• Title/Summary/Keyword: 토마토뿌리

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Nematicidal activity of Korean native plants against root-knot nematode, Meloidogyne incognita (고구마뿌리혹선층(Meloidogyne incognita)에 대한 국내 자생식물의 살선충 활성)

  • Lim, Sang-Hyun;Zhu, Yang-Ze;Kim, Mi-Sung;Lee, Yu-Sun;Son, Jeong-Sik;Park, Dong-Sik;Hur, Jang-Hyun;Kim, Hee-Yeon;Choi, Hae-Jin;Kim, Kyung-Hee;Kim, Song-Mun
    • The Korean Journal of Pesticide Science
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    • v.8 no.4
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    • pp.353-357
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    • 2004
  • Large economic losses have been reported by root-knot nematide, Meloidogyne incognita, in Korea. However, fewy environmentally-friendly nematicide alternatives for the control of M. incognita have been developed. This study was conducted of Korean native plants to screen nematicidal activity which could be used by organic farmers. Methanol extracts (1,000 mg $L^{-1}$) from fifty-three Korean native plants were applied to 24-well tissue culture testplates containing $1\times10^2$ M incognita and the nematicidal activities were determined. Nematicidal activities of the methanol extracts in common purslain (Portulaca oleraceae L.) and water mouse-ear-chickweed (Stellaria aquatica Scop.) were 60.0% and 40.6%, respectively, compared with that of control, however, those of other forty-one plants were less than 30%. Our results suggest that the methanol extracts of common purslain and water mouse-ear-chickweed contain nematicidal active compounds.

Effect of temperature and pH on the attachment of Pasteuria penetrans to Meloidogyne arenaria and the mass production (Pasteuria penetrans의 땅콩뿌리혹선층(Meloidogyne arenaria)에 대한 온도와 pH별 부착 및 증식효과)

  • Park, Dong-Sik;Zhu, Yong-Zhe;Cho, Myoung-Rae;Hur, Jang-Hyun;Lim, Chun-Keun
    • The Korean Journal of Pesticide Science
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    • v.9 no.3
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    • pp.268-273
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    • 2005
  • The cultivating agroproducts are damaged by the Meloidogyne spp. which are gradually increasing in farm land soil. No effective control method for Meloidogyne spp., however, is available. Pasteuria penetrans which is one of the microorganisms in soil is used for biological control of Meloidogyne spp. although the method of mass production is limited. This study was conducted to investigate attachment and mass production effect of P. penetrans to M. arenaria under different temperatures (10, 30, 50 and $70^{\circ}C$) and pH values (4, 7 and 10). Attachment rates under these temperature and pH were more than 96% and 80%, respectively. In mass production rates, the number of P. penetrans attached on M. arenaria under different temperatures and pH were highly increased in root of tomato but not significantly different. Therefore, we concluded that P. penetrans can survive and attach on M. arenaria under various conditions. This method for mass production of P. penetrans can be provided to develop environmentally-friendly nematicide.

Effect of P Levels in Nutrient solution on the Propagation of Arvuscular Mycorrhizal Funfi in Aeroponics (분무경재배에 의한 arbuscular 균근균 증식에서 양액내 인산농도의 영향)

  • Kim, Young-Ju;Jin, Seo-Yeong;Cho, Ja-Yong;Kim, Kil-Yong;Cha, Gyu-Seok;Soh, Bo-Kyoon
    • Korean Journal of Soil Science and Fertilizer
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    • v.37 no.5
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    • pp.350-355
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    • 2004
  • This experiment was carried out to screen the aeroponically grown host plants suitable for the mass propagation of arbuscular mycorrhizal fungi (AMF) inoculum and clarify the effect of P levels in nutrient solution on the growth of aeroponically grown sweet potato (Ipomoea batatas L.), AMF infection, and mass propagation of mycorrhizal spores, etc. Amount of biomass of host plant became higher, as the P levels in nutrient solutions increased from 5 to 20 M. AMF infection rates in mycorrhizal roots increased in higher P levels in nutrient solution, and decreased in lower parts of mycorrhizal roots by about 18.6-26.0%. About 586 mycorrhizal spores per 1 g fresh root were formed at 16 weeks after inoculation of mycorrhizal inoculum. Total of 830,479 mycorrhizal spores were propagated in each plot.

Effects of Bioceramic Powder in the Nutrient Solution and Foliar Spray on the Growth and Fruit Quality of Aeroponically Grown Tomato (바이오세라믹 분말의 엽면살포와 배양액내 처리가 분무경재배 토마토의 생장과 과실품질에 미치는 영향)

  • 이정현;이범선;정순주
    • Journal of Bio-Environment Control
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    • v.5 no.1
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    • pp.50-56
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    • 1996
  • This experiment was carried out to investigate the effects of new material, bioceramic powder in the nutrient solution(0.02%) and foliar spray(0.2%) on the growth and fruit quality of aeroponically grown tomato(Lycopersicon esculentum MILL. cv. Seokwang). Plant height was lowered, but root growth was increased both treatment of bioceramic powder into the nutrient solution and foliar spray. Cluster growth of tomato plants increased up to 14% over than that of control in the plot of foliar spray with bioceramic powder. Total plant dry weight also increased when bioceramic powder was treated both into the nutrient solution and foliar spray. T/R ratio was reduced by the treatment of bioceramic powder, but NAR and RGR showed the highest in the plot of foliar spray treated with 0.2% bioceramic powder than that of the other plots. Cumulative fruit fresh and dry weight were reduced when bioceramic powder was treated into nutrient solution but foliar spray produced more cumulative fruit fresh and dry weight than that of control. It was shown that treatment of bioceramic powder into the nutrient solution and foliar spray could be improved sugar degree without reducing fruit yields.

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Isolation and Characteristics of Bacillus thuringiensis Strain BtTH109 which is Toxi against Root-Knot Nematode Meloidogyne incognita (토마토 뿌리혹선충 Meloidogyne incognita에 치사력이 있는 Bacillus thuuingiensis Bt TH109 균주의 분리 및 특성)

  • 이광배;김광현;김영희
    • Microbiology and Biotechnology Letters
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    • v.22 no.3
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    • pp.227-232
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    • 1994
  • In order to microbially control root-knot nematode(Meloidogyne incognita) in tomato, a strain BtTH109 of Bacillus thuringiensis producing root-knot nematocidal toxin was isolated. The strain BtTH109 was identified B. thuringiensis subsp. indiana(serotype 16) based on flagella antigenicity, biochemical properties, and morphological charcateristics. The strain BtTH109 have extracellularly produced a root-knot nematocidal toxin, which was very toxic against not only egghatch but also the 2nd-nematode larva of root-knot nematode in vitro.

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Nematocidal Effect of B. thuringiensis subsp.indiana Strain BtTH109 on Root-Knot Nematode of Tomato (Bacillus thuringiensis subsp. indiana BtTH109의 토마토 뿌리혹선충에 대한 치사효과)

  • 이광배;김광현
    • Microbiology and Biotechnology Letters
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    • v.22 no.6
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    • pp.679-684
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    • 1994
  • For a biological control of root-knot nematode (Meloidogyne incognita) in tomato, efficiency of Bacillus thuringiensis subsp. indiana strain TH109 (BtTH109) on the nematode control was investigated. After the mixture of strain BtTH109 and wheat bran was treated into rhizosphere of the tomato plants with nematode eggs, the stem height and root growth of plants increased. And the juveniles and eggs of nematode are not found in both roots of tomatoes and pot soil after cultured broth of the strain BtTH109 treated 4 times at 3 day-interval into rhizosphere of the infected tomatoes.

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Control of Phythophthora capsici and Residual Characteristics by the Pesticides Tank-Mixed in Tomato Hydroponic Culture System (농약의 양액 탱크내 혼합처리에 의한 토마토 역병 방제 효과 및 잔류 특성)

  • Ihm, Yang-Bin;Kyung, Kee-Sung;Kim, Cban-Sub;Park, Byung-Jun;Lee, Jung-Sup
    • The Korean Journal of Pesticide Science
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    • v.7 no.4
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    • pp.264-270
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    • 2003
  • To control effectively and safely Phytophthora root rot caused by Phytophthora capsici on tomato in hydroponic culture, tank-mixing method was considered with two pesticides, metalaxyl copper oxychloride 50% WP and dimethomorph dithianon 38% WP. Forty days after transplanting of tomato seedlings, 4 mL of sporangia of P. capsici (about 25 sporangi/mL) per plot was inoculated around tomato plant roots, and at 5 days after inoculation, the pesticides tank-mixed at three dilution levels, 12,500, 25,000 and 50,000, were drenched 1, 2 or 3 times per plot on the culture cube every 15 days for metalaxyl copper oxychloride 50% WP and every 10 days for dimethomorph dithianon 38% WP. During the drenching period, the residue levels of metalaxyl and dimethomorph in hydroponic culture solution were similar to the initial levels but the level of dithianon was drastically decreased from one day after tank-mixing. In tomato drenched with metalaxyl copper oxychloride 50% WP, metalaxyl was detected $0.02\sim0.04$ mg/kg in all diluted plots. Dimethomorph was detected $0.012\sim0.021$, $0.001\sim0.006$ and $0.001\sim0.003$ mg/kg in 12,500, 25,000 and 50,000 times diluted plots, respectively, while dithianon was detected 0.005, 0.003 mg/kg in 12,500 and 50,000 times diluted plots, respectively. The detection levels of three pesticides were far below compared with the levels of Korean MRLs. Incidences of Phytophthora root rot were not found in all the plots, but phytotoxic responses were recognized in the 12,500 times diluted plots of both pesticides. Based on the above results, the drenching of the culture solution tank-mixed with these pesticides could be recommended as a very safe and effective method to control Phytophthora root rot in tomato in hydroponic culture.

Growth of Cucumber and Tomato Seedlings by Different Light Intensities and CO2 Concentrations in Closed-type Plant Production System (밀폐형 식물생산시스템 내 CO2와 광도에 따른 오이 및 토마토 묘의 생육)

  • Ji Hye Yun;Hyeon Woo Jeong;So Yeong Hwang;Jin Yu;Hee Sung Hwang;Seung Jae Hwang
    • Journal of Bio-Environment Control
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    • v.32 no.4
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    • pp.257-266
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    • 2023
  • This study was conducted to investigate the growth characteristics of cucumber (Cucumis sativus L. 'Joeunbaekdadagi') and tomato (Solanum lycopersicum L. 'Dotaerang Dia') seedlings by light intensities and CO2 concentrations in a closed-type plant production system (CPPS). Cucumber and tomato seeds were sown in 50-cell trays and germinated in CPPS at air temperature 25 ± 1℃ and relative humidity 50 ± 10% for 4 days. After germination, the CO2 concentrations and light intensity treatment were treated at 500 (ambient), 1,000, and 1,500 µmol·mol-1 and 100, 200, and 300 µmol·m-2·s-1 photosynthetic photon flux density (PPFD), respectively. The leaf area of cucumber showed the highest value in CO2 1,500 μmol·mol-1. However, the leaf area of the tomato had no significant difference in CO2 concentrations and light intensities treatments. In cucumber and tomato both seedlings, the growth and quality such as compactness and leaf area rate were increased with the increase of light intensity, and there were highest in 300 µmol·m-2·s-1. The root surface and number of root tips of cucumber and tomato seedlings were significantly increased with the increase in light intensity. In conclusion, the regulation of the CO2 concentrations and light intensity can control the growth and quality of cucumber and tomato seedlings in CPPS, especially, increasing the light intensity can improve more significantly the growth and quality of seedlings.

Desirable Particle Size Distribution of Perlite for Tomato Bag Culture (토마토 자루재배 충진용 펄라이트의 적정 입도분포)

  • Sim Sang-Youn;Lee Su-Yeon;Lee Sang-Woo;Seo Myeong-Whoon;Lim Jae-Wook;Kim Soon-Jae;Kim Young-Shik
    • Journal of Bio-Environment Control
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    • v.15 no.3
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    • pp.231-238
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    • 2006
  • The physical properties of seven perlites different in particle size distribution were investigated to develop perlite bag culture in Korea. Particle sizes of 1.0-2.8mm and larger than 2.8 mm were rather evenly distributed in S-1 (1.2-5 mm), S-2 (0.15-5 mm) and S-5 (parat No.1). Larger particles were less in S-3 (1-3 mm), S-4 (Parat No.2), S-6 (OTAVI) and S-7 (Agroperl B-3). S-4, S-6 and S-7 contained lots of particles less than 1 mm in size. Total porosity was similar among substrates with the value of $59{\sim}62%$. Container capacity was between 35-40% regardless of substrates except in S-2 with 27.7%. Water content, which was about 60% at 0 kPa, was decreased sharply at 4.90 kPa regardless of substrates, which meant the easily available water was plenty in any kind of perlite tested. Substrates, S-1, S-2 and S-3 with different particle size distribution, were investigated to evaluate for perlite bag culture. Six tomatoes (Licopersicon esculentum Mill. cv. Rokkusanmaru) were planted in a perlite bag of 40 liters with the dimension of 120cm in length and 34cm in width. The amount of nutrient solution supplied and its drainage dependent on daily integrated radiation didn't show any regular trend during the growth. Roots in the bag were distributed evenly in S-1 and S-2 than in S-3. Plant grown in S-1 showed the highest total and marketable yield of 8,628 and 7,759 kg/10a, respectively. The number of small size fruits and malformed fruits were more in S-3. Consequently, S-1 with the particle size distribution of 1.2-5 mm is suggested as desirable substrate for perlite bag culture.

Effect of Water Content in the Substrate of the Scion and Rootstock during Pre- and Post-Grafting Period on the Survival Rate and Quality of Tomato Plug Seedlings (접목 전후 대목과 접수의 상토 내 수분함량이 토마토 플러그묘의 접목 활착율과 묘소질에 미치는 영향)

  • Vu, Ngoc-Thang;Choi, Ki Young;Kim, Il-Seop
    • Journal of Bio-Environment Control
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    • v.23 no.3
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    • pp.199-204
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    • 2014
  • This study evaluated the effect of water content in the substrate during pre- and post-grafting period on the survival rate and quality of tomato plug seedlings. Nine combinations of three water levels (high, medium, and low) were set up in the substrate of both scion and rootstock. The water content in the substrate of the scion did not affect the survival rate of grafted tomato seedlings, while the survival rate was statically different among the various water contents in the substrate of the rootstock. The maximum survival rates (100%) were observed in seedlings treated with high water levels in the substrate of the rootstock, and the survival rates declined with decreasing water content in the rootstock substrate. The growth characteristics were not significantly affected by different water content in the scion substrate, while they were statically different among the seedlings treated with various water contents in the rootstock substrate. The growth characteristics decreased with decreasing water content in the rootstock substrate. The highest value of compactness was observed in grafted seedlings, which combined medium water level in the scion and high water level in the rootstock substrate treatment. The root morphology of tomato seedlings was also affected by water content in the rootstock substrate. The total root surface area, total root length, and number of root tips decreased with deceasing water content in the rootstock substrate.