• Title/Summary/Keyword: 청색점착트랩

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Attraction Effect of Blue Light Emitting Trap Combination of Sticky Trap for Trialeurodes vaporariorum (Hemiptera : Aleyrodidae) Capture in Tomato Greenhouse (토마토 온실에서 청색 발광 및 점착트랩을 이용한 온실가루이 유인 효과)

  • Lee, Jung Sup;Lee, Jae Han;Kwon, Joon Kook;Park, Kyoung Sub;Kim, Jin Hyun;Lee, Dong Soo
    • Journal of Bio-Environment Control
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    • v.27 no.3
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    • pp.239-244
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    • 2018
  • The effect of the trap equipped with diverse light-emitting lamp on the lure efficiency of whitefly (Trialeurodes vaporariorum) was investigated in the greenhouse cultivating tomato. The light-emitting lamp type equipped to trap was blue, yellow, and white light-emitting lamp. The experiment results showed that trap equipped with blue light-emitting lamp captured the most number of $110{\pm}3.2$ adult whitefly and the number of captured adult whitefly was $71{\pm}1.4$ at yellow light-emitting lamp trap and $45{\pm}1$ at white light-emitting lamp trap respectively. The wavelength distribution band of blue light-emitting lamp was between 330 nm and 430 nm. The wavelength band of yellow and white light-emitting lamp contain repellent wavelength band at the same time. These results show that the trap equipped with blue light-emitting lamp could be used effectively for whitefly control and prevention in the greenhouse cultivating tomato.

Effect of Yellow Sticky Trap for Controlling Whitefly on Tomato Cultivated in Greenhouse (온실재배 토마토에 발생하는 가루이류에 대한 황색점착트랩 방제효과)

  • Park, Jong-Ho;Hong, Sung-Jun;Han, Eun-Jung;Shim, Chang-Ki;Lee, Min-Ho;Kim, Min-Jeong;Kim, Yong-Ki
    • Korean Journal of Organic Agriculture
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    • v.20 no.4
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    • pp.643-654
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    • 2012
  • We conducted the experiment in order to evaluate the control effect of whitefly using the sticky trap. Both Bemisia tabaci and Trialeurodes vaporariorum were more attracted to yellow sticky trap than white or blue colored traps. When yellow sticky traps were installed in different height around tomato, catches of B. tabaci were not significantly different among the traps and catches of T. vaporariorum on the traps in the upper position were more than lower position. T. vaporariorum was more attracted to trap when host plant is smaller. The attracted number to yellow sticky traps were not significantly different between whiteflies (B. tabaci and T. vaporariorum) and their parasitoids (Encarsia formosa and Eretmocerus mundus). Yellow sticky trap reduced population density of both B. tabaci and T. vaporariorum by more than 80% on tomato nursery in a screen cage. Population density of whiteflies in greenhouse installed yellow sticky traps was less than one third of that in untreated greenhouse.

Responses of Phyllotreta striolata and Athalia rosae ruficornis to Colored-sticky Traps and Aggregation Pheromone and Seasonal Fluctuations in Radish Fields on Jeju Island (제주지역 무에서 벼룩잎벌레와 무잎벌의 색트랩과 집합페로몬에 대한 반응과 연중 발생특성)

  • Song, Jeong Heub;Yang, Young Taek;Yang, Cheol Jun;Choi, Byeong Ryul;Jwa, Chang Sook
    • Korean journal of applied entomology
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    • v.54 no.4
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    • pp.289-294
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    • 2015
  • Striped flea beetle, Phyllotreta striolata (SFB) and turnip sawfly, Athalia rosae ruficornis (TSF) are two economically important sporadic pests in radish fields on Jeju island. The response of adult SFB and TSF to a mixture of aggregation pheromone, (+)-(6R,7S)-himachala-9,11-diene and host plant volatile, allyl isothiocyanate (HAI), as well as to yellow and blue sticky traps was examined in radish fields. Adult SFB was more attracted to the sticky trap with HAI, regardless of the color of the sticky trap; however, adult TSF was more attracted on the yellow sticky trap than blue, and no effect of HAI was observed. The adult SFB and TSF can be effectively monitored using yellow sticky traps placed 10 cm above the plant canopy. SFB and TSF had 3 and 5 peak times in a year, respectively. The first peak occurred in the middle of March for SFB and mid-late of April for TSF. We expect that the results of the present study can facilitate minimizing the damage caused by the two important pests in commercial radish fields.

Limitation in Attraction Efficacy of Aggregation Pheromone or Plant Volatile Lures to Attract the Western Flower Thrips, Frankliniella occidentalis Infesting the Hot Pepper, Capsicum annuum, in Greenhouses (시설 고추재배지에서 꽃노랑총채벌레 집합페로몬과 식물 휘발성 유인제 효능의 한계성)

  • Kim, Chulyoung;Gwon, Gimyeon;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.60 no.4
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    • pp.369-377
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    • 2021
  • Mass trapping of the western flower thrips, Frankliniella occidentalis, has been considered as an option to control this pest. This study applied the commercial lures to the hot pepper-cultivating greenhouses and assessed the enhancement of the attracting efficiency by adding to sticky traps. There was no color difference in the attracting efficiency between blue and yellow sticky traps. However, the installation position of the traps was crucial in the greenhouses. The more thrips were captured within host cropping area than outside areas of the crop. In vertical trap position, it was the most optimal to install the traps at the crop crown. Using these installation parameters, the yellow sticky traps captured approximately 1% population of the thrips. To enhance the trapping efficiency, the commercial lures containing aggregation pheromone or 4-methoxybenzaldehyde were added to the yellow sticky traps. However, these commercial lures did not significantly enhance the trapping efficiency compared to the yellow sticky trap alone. In contrast, Y-tube olfactometry assays confirmed the high efficiency of the aggregation pheromone or another plant volatile (methyl isonicotinate) to attract the thrips. Interestingly, these lure components had lower attracting efficiencies compared to the hot pepper flowers. The high attractive efficiency of the flowers was supported by the observation that the commercial lure was effective to enhance the trapping efficiency of the yellow sticky trap against F. occidentalis in Welsh onion (Allium fistulosum) field without any flowers. This study indicates the limitation of the commercial lures in application to hot pepper fields for the mass trapping of F. occidentalis. It also suggests active volatile component(s) from hot pepper flowers to attract F. occidentalis.

Seasonal Occurrence of Diseases and Insect Pests in Small Type Watermelon and Effect of Organic Materials on Powdery Mildew Control (소과종 수박의 병해충 발생소장과 유기농업자재를 이용한 흰가루병 방제효과)

  • Han, Jong-Woo;Jeong, Taek-Goo;Kim, Young-Sang;Kim, Tae-Il;Noh, Sol-Ji;Kim, Ik-Jei
    • Korean Journal of Organic Agriculture
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    • v.25 no.2
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    • pp.419-429
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    • 2017
  • We investigated the occurrence pattern of diseases and insect pests and disease control efficacy of organic materials against watermelon powdery mildew in small type watermelon in Eumseong, Chungcheongbuk-do, 2015. The result of this study, the small type watermelon was damaged by diseases and pests such as Didymella bryoniae, Podosphaera xanthii, Aphis gossypii, Tetranychus urticae, thrips, Spodoptera exigua and Spodoptera litura. Among them, the occurrence of P. xanthii, T. urticae and thrips was high. Diseased leaf rate by P. xanthii, a casual agent of powdery mildew, was 27~99.3% in three small type watermelon cultivars in the middle of June. The number of T. urticae per leaf was high from 79.9 to 111 in three small type watermelon cultivars in the middle of June. It showed high number of thrips captured by yellow and blue sticky trap. Highest numbers of yellow sticky trap (407) and of blue sticky trap (774) were detected in the middle and first of June, respectively. The disease control efficacy of mayonnaise, oleic acid and three organic materials against powdery mildew of small type watermelon in fields was evaluated. As thre results, the symptoms of plant disease were effectively reduced by over 60% in the treatments of materials such as sodium bicarbonate 80%, mayonnaise and the extract of Rheum palmatum 1%. The highest control efficacy was 83% in the treatment of sodium bicarbonate 80%. From this study, we had a information of the occurrence pattern of diseases and insect pests in small type watermelon and the treatment of material containing sodium bicarbonate 80% was very effective for controlling against powdery mildew.