromone Traps Deployed around the Tomato Glasshouse (토마토 유리온실 주변에 설치된 담배거세미나방(Spodoptera litura(Fabricius)) 성페로몬 트랩에 의한 대량포획 효과분석)

  • Kim, Hwang-Yong;Kim, Jeong-Hwan;Son, Byeong-Gwan;Cho, Jum-Rae;Lee, Yong-Hwi;Kim, Yong-Heon;Choi, Man-Young
    • Korean journal of applied entomology
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    • v.48 no.2
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    • pp.245-251
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    • 2009
  • Without pesticide applications, mass-trapping by sex pheromone was successful to control Spodoptera litura (Fabricius) in a large scale tomato glasshouse (10,000 $m^2$) at a low cost of 60 won/$m^2$. Pheromone traps were placed both inside and outside of the glasshouse. Inside the glasshouse traps were installed in a regular space, one trap per 500 $m^2$, to catch the moths that were present in the glasshouse, and traps were also set outside of the glasshouse, at intervals of ca. 20 m, to prevent the moths from invading the glasshouse. In the experiment, more than 400 S. litura were captured per trap.

Occurrence Pattern of an Unidentified Moth Captured by Sex Pheromone Trap of the Oriental Fruit Moth, Grapholita molesta, and Its Discriminating Molecular Markers (복숭아순나방(Grapholita molesta) 성페로몬 트랩에 포획된 미동정 나방의 발생패턴과 판별 분자지표)

  • Huh, Hye-Jung;Son, Ye-Rim;Kim, Yong-Gyun
    • Korean journal of applied entomology
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    • v.47 no.3
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    • pp.303-308
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    • 2008
  • An unidentified moth was captured in sex pheromone traps of the oriental fruit moth, Grapholita molesta, especially at spring season in apple orchards and their vicinity. Though the captured males were similar in appearance to G. molesta males, they were easily distinguished by a matted difference in body size. Their occurrence pattern was also similar to that of overwintering G. molesta population from April to May, at which more males were captured in the pheromone traps installed in the vicinity of apple orchards than within apple orchards. After May, they were no longer captured in the pheromone traps. To investigate any larval damage due to this unidentified moth, molecular markers needed to be developed. Four PCR-RFLP markers originated from cytochrome b region of mitochondrial DNA could distinguish this unidentified moth from G. molesta.