• Title/Summary/Keyword: Mite

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Method Comparison of Chemical-Resistance Level Determination and Field Resistance of Two-Spotted Spider Mite, Tetranychus urticae Koch to Benzomate, Cyhexatin, and Dicofol (점박이응애의 약제저항성(藥劑抵抗性) 수준결정방법(水準決定方法) 비교(比較)와 Benzomate, Cyhexatin 및 Dicofol 저항성(抵抗性) 조사(調査) 연구(硏究))

  • Lee, S.C.;Kim, W.Y.;Kim, S.S.
    • Korean journal of applied entomology
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    • v.25 no.3 s.68
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    • pp.133-138
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    • 1986
  • This study was conducted to compare the methods of slide dip and leaf dip techniques in the resistant level determination of spider mites to acaricides used; .and to investigate resistant levels of two-spotted spider mite, Tetranychus urticae Koch to benzomate, dicofol and cyhexatin in Honam region of Korea. Comparisons of the resistant strains and susceptible strain based on $LC_{50}$ values were summarized. Using the slide dip and leaf dip techniques with benzomate acaricide, the Keumchun strain of T. urticae showed 75-and 69-fold resistant levels, respectively, as compared with the Kwangju susceptible strain, but the Hackyo strain was 38-and 35-fold resistant levels, respectively. There was no significant difference (P>0.05) between the slide dip and leaf dip methods. With dicofol acaricide, resistant levels of the Keumchun strain of T. urticae were 71 times by using the slide dip and 74 times by using the leaf dip as resistant as the Kwangju susceptible strain while the Hackyo strain was 24 times by the former method and 23 times by the later method. There was also no significant difference (P>0.05) between both the methods. The slide dip technique is more recommendable than the leaf dip technique for determination of degree of chemical resistance to the spider mites with accuracy and less variation of the results. Using the slide dip method with cyhexatin, the Bia, Keumchun and Hackyo strains of T. urticae were 19-, 18- and 9-fold resistant levels, respectively, over the Kwangju susceptible strain.

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Acaricidal Effect of Mixtures of Hydrated Lime and Ethanol on Poultry Red Mite (Dermanyssus gallinae) (소석회와 에탄올 혼합물의 닭진드기에 대한 살비 효과)

  • Hong, Euichul;Park, Ki-Tae;Kang, Bo-Seok;Kang, Hwan-Ku;Jeon, Jin-Joo;Kim, Hyun-Soo;Son, Jiseon;Kim, Chan-Ho
    • Korean Journal of Poultry Science
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    • v.47 no.1
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    • pp.21-27
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    • 2020
  • This study intended to investigate the effects of slaked lime and ethanol on poultry red mites (PRM) in the coops of laying hen. Three experiments were conducted to this effect. The first used untreated hydrated lime as a control and 10% and 20% aqueous solutions of hydrated lime were used as treatments. The second experiment used 30%, 40%, 50%, 60%, 70%, 80%, 90%, and 100% ethanol solutions as treatments. The third experiment used hydrated lime in two distinct concentrations (10% and 20%) and 30%, 40%, and 50% ethanol solutions mixed to yield a total of 6 (2 × 3) treatments. All treatments were tested three times each. In the first experiment, the PRM killing rates were 74.0% and 92.3% when treated with 10% and 20% hydrated lime solutions, respectively. The acaricidal activity of the control sample was 0%. In the second experiment, the lowest value was 1.67% for the 30% ethanol solution, 8.33% for the 40% solution, and 7.47% for the 50% solution. The acaricidal activities of the 60% and 70% solutions were 42.4% and 84.7%, respectively. A 100% acaricidal activity was observed in dilutions above 80% (P<0.05). In the third experiment, the PRM killing effect of the hydrated lime + ethanol mixture was 100% in all treatments. In conclusion, after taking into consideration the economical and safety factors, a mixture of 10% hydrated lime solution and 30% ethanol is considered to be a suitable candidate for controlling PRM.

Inheritance and Cross Resistance of Acequinocyl Resistance in Twospotted Spider Mite, Tetranychus urticae (Acequinocyl 저항성 점박이응애의 유전과 교차저항성)

  • Kim, Eun-Hee;Yang, Jeong-Oh;Yoon, Chang-Mann;Ahn, Ki-Su;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.11 no.2
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    • pp.125-130
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    • 2007
  • The development of resistance to acequinocyl was found in the population of the twospotted spider mite, Tetranychus urticae, collected from rose greenhouses in Gimhae, Gyeongnam province in January 2001. This pest is reared on 5 years treated with acequinocyl (over 200 times), and increased 87.8 folds in resistance as compared to susceptible strain (S). Inheritance of acequinocyl resistant strain (R) and cross resistance of this strain to 8 acaricides against T. urticae adults and eggs was investigated. There were differences of susceptibility in the acequinocyl concentration-mortality relationships in $F_1$ progenies obtained from reciprocal cross with the S and R strain ($S(female){\times}R(male)$, $R(female){\times}S(male)$). Degrees of dominance were -0.75, -0.57 in $F_1$ progenies of adult and egg of $S(female){\times}R(male)$. Inheritance in $F_1$ progenies of $S(female){\times}R(male)$ was incomplete recessive. Degree of dominance were 0.81, 0.45 in $F_1$ progenies of adult and egg of $R(female){\times}S(male)$, respectively. These results suggest that inheritance of acequinocyl resistance is controlled by a complete dominance. The R strain exhibited cross resistance of 1.1 and 0.9 fold to amitraz, bifenazate, and negatively correlated cross resistance of 0.08 fold to emamectin benzoate in adult females. The R strain showed cross resistance of 37.7, 14.0, and 26.2 fold to amitraz, milbemectin and spriodiclofen in eggs, respectively. Particularly it showed high levels of cross-resistance to pyridaben with 6538.3 fold. These chemicals showed negatively correlated cross-resistance exhibited 0.4, 0.3, and 0.2 fold to ahamectin, bifenazate, and emamectin benzoate in eggs.

Historical Change of Population Abundances of Panonychus ulmi and Tetranychus urticae (Acari: Tetranychidae) in Selected Apple Orchards in Suwon and Its Hypothetical Explanation (수원 지역 사과원에서 사과응애와 점박이응애 개체군의 역사적 변천과정 및 해석)

  • Kim Dong Soon;Lee Joon Ho
    • Korean journal of applied entomology
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    • v.44 no.2
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    • pp.115-123
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    • 2005
  • Historical changes of population abundances of European red mite (ERM), Panonychus ulmi (Koch), and two-spotted spider mite (TSSM), Tetranychus urticae (Koch) (Acari: Tetranychidae), were described in selected apple orchards in the National Horticultural Research Institute (NHRI, Suwon, Korea), based on research reports of the NHRI from 1958 to 1998. ERM was an abundant species up to 1970, and TSSM became a dominant species after 1980. The change occurred around mid 1970. Three hypotheses were made to explain the change: TSSM competitively replaces ERM, ground cover weeds are a major influencing factor on movement of TSSM (TSSM movement into trees is accelerated by destroying weeds), and ERM and TSSM populations are regulated by natural enemy complexes when the orchard system is not disrupted. And long-term results of the interaction between two species were projected according to the combination of different orchard management strategies: pesticide sprays (non-selective toxic pesticide spray : heavy pesticide pressure (HPP), and selective soft pesticide spray = low pesticide pressure (LPP)) and weed control methods (grass planting, and clean culture system with herbicides). In the HPP and grass planting system, ERMs are abundant because ERM can avoid competition with TSSM as movement of TSSM to trees are restricted, and natural enemy complexes are destroyed by toxic pesticides. In the HPP and clean culture system, TSSMs are abundant because TSSM moves to trees from early season and competitively replaces ERM. In the LPP and grass planting system, ERMs are abundant because movement of TSSM to trees is reduced, but they do not build up a high population density since their densities are regulated by natural enemy complexes. In the LPP and clean culture system, TSSM moves to trees and competes with ERM, but the competition pressure is reduced because population densities of mites are regulated in a lower level by natural enemy complexes. So, ERM can occurs in late season. Thus, two species can coexist temporarily with more ERM in early season and more TSSM in late season. TSSM abundant phenomenon presented in this study can be partially explained as a result of long-term interaction between ERM and TSSM under the HPP and clean culture system.

The Acaricidal Effects of Slaked Lime and Plant Extracts on Poultry Red Mites (소석회와 식물 추출물의 닭진드기에 대한 구충 효과)

  • Hong, Eui-Chul;Park, Ki-Tae;Kang, Bo-Seok;Kang, Hwan-Ku;Jeon, Jin-Joo;Kim, Hyun-Soo;Son, Jiseon;Kim, Ji-Hyuk
    • Korean Journal of Poultry Science
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    • v.47 no.4
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    • pp.211-217
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    • 2020
  • This study evaluated calcium hydroxide (slaked lime) and a combination of plant extracts ('natural product'; clove, cinnamon, and saponin; 1:1:1 ratio) as acaricidal control mechanisms for poultry red mites. Red mite susceptibility was evaluated after treatments with 10% slaked lime, 20% slaked lime, and 1% natural product. The duration of the acaricidal effect was also tested at 0, 10, 30, and 60 min after treatment using 20% slaked lime, 1% natural product, or a mixture of both. In the in vitro experiment, the slaked lime treatments were 73.2% (10% slaked lime) and 85.1% (20% slaked lime) effective on red mites. In acaricidal effect of control materials over times, with 20% slaked lime, the acaricidal effect decreased to 50.7% after 30 min, and 12.7% after 60 min (P<0.05). With 1% natural product, there was no acaricidal effect after 30 min (P<0.05). With 20% slaked lime +1% natural product, all of poultry red mites died until 30 min, and 92.9% after 60 min (P<0.05). On the farm, poultry red mites were observed that the number of poultry red mites increased 7,923 from 36 to 45 weeks, but then decreased to 483 after 20% slaked lime plus 1% natural product treatment. These results indicate that combining slaked lime and plant extracts effectively control poultry red mites.

Breeding of inbred lines 'Wongyo 3115' and 'Wongyo 3116' in Strawberry (딸기 근교계통 '원교3115호'와 '원교 3116호' 육성)

  • Jeong, Ho Jeong;Lee, Sun Hee;Cho, Il whan;Rho, Il Rae
    • Horticultural Science & Technology
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    • v.33 no.3
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    • pp.443-447
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    • 2015
  • Fragaria ${\times}$ ananassa (Duch.) cultivars, 'Wongyo 3 115' a nd 'Wongyo 3 116', we re bre d as a n inte rme diate parent l ine using heterosis of $F_1$ hybrids in octoploid strawberry. These two new cultivars were developed as inbred lines ($S_9$ generation) propagated from both seed and runners/stolons. 'Wongyo 3115', an inbred line derived from the 'Benihoppe' cultivar, has a semi-upright plant shape showing a vigorless growth habit, weaker than the original 'Benihoppe' cultivar; it has early flower bud differentiation and produces 10 flowers per cluster when grown from healthy seed. 'Wongyo 3115' has low yields of conical type fruit with pink colored skin; average fruit weight is approximately 11 g. The important characteristic of 'Wongyo 3115' is its excellent fruit firmness, firmer than the original variety. 'Wongyo 3116', an inbred line derived from the 'Doyonoka' cultivar, has an upright plant shape, vigorless growth habit, weaker than that of the original 'Doyonoka' cultivar; it has early flower bud differentiation and produces 8 flowers per cluster when grown from healthy seed. 'Wongyo 3 116' has oblate type fruits with red skin and an ave rage weight of approximately 12 g. The important characteristics of 'Wongyo 3116' are excellent fruit shape and higher yield than other inbred lines, although it produces small fruits compared to the original cultivar. Both cultivars have excellent taste, high sugar/acid ratio, and good texture. In regards to disease and pest resistance, 'Wongyo 3115' and 'Wongyo 3116' have a tendency to be sensitive to powdery mildew, anthracnose and the two-spotted spider mite.

Breeding of 'Seeberry' F1 Hybrid Strawberry (F1 종자 딸기 '씨베리' 육성)

  • Jeong, Ho Jeong;Lee, Sun Hee;Cho, Il Whan;Rho, Il Rae
    • Horticultural Science & Technology
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    • v.33 no.3
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    • pp.448-452
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    • 2015
  • 'Seeberry' is a short-day $F_1$ hybrid strawberry for seed propagation, that was released by the Protected Horticulture Experiment Station (RDA, Republic of Korea) in 2013. Inbred lines derived from domestic germplasms and selected varieties were used to develop this cultivar. 'Seeberry' originated from a cross of two inbred lines: a male parent 'Wongyo 3115' with high firmness and a female parent 'Wongyo 3116' with excellent fruit shape and high yield. 'Seeberry' cultivar should be grown with a crown diameter of over 10 mm to reveal its unique characteristics. 'Seeberry' has an upright plant shape with elliptic leaves, 12-15 flowers per cluster, vigorless growth habit, and average flower bud differentiation compared to vegetatively propagated cultivars. Fruits of 'Seeberry' are conical, having light skin color and approximately 15-16 g in average weight. Yield of this cultivar is about 92% lower than that of 'Akihime', but 'Seeberry' has excellent taste, sugar content of $9.7^{\circ}Bx$, acidity of 0.6%, and good texture. With regard to disease and pest resistance, 'Seeberry' is sensitive to powdery mildew, aphids, and the two-spotted spider mite, and is resistant to anthracnose.

Pests occurring on Cymbidium (심비디움에 발생하는 해충의 종류)

  • Cho, Myoung Rae;Jeon, Sung-Wook;Kang, Taek Joon;Kim, Hyung Hwan;Ahn, Seung-Joon;Yang, Chang Yeol
    • Korean journal of applied entomology
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    • v.52 no.4
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    • pp.403-408
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    • 2013
  • A survey of pest occurrence and status of farmer's pest management was conducted at 45 cymbidium farms in 10 major cultivation areas in Korea. The pest species collected from the cymbidium farms were identified as follows: Tetranychus urticae Koch, Frankliniella intonsa Trybom, Pinnaspis aspidistrae Signoret, Incilaria confusa Cockarel, Halyomorpha brevis Walker, Myzus persicae S$\ddot{u}$lzer, and Aphis gossypii Glover, Coccus hesperidum Linnaeus, Thrips flavus Schrank, and Thrips tabaci Lindeman. The two-spotted spider mite, T. urticae, was the key pest in cymbidium production, occurring on 45 farms, followed by scales (20 farms), slugs (6), thrips (8), aphids (5), and stinkbug (1). PCR-RFLP of the rDNA ITS2 region revealed that two thrips species, Thrips flavus Schrank and Thrips tabaci Lindeman, occur on cymbidium farms. Therefore, it is necessary for the cymbidium farmers to establish an integrated pest management system to meet quarantine standards.

Control of Some Insects on Soybeans with Granular Systemic Insecticides applied in Seeding-pits (침투성살충제의 파종용 처리의 대두해충방제효과)

  • Choi Seung Yoon;Lee Hyung Rea
    • Korean journal of applied entomology
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    • v.16 no.1 s.30
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    • pp.41-45
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    • 1977
  • The systemic insecticides carbofuran $(Curaterr\; 3\%\; G)$ mephosfolan $(Cytrolane\; 2\%\; G)$ and disulfoton$(Disyston\; 5\%\; G)$ were evaluated in the field for conrol of some insects on soybeans when the insecticides were applied in seeding-pits at the rates of 4.6, 9.2 and 13.8 mg(a.i)/pit at the planting time. Control of the soybean aphid (Aphis glycines Matsumura) and the two-spotted spider mite (Tetranychus telarius(L.)) on soybeans was obtained for about 2 to 3 months, but their treatments were ineffective against the soybean moth (Grapholitha glycinivorella Matsumura). For the control of aphids and mites, disulfoton was better than carbofuran and mephosfolan. The insecticides slightly reduced the soybean stands, while the low-dose treatments of carbofuran slightly increased the stands. Carbofuran and mephosfolan caused severe phytotoxicity at the early stages, but disulfoton showed slight or negligible phytotoxicity. The phytotoxic symptoms in carbofuran and mephosfolan treatments were shelving the large number of brown or black-brown spots on the cotyledon and the first-leaves, and in addition to that showing necrosis along the leaf-margin. The symptoms in disulfoton treatments were slight withering along the leaf-margin of the first-leaves. In spite of good control of aphids and mites, there were no differences in soybean yield.

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Biological Control of Polyphagotarsonenmus latus(Acari: Tasonemidae) by Amblyseius cucumeris(Acari: Phytoseiidae) (오이이리응애(Amblyseius cucumeris)를 이용한 차먼지응애(Polyphagotarsonemus latus) 생물적 방제)

  • La, Seung-Yong;Paik, Chae-Hoon;Lee, Geon-Hwi;Kim, Doo-Ho
    • Korean journal of applied entomology
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    • v.48 no.3
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    • pp.347-354
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    • 2009
  • This study was conducted on the biological control effects of the natural enemy, Amblyseius cucumeris, against Polyphagotarsonemus latus. The broad mite moved to a new habitat after the carrying capacity of the preferred habitat on the upper leaf has been reached. Population dynamics between predator, Amblyseius cucumeris, and prey, P. latus, were quite well synchronized since the predator followed the movement of the prey. In predation test by Amblyseius cucumeris on P. latus, A. cucumeris fed on 8.8, 15.2, 27.0 and 30.3 individuals/day under the temperatures of 15, 20, 25, and $30^{\circ}C$, respectively. The A. cucumeris larva, protonymph, deutonymph, adult male, and adult female fed on 0.5, 1.6, 5.2, 3.8, and 27 individuals of adult P. latus per day, respectively, under $25^{\circ}C$ condition. The functional response curve of adult P. latus to the densities of A. cucumeris showed Holling's Type II curve. The consumption of prey by A. cucumeris increased with the prey density increase, but the consumption rate decreased. The critical ratio of predator vs. prey effectively to suppress (98% over) the population of P. latus by releasing A. cucumeris was 1:40 on red pepper.