• Title/Summary/Keyword: 치사 시간

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Comparative Responses of Sugar Beet Cyst Nematode, Heterodera schachtii and Clover Cyst Nematode, H. trifolii to Different Nematicides (클로버씨스트선충과 사탕무씨스트선충 알과 유충에 대한 약제 반응 비교)

  • Jeong, Mungi;Lee, Dong Woon
    • Korean journal of applied entomology
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    • v.59 no.4
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    • pp.361-369
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    • 2020
  • This study aimed to investigate the differences in the effects of nematicidal materials (Burkholderia rinojensis, fluazaindolizine, fluopyram, fosthiazate, hydrogen peroxide, and imicyafos) on eggs and larvae of the sugar beet cyst nematode, Heterodera schachtii and clover cyst nematode, H. trifolii, which have recently become problematic in highland Chinese cabbage cultivation areas in Korea. Comparison of the hatching rates according to the test materials showed differences between treatments. In the treatment with fluopyram, fosthiazate, and imicyafos, a very high hatching inhibitory effect of 99% was observed in both nematodes, and there was no difference in the efficacy of treatments between nematode species except for that with hydrogen peroxide. Regarding the nematocidal activity of treatments against hatched larvae, only the fluazaindolizine treatment, despite showing a high hatching inhibitory effect, showed a low nematicidal effect of less than 30% against both nematodes, whereas a mortality rate of more than 90% was observed in the other treatments. There was no difference between nematode species in the reactions of the 2nd instar juveniles to all nematicidal test materials after 24 and 48 h of treatment. Although there are limitations to the laboratory experiment, the reaction to the nematicidal materials of the two cyst nematodes that damage the same host was similar, and simultaneous control is suggested in the areas where the two nematodes occur together.

The changes of acute toxicity of pesticides depending on the exposure time to killifish, Oryzias latipes. (농약의 노출시간에 따른 급성어독성의 변화)

  • Shin, Chun-Chul;Lee, Sung-Kyu;Roh, Jung-Koo
    • Korean Journal of Environmental Agriculture
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    • v.7 no.2
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    • pp.124-129
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    • 1988
  • Prolonged aquatic toxicity tests (7-days) of six pesticides to the freshwater fish Oryzias latipes were performed to confirm the adequacy of the exposure times, 48-hr or 96-hr, which has been required by the protocols for the aquatic acute toxicity test. The toxicity curves were plotted for each chemical, and the significance of the difference between lethal threshold concentrations and 48-hr or 96-hr LC50's was analysed statistically. The lethal threshold concentrations of butachlor, fenobucarb, and chlorothalonil were clearly defined on the 5th day, 2nd day, and 2nd day at 0.53mg/1, 10.3mg/l, and 0.085mg/1, respectively. But the toxicity curves of alachlor, diazinon, and iprobenfos continued with no threshold for 7 days. Four out of six test pesticides failed to show the threshold concentration during the 96-hr exposure time. Therefore, the results of the acute toxicity test using 48-hr or 96-hr exposure time would not describe the ideal toxicity of pesticides. It is recommended that the prolonged exposure should be continued long enough to define the threshold adequately.

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Evaluation of Thermal Processes for Canned Marine Products (2) Canned Smoked Oyster in Oil and Canned Boiled Oyster in Brine (수산물통조림의 살균조건에 관한 연구(2) 굴 훈제 기름담금 통조림 및 굴 보일드 통조림)

  • PARK Young-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.17 no.3
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    • pp.165-169
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    • 1984
  • In succession to the previous paper, the present studies were directed to determine the sterilizing valves ($F_0$) of the thermal processes for the canned smoked oyster in oil and the canned boiled oyster in brine. The heat penetration tests were carried out under the condition of industrial scale at the tannery of the Taiyang Silup Company, Pusan, Korea. The test cans were placed in the middle layer of the crate in which the same canned products were loaded with, and the test cans were arranged to the front, the middle and the rear in the retort. The heat penetration was tested three times with three cans at a time for each canned product. The heat penetration curve of the canned smoked oyster in oil shelved a simple logarimicth heating curve while that of the canned boiled oyster in brine showed a broken logarithmic heating curve. The calculated $F_0$ value for canned smoked oyster in oil packed into No. 3B square can was 14.58 and the canned boiled oyster in brine packed into No.7 fruit can was 14. 78. On the basis of the heat penetration data obtained. the nomographs representing the relationship between $F_0$ values and B values (process time including $42\%$ of come-up time) for the canned oyster products were constructed.

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Isolation and Characterization of Avian Reoviruses from Chickens with Arthritis or Stunted Growth (관절염과 발육부전증을 보이는 닭으로부터 Avian Reovirus의 분리와 성상조사)

  • 김선중;서익수
    • Korean Journal of Poultry Science
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    • v.12 no.2
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    • pp.135-143
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    • 1985
  • A total of eight strains of avian reoviruses were isolated from chickens with arthritis or stunted growth. The isolations were made from broilers or broiler breeders under 12 weeks of age. The viruses had a typical morphology of reoviruses with double capsid layers and 81nm of diameter. In agar gel precipitation tests, the isolates reacted with antisera prepared against S-1133 or R-1 strains of avian reoviruses and cross reacted with S-1133 antigen. They did not agglutinated RBC's from day-old chicks, adult chickens, guinea pigs, and horses. The isolates showed strong resistance against the treatments of chloroform, IUdR, and heat, When infectivities of the viruses were titrated in cell cultures of chicken embryo fibroblast, chicken embryo liver, and Vero cells, similar end points reached four to five days after inoculation, regardless of tell types and virus inoculation time, either inoculated simultaneously at the time of cell seeding or on confluency. Mean times of mortality of chicken embryos inoculated with the isolates via the chorioallantoic membrane ranged from 54 to 59 hours and that of S-1133 strain was 73 hours.

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Observation of External Injury and Morphological Movement for Analysis of Recovery Possibility after Storage of the Juvenile Sea Cucumber, Apostichopus japonicus (돌기해삼(Apostichopus japonicus)의 보관 후 회복 가능성 파악을 위한 외상 및 형태학적 변화의 관찰)

  • KIM, Tae-Ik;SON, Maeng-Hyun;CHO, Jae-Kwon;JIN, Young-Guk
    • Journal of Fisheries and Marine Sciences Education
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    • v.28 no.4
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    • pp.1006-1013
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    • 2016
  • The observed external injury, movement and survival rate according to storage and recovery of the juvenile sea cucumber, Apostichopus japonicus(wet weight $1.0{\pm}0.2g$). The investigated application possibility of external injury(grade I~IV) and movement variation(buccal tentacle, motion, obversion, movement) for estimate of survival rate. The survival rate was observed through the recovery after storage of the sea cucumber in various water temperature(10, 15, 20, $25^{\circ}C$) and hours(3, 6, 12, 24 hour). Grade of external injury lower in the 24 hour experiment group of $20^{\circ}C$ water temperature and 12 hour experiment group of $25^{\circ}C$ water temperature. Buccal tentacle and movement strong related survival rate and external injury. In the case of $20^{\circ}C$ water temperature, survival rate was observed decrease 24 hours experiment. $25^{\circ}C$ water temperature was high to 6 hours but 12 hours experiment group observed decrease of the survival rate. The lethal time(LT10) of the juvenile sea cucumber was 15.73 hours($20^{\circ}C$) and 5.57 hours($25^{\circ}C$). The results of this study provided various measurement method of survival rate according to transportation of the juvenile sea cucumber for release.

Evaluation of Fish Acute Toxicity and Preliminary Risk Assessment of Plant Extracts, Sophora, Neem and Derris (유기농업자재 고삼, 님 및 데리스 추출물의 어류에 대한 독성과 위해성 평가)

  • Park, Kyung-Hun;Oh, Jin-A;Paik, Min-Kyoung;Son, Mi-Yeon;Lim, Joung-Taek;Jin, Jung-hwa;Hong, Soonsung;Cho, Nam-jun;Han, Sang-Gyun;Kim, Byung-Seok
    • The Korean Journal of Pesticide Science
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    • v.19 no.3
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    • pp.255-263
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    • 2015
  • Promoting the organic farming, much of the plant extracts used for controlling pests and fungi have been imported from China, India and Myanmar. But, it is so worrisome that aquatic animals such as muddy loach inhabiting in paddy field and common carps in river exposed to the pests and fungi likely be harmed. This study was conducted in order to evaluate the risks of aquatic animals influenced by the three plant extracts, i.e. Sophora flavescens, Azadirachta indica and Derris elliptica. The toxicities of common carp (Cyprinus Carpio), muddy loach (Misgurnus anguillicaudatus) and PEC (Predicted environmental concentration) exposed to the three plant extracts were estimated by the typical spray volume method. Risks were determined by the toxicity value as 48-hr $LC_{50}$ (Lethal concentration, median) or NOEC (No observed effect concentration) into PEC. 48-hr $LC_{50}$ of Common carp and NOEC by Sophora flavescens extracts was 7.9 and 6.2 mg/L, 26.8 and 21.8 mg/L by Azadirachta indica extracts and 47.0 and < 24.0 mg/L by Derris elliptica extracts, respectively. 48-hr $LC_{50}$ of Muddy loach and NOEC by Sophora flavescens extracts was 16.9 and 10.0 mg/L, 35.6 and 30.0 mg/L by Azadirachta indica extracts, and 73.9 and < 40 mg/L by Derris elliptica extracts, respectively. Therefore, acute toxicities of the three plant extracts for aquatic animals were proved to be very low level. PEC of Sophora flavescens extracts in paddy, drainage and river water was 68.0~3.0, 11.33~0.50 and 3.0~0.0018 mg/L, respectively. TER of Sophora flavescens extracts in the three water was 0.2~5.6, 1.5~33.8 and 2.6~4388.9, respectively. PEC of Azadirachta indica extracts in paddy, drainage and river water was 90.9~1.2, 15.2~0.2 and 4.8~0.00075 mg/L, respectively. TER of Azadirachta indica extracts in the three water was 0.4~29.7, 2.3~178.0 and 4.5~35733.3, respectively. PEC of Derris elliptica extracts in river water was 0.0063 mg/L. TER of Derris elliptica extracts in river water was 5222~15667.

Residual Toxicity of Bifenthrin and Imidacloprid to Honeybee by Foliage Treatment (Bifenthrin과 Imidacloprid의 작물잎에서의 잔류량과 꿀벌에 대한 독성)

  • Cho, Kyung-Won;Park, Hyun-Ju;Bae, Chul-Han;Kim, Yeon-Sik;Shin, Dong-Chan;Lee, Seung-Yeol;Lee, Suk-Hee;Jung, Chang-Kook;Park, Yeon-Ki;Kim, Byung-Seok;Lee, Kyu-Seung
    • The Korean Journal of Pesticide Science
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    • v.14 no.3
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    • pp.226-234
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    • 2010
  • Foliage residue toxicity experiment was performed against honeybee (Apis mellifera) with bifenthrin, a synthetic pyrethroid insecticide with strong acute contact toxicity and imidacloprid, a neo-nicotinoid insecticide with strong acute oral toxicity to know the honeybee toxicity at the residue level on the leaves of alfalfa and apple. Also, the formulation differences to honeybee toxicity were investigated with WP (2%) and EC (1%) of bifenthrin and WP (10%) and SL (4%) of imidacloprid. Generally, foliage residual toxicity of honeybee and residual amounts of tested insecticides was higher in alfalfa leaves with large leaf area per unit weight than in apple leaves. While on the other hand, the only bifenthrin WP treatment showed higher honeybee toxicity on apple leaves than alfalfa. Although imidacloprid showed higher residue amounts ranged $4.9{\sim}25.4\;mg{\cdot}kg^{-1}$ than bifenthrin ranged $0.6{\sim}12.7\;mg{\cdot}kg^{-1}$ on the leaves, the residual toxicity to honeybee was lower than bifenthrin because of its strong penetration character. In conclusion, the residual toxicity of insecticide to honeybee could be affected by the contact and vaporized toxicity of chemical, the residual amounts on the surface of leaves, and the leaf area per unit weight and formulation differences.

Efficacy of formalin bath against gill infections with Pseudodactylogyrus spp. in cultured eel Anguilla japonica (포르말린 약욕이 뱀장어 아가미흡충의 구제에 미치는 효과)

  • Jung, Sung-Hee;Jee, Bo-Young;Kim, Jin-Do;Seo, Jung-Soo;Kim, Jin-Woo
    • Journal of fish pathology
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    • v.23 no.3
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    • pp.293-302
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    • 2010
  • Effects of formalin on removal of Pseudodactylogyrus spp. were examined against naturally infected eel, Anguilla japonica (weight 89.9~96g) at a water temperature of $28^{\circ}$. Prior to experiments for removal of the parasite, the hematological toxicity of formalin bath at 0~500 ppm for 30 min~24 h was assessed by hematocrit values (Ht). Based on the results of Ht, appropriate methods of treatment, concentrations and durations, were examined in the main study. There was no significant (P>0.05) change of Ht in 100 to 200 ppm for 24 h. In contrast, Ht increased significantly (P<0.05) at above 300 ppm. This suggests that physiological damage was caused by formalin bath treating with 300 to 500 ppm. Formalin bath with 100 and 200 ppm for 24 h caused significant decreases (P<0.05) in the infection of the parasite. In conclusion, the 100 ppm formalin for 24 hour-bath was found most recommendable for the effective treatment of Pseudodactylogyrus spp. for the gills of the infected eel because of the median lethal concentration ($LC_{50}$) of formalin to eel; cumulative mortalities were found to be 0 and 13.3%, respectively, following 24 h bathing.

Determination of Lethal Concentrations and Lethal Times of Extracts from Tanacetum cineariaiaefolium, Derris elliptica, and Sophora flavescens, to Control Green Peach Aphid, Myzus persicae (복숭아혹진딧물, Myzus persicae, 방제를 위한 제충국, 데리스, 고삼 추출물의 살충농도와 살충시간 결정)

  • Ka Hee Cho;Hyo Jung Kim;Song Hee Han;Young Cheol Kim
    • Korean journal of applied entomology
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    • v.62 no.4
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    • pp.267-275
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    • 2023
  • Botanical extracts are employed in management of aphids. Extracts from Tanacetum cineariaiaefolium, Derris elliptica, and Sophora flavescens are widely used to control various insects. In this study, we determined concentrations of insecticidal active ingredients in commercial botanical extracts of these plants, and we investigated the time and concentration for lethal results with the green peach aphid, Myzus persicae. The concentrations of active ingredients, pyrethrins from T. cineariaiaefolium, rotenone from D. elliptica, and matrine and oxymatrine from S. flavescens, were determined after their fractionation by liquid chromatography followed by mass analysis and comparison with standard compounds. The extracts were tested for lethality in a bioassay with green peach aphids. Sprays at defined doses were applied to tobacco leaves infested with aphid nymphs. The lethal concentrations (LC50) were 20.4 ppm for pyrethrins, 34.1 ppm for rotenone, and 29.6 ppm for matrine at 48 h after treatments. At 100 ppm application levels, the lethal time LT50 was 13.4 h for pyrethrin, 15.1 h for rotenone, and 14.4 h for matrine. Kaplan-Meier analysis indicated the lethal times for the three botanical extracts at 100 ppm were significantly faster than application of a chemical insecticide, Sulfoxaflor, applied at the recommended level. These results provide baselines to develop and formulate single or mixed preparations containing botanical extracts to control green peach aphids on commercial crops.

Toxic Effects of Phenol on Survival and Oxygen Consumption of the Abalone Juvenile, Haliotis discus hannai (참전복, Haliotis discus hannai 치패의 생존과 산소소비에 미치는 phenol의 독성 영향)

  • KIM Heung-Yun
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.3
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    • pp.496-504
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    • 1997
  • This study was carried out to estimate toxic effects of phenol on survival and metabolism of the abalone juvenile, Haliotis discus hannai. The experiment was conducted by renewal bioassay procedure with different salinities at $20^{\circ}C$. The $LC_{50}$ of the juvenile exposed to phenol in the range of 0.5 and $100mg/\ell\;was\;34.3\~6.5mg/\ell\;at\;2.4\%_{\circ}\;and\;52.2\~9.3m/\ell\;at\;32\%_{\circ}$ salinity with exposure time from 24 hours to 96 hours. $LT_{50}$ was remarkablely reduced with increase of phenol conentration and decrease of salinity. Lethal toxicity or phenol was higher at low salinity than at high salinity. Therefore, salinity is likely to be one of factor to increase phenol toxicity. The oxygen consumption of the juvenile was reduced with increase of phenol concentration and with decrease of salinity. In spite of phenol toxicity, the oxygen consumption of the juvenile exposed to phenol of low concentration was high and similar as compared with that of control group. Survival rates of the abalone kept in phenol-free sea water after exposure to phenol concentration of 5, 10 and $20mg/\ell$ for 96 hours were reduced with decrease of salinity. Durations required to recover the normal metabolic rate of the juvenile, which was exposed to phenol concentration of 5, 10 and $20mg/\ell$ for 96 hours, were made longer with increasing phenol concentration. In the case of the juvenile exposed to sublethal concentration of phenol for 15 days, it were elongated as compared with that of the abalone exposed to phenol concentration caused acute toxicity. The result of this experiment indicated that relatively low concentration of phenol can impact on the abalone juvenile in marine ecosystem.

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