• Title/Summary/Keyword: Tomato hydroponics

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Effects of Quinclorac on Early Growth of Follow-up Crops of Paddy Rice and Solanaceae (Quinclorac이 답후작(畓後作) 작물(作物)과 가지과(科) 식물(植物)의 초기생육(初期生育)에 미치는 영향(影響))

  • Shin, Hyeun-Won;Shim, Sang-In;Lee, Sang-Gak;Kang, Byeung-Hoa
    • Korean Journal of Environmental Agriculture
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    • v.14 no.2
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    • pp.213-220
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    • 1995
  • These experiments were conducted to clarify the effects of residues of quinclorac on several follow-up crops of paddy rice and Solanaceae species and to know the concentrations causing the phytotoxicity to several crops. Among them, the extent of injury in barley was smaller than that of other crops, whereas those of tomato plant and egg plant were higher. Tomato plant turned out to be the most sensitive to quinclorac in hydroponics. When tomato plant was treated with quinclorac at the concentration less than 10ppb in soil, the plant height, the root length, the number of fruits and the fresh weight of fruits increased, but they decreased at the higher concentrations than that. The responses of reproductive organs were very sensitive to quinclorac; the number of fruits and fresh weight of fruits decreased rapidly at the concentration higher than 10ppb. On the contrary, the responses of the vegetative organs were relatively small. The content of chlorophyll in leaves decreased when tomato plant as treated with quinclorac. The content of soluble protein in leaves decreased at high concentrations of quinclorac above 100ppb but it increased at low concentrations. However, the content of soluble sugar in leaves increased as quinclorac was treated increasingly.

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Changes of Growth and Yield by using Rootstocks in Tomato (대목사용에 따른 토마토의 생육 및 수량 변화)

  • Lee, Hyewon;Hong, Kue Hyon;Kwon, Deok Ho;Cho, Myeong Cheoul;Lee, Jun Gu;Hwang, Indeok;Ahn, Yul Kyun
    • Journal of Bio-Environment Control
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    • v.29 no.4
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    • pp.456-463
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    • 2020
  • This research was conducted to examine the changes in yield and difference in growth, using rootstocks in tomatoes as the growth indicators. Seedlings of tomato 'Gama', were used as scion and non-grafted control, while 4 different grafted tomatoes 'Powerguard', 'T1', 'L1', and 'B.blocking' were used as rootstocks. The non-grafted and grafted plants were grown in hydroponics for long-duration cultivation under plastic greenhouse conditions. The total yield of grafted tomato 'Powerguard' and non-grafted tomato 'Gama' were 8,428 g and 7,645 g, respectively. The flowering position of grafted plants 'B.blocking' and non-grafted plants at the latter period were 17.58 cm and 14.92 cm, respectively. The results showed that the yield and the balance of the plant were improved until the end of the harvest by grafting. The difference in yield between non-grafted and grafted tomatoes was evident in the 19th cluster, 236 days after planting. Therefore using rootstocks could be advantageous for long-duration cultivation in tomatoes.

Control of Tomato Wilt Disease by Amending pH of Nutrient Solution in Hydroponic System (토마토 수경재배에서 배양액의 pH 조절에 의한 풋마름병 방제)

  • Lee Jung-Sup;Choi Ji-Ho;Seo Sang-Tae;Han Kyoung-Suk;Park Jong-Han;Jang Han-Ik
    • Research in Plant Disease
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    • v.11 no.2
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    • pp.193-197
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    • 2005
  • The effect of pH on the survival of R. solanacearum and its transmission via roots of tomato in hydroponic culture were studied in laboratory and greenhouse. In laboratory experiment, R. solanacearum could not survive for 24h in nutrient solution with pH of $4{\cdot}0;or\;4{\cdot}5$, while 1, 14, 51 and $62\%$ of inoculum survived at pH $5{\cdot}0,\;5{\cdot}6\;and\;6{\cdot}5$, respectively. When tomato plants were inoculated with R. solanacearum through wounds on the stems, the bacteria moved downward from the inoculation site to the roots and infectious bacteria were released from the roots into the nutrient solution. Of two pH regimes tested in greenhouse nutrient-film technique(NFT) culture, the R. solanacearum population was significantly lower in pH 5.0 than in pH 6.5 in most sampling data. In treatments in which R. solanacearum was introduced by transplanting two root-inoculated plants, significantly move plants developed wilt at pH $6{\cdot}5$(34 out of 48 plants) than at pH 5.0(11 out of 48 plants). In addition, when the bacterium was introduced by transplanting two stem-inoculated plants at pH $6{\cdot}5$, seven out of 24 plants developed wilt.

Analysis on Growth and Yield of Cherry Tomato Grown in a Two-Story Bed System Adapted to Strawberry Cultivation as Affected by the Planting Time during the Uncultivated Period (딸기 재배용 2단 베드 시스템에서 휴작기 이용 방울토마토 재배 시 정식 시기에 따른 생육과 생산성 분석)

  • Choi, Hyo Gil;Moon, Byoung Yong;Kang, Nam Jun;Ko, Dae Whan;Kwon, Joon Kook;Lee, Jae Han;Park, Kyoung Sub
    • Horticultural Science & Technology
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    • v.34 no.2
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    • pp.228-235
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    • 2016
  • This study was conducted to determine the yield of cherry tomato (Solanum lycopersicum Mill.) grown at three planting times during the uncultivated period of strawberry. Cherry tomato was planted under condition filled with strawberry dedicated culture medium on a two-story bed with April 20, April 30, and May 10 at 2015. Fruit harvest was completed on July 31. The supply concentration of nutrient solution at the time of transplanting was started as EC $1.2dS{\cdot}m^{-1}$ and it was gradually increased to EC $2.5dS{\cdot}m^{-1}$ after blooming of the first flower cluster. Netherlands PBG solution was supplied for one minute six times per day. The heights of cherry tomato plants planted at earlier were significantly greater than those of tomato plants planted later. The heights of cherry tomato plants grown at the bottom of the bed were greater than those grown in the upper bed. The yield of cherry tomatoes planted on April 20 at the bottom of the bed was greatest with an average of 2,954 g of tomatoes per plant. There were no significant differences in the average weight and sugar content of fruit according to planting times and bed position. The yield of cherry tomato plants planted on April 20 was 18% and 34% higher than that of plants planted on April 30 and May 10. We confirmed to increase the yield of the cherry tomato when early plants planted on two-story bed. These results indicate that farmers can choose the best period of producing cherry tomato during the un-cultivated period of strawberry under two-story bed conditions.

Analysis of Domestic Patent Information on Hydroponics Field (수경재배 분야의 국내 특허 정보 분석)

  • Yu, Sung-Oh;Bae, Jong-Hyang;Park, Yun-Jum;Cho, Ja-Yong;Jang, Hong-Gi;Heo, Buk-Gu
    • Journal of Bio-Environment Control
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    • v.16 no.1
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    • pp.13-20
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    • 2007
  • This study was conducted to collect the basic data fo the development ot hydroponic technique and the efficient promotion of water culture. We have also analysed the water culture associated domestic patent application informations searching for on-line internet site with an admission fee (http://www2.wips.co.kr) from the year 1983 to January, 2006. Fifty nine patent applications related to the hydroponics were searched for in this study. Main patent contents applied were as followed in the order of that nineteen applications about the hydroponic equipments by 32.2%, thirteen applications about the materials used in water culture by 22.0%, eleven applications about the composition of nutrient solution by 18.6%, nine applications about the cultural methods by 15.3%, and seven applications about the cultural media by 11.9%. The compositions of nutrient solution and the cultural methods intended for specific crops were increased in number following five applications about tomato plants and four applications about potatoes. Thirty three patents (55.9%) were mainly applied before the year 2000. Main patent contents were the compositions of nutrient solution before the year 2000 in contrast to the cultural methods and substrates after the year 2000.

Management of Dripper Position in Tomato Perlite Bag Culture (토마토 펄라이트 자루재배에서의 점적핀 위치 관리)

  • Sim, Sang-Youn;Kim, Young-Shik
    • Journal of Bio-Environment Control
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    • v.18 no.4
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    • pp.413-419
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    • 2009
  • The appropriate dripper position in perlite bag was investigated for tomato production. Drippers were laid at 5(F5), 15cm (F15) away from the stem base or 5cm at first and then moved to 15cm later (M5-15). Roots were developed more near the stem base in F5, while less in F15. Roots were distributed evenly in M5-15. In vertical distribution of water in perlite bag, water content was higher as it went deeper with the variation by dripper positions. Yield was high in F15 and low in F5. In conclusion the position of dripper is the best at 15cm from the stem base in perlite bag culture in view of root distribution and yield.

The investigation of Appropriate Hydroponic System for Cherry Tomatoes in Summer Season (방울토마토의 여름재배시 적정수경재배방식 구명)

  • 김영식
    • Journal of Bio-Environment Control
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    • v.2 no.1
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    • pp.53-57
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    • 1993
  • This study was carried out to investigate the appropriate hydroponic system when cherry tomatoes were grown in summer. The base diameter of the trunk, leaf length, leaf width, and the length of cluster were good in deep flow culture(DFC), and not different between NFT and rockwool culture. The first time of flowering and the fruit coloring per cluster were not different among cultural systems, but the marketable yields were good in DFC. In DFC, % dry weight, firmness, the content of organic acid and sugar were low, and the ratio of sugar/organic acid and vitamin C were high. So DFC is recommended for the summer cultivation of cherry tomatoes.

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Appropriate Daily Last Irrigation Time in Coir Bag Culture for Tomato (토마토 코이어 자루재배시 적정 급액마감시각 구명)

  • Kim, Sung-Eun;Sim, Sang-Youn;Lee, Moon-Hang;Kim, Young-Shik
    • Journal of Bio-Environment Control
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    • v.21 no.1
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    • pp.12-19
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    • 2012
  • This research was performed to determine the appropriate daily last irrigation time to enhance the plant growth and the water and fertilizer use efficiencies in coir bag culture for tomato plant. The time to finish the daily irrigation was set by 1, 2, 3 and 4 hours before the sunset. The water content in the substrate was greatly affected by the last irrigation time. The earlier the last time, the greater the daily fluctuation of water contents in the substrate. The daily irrigation times were not affected by using irrigation management system controlled by drainage electrodes or the physiochemical properties of coir. The growth characteristics were not significantly different among the treatments. The highest marketable yields were obtained in the treatment finishing two hours before sunset, and the lowest yields were obtained in the the treatment finishing 4 hours before sunset. Based on the result from surveying quantity of irrigated water for 128 days of the experiment period, the water and fertilizer use efficiencies were lowest in the treatment finishing 4 hours before sunset, and the highest in the treatment finishing 2 hours before sunset. In terms of plant growth, yields, water and fertilizer use efficiencies, 2 hours before sunset treatment was determined as the most economical and desirable irrigation schedule.

Appropriate Set Time in Irrigation System by Time Clock in Tomato Perlite Bag Culture (타이머 제어에 의한 토마토 펄라이트 자루재배시 적정 관수시간 도출)

  • 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.4
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    • pp.327-334
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    • 2006
  • In tomato perlite bag culture, the available water content was analyzed for several sorts of perlite so that the irrigation safety was investigated and thus the irrigation strategy controlled by time clock was established. The reduction trends of water content in perlite bags were monitored for tomatoes, of which fruits were harvested until the fifth cluster. The amount of daily reduction of water in the bag was on the decrease as the total water in the bag was decreased. In terms of time interval from when the water content based on weight was reduced more than 50g to when it was dropped again, the longest time interval in a day was retarded gradually. It means plant activity was recovered later than the previous day. The available water content in perlite bag of 40 liters was about 30% which was 12 kg in weight, which satisfied daily water demand of 6 tomato plants. The appropriate time irrigated by time clock was recommended for the case that it was irrigated 5 or 10 times a day with the daily integrated solar radiation of 601 or $1,519W/m^2$.

Effects of Diurnal Alternation of Nutrient Solution Salinity on Growth and Fruit Quality of Tomatoes Hydroponically Grown in NFT System (NFT 수경재배시스템에서 주/야 양액농도변환이 토마토의 생육 및 품질에 미치는 영향)

  • Kim Ki-Deog;Lee Eung-Ho;Lee Jae-Wook;Lee Byoung-Yil;Son Jung-Eek;Chun Chang-Hoo
    • Journal of Bio-Environment Control
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    • v.15 no.1
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    • pp.53-68
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    • 2006
  • This experiment was conducted to investigate the effects of diurnal alternation of nutrient solution salinity on growth and fruit quality of tomatoes (Lycoperisicon esculentum cv. 'House momotaro') hydroponically grown in root intercept bag-NFT (RIB-NFT) system. Plant height was the lowest in the high concentration during daytime (6/1 $dS\;m^{-1}$, day/night). Yield was very high in the concentration of 1/1 $dS\;m^{-1}$, it decreased with increasing the concentration of nutrient Yield was higher at low concentration (4/1 $dS\;m^{-1}$) at nighttime compared to the same concentration (4/4 $dS m^{-1}$) at daytime and nighttime, and the reverse (1/4 $dS\;m^{-1}$) was similar to the control (perlite culture). Yield was greatly reduced by higher concentration at daytime than nighttime, and the decrease was alleviated by lower concentration at nighttime. With increasing the concentration of nutrient solution during daytime, sugar content of tomato fruit was increased, but yield was decreased. In the other experiment, tomato plants were hydropoically cultured in NFT system diurnally alternated between Aichi's solution and $Ca(NO_3)_2$ solution. $Ca(NO_3)_2$ solution was supplied for 4 hours from 10:00 to 14:00 at daytime and from 22:00 to 2:00 at nighttime, respectively, and Aichi's solution was supplied for the time except the 4 hours. Ca content of leaves and sugar content of fruit were increased by supplying $Ca(NO_3)_2$ solution at daytime compared to nighttime, but plant growth was greatly suppressed by supplying $Ca(NO_3)_2$ solution with the concentration of 4 $dS\;m^{-1}(4/4^{Ca}\;dS\;m^{-1})$ at nighttime.