• Title/Summary/Keyword: 정식시기

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Seasonal Occurrence and Infection Site of Strawberry Anthracnose (딸기탄저병의 시기별 발생과 감염경로)

  • 김승한;최성용;임양숙;윤재탁;최부술
    • Research in Plant Disease
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    • v.8 no.1
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    • pp.45-49
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    • 2002
  • Seasonal occurrence of strawberry anthracnose in greenhouses caused by Colletotrichum sp. was examined from 1997 through 1999 at three locations, Kyeongju, Goryeong, and Cheongdo in Kyungbuk province, Korea. Also some factors related to the anthracnose infection such as initial infection sites, inoculation methods, and soil nature were studied through in vitro and field experiments. The anthracnose disease begun to occur from 15 days after transplanting in early October, and continued but gradually decreased thereafter for 2 months until December, After transplanting, initial infection mainly occurred through the runner of which the tissue was more susceptible to the anthracnose than those of the leaf and petiole when the fungal mycelial disk was inoculated. Postplanting inoculation by irrigation with spore suspension was much more effective in inducing the anthracnose disease than preplanting soil mix. However without inoculation, no or little anthracnose occurred regardless of commercial, non-cultivated or diseased field soils when healthy seedlings were planted. This suggests that occurrence of strawberry anthracnose in fields may be related to contamination of plant propagules with the anthracnose pathogen.

Estimating of Transplanting Period of Highland Kimchi Cabbage Using UAV Imagery (무인비행체 영상을 활용한 고랭지배추 정식시기 추정)

  • Lee, Kyung Do;Park, Chan Won;So, Kyu Ho;Kim, Ki Deog;Na, Sang Il
    • Journal of The Korean Society of Agricultural Engineers
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    • v.59 no.6
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    • pp.39-50
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    • 2017
  • Growth monitoring of highland Kimchi cabbage is very important to respond the fluctuations in supply and demand from middle of August to early September in Korea. For evaluating Kimchi cabbage growth, it needs to classify the transplanting period of Kimchi cabbage, preferentially. This study was conducted to estimate the transplanting period of highland Kimchi cabbage from 2015 to 2016 in the main production area of highland Kimchi cabbage, Anbandegi, Maebongsan, and Gwinemi. Correlation between NDVI (Normalized Difference Vegetation Index) from UAV images and days after transplanting of Kimchi cabbage was high in early transplanting period. But because the growth curve of Kimchi cabbage showed S-type, joint use of multi-temporal linear regression equation for estimation of transplanting period was more suitable. Using application of these equations at Anbandegi, Maebongsan, and Gwinemi, we made the map of transplanting periods of highland Kimchi cabbage. Generally, highland Kimchi cabbage is harvested in sixty days later since transplanting. As a result, we could estimate the harvest time and area of highland Kimchi cabbage.

A Study on acclimatization culture of the tissue cultured seedings in Zantedschia spp. (유색칼라 기내배양묘의 순화재배에 관한 연구)

  • Park, N.B.
    • Journal of Practical Agriculture & Fisheries Research
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    • v.5 no.1
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    • pp.20-27
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    • 2003
  • This experiment was carried out to develop an acclimatization system of tissue cultured seedling in Zantedeschia spp. There was not different in percentage of leaf emergence by the media compost of acclimatization but tuber was enlarged in sand(50%)+peatmoss(50%) treatment after 6 months growth. The optimum time for the acclimatizantion of Zantedeschia spp. was from the 20th of March to 20th of April. During this time, rate of acclimatization reached over 90 percentage. However on the 20th of august, acclimatization was low to 64-70.4 percentage. Size of tuber was enlarged in planting on the 20th of March. The weight of tuber was better in 10×10cm density of planting than others.

Optimal Fertilizer Concentration (EC) for Fertigation Culture of Korean Cabbage in Highland (고랭지배추 관리재배시 적정 관비농도 (EC))

  • Jong Taek Suh;Ki Deog Kim;Chang Seok Kim;Sam nyu Jee
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.08a
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    • pp.54-54
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    • 2020
  • 배추는 근본적으로 저온성 작물로 고온에 견디는 힘이 약할 뿐 아니라 가뭄이나 다습에도 취약하다. 그런데 2007년 이 후 매년 봄·초여름 가뭄이 지속되고 있으며, 예전처럼 강우에 의한 피해보다는 빈번히 나타나는 고온, 가뭄, 폭염 등 이상기상 환경조건에서 병 발생 및 생장지연으로 고랭지배추의 안정 생산이 위협받고 있다. 가뭄이 매년 지속됨에 따라 고랭지배추 재배지에서도 관수의 필요성이 인식되면서 관수를 실시하고 있으며, 대부분 스프링클러로 관수하고, 분수호스나 점적호스도 일부 이용하고 있으나 아직 토양수분, 토성이나 작물상태, 재배시기 등 환경요인을 고려한 과학적인 수분관리가 이루어지지 못하고 있어 고품질 안정생산을 위해서는 수분관리의 과학화가 필요한 실정이다. 관비재배는 적정한 비료를 필요한 위치에 공급하는 방식으로 비료의 효율을 높이면서 환경오염을 최소화하고, 비료과다 시용에 따른 환경오염 등을 회피할 수 있는 좋은 수단이다. 본 연구는 앞으로 고랭지배추 점적관수재배시 가뭄 극복과 효율적인 시비를 위한 적정 관비농도를 구명하고자 하였다. 배추품종은 수호를 이용하였으며 관비 EC농도(dS/m)는 0.4, 0.6, 0.8, 1.0, 1.2, 1.4 등 6처리를 두었으며 기준시비량은 N-P-K=32.0-7.8-19.8kg/10a로 하였다. 시험은 고령지농업연구소내 유리온실에서 4월 상순부터 5월 하순까지 직경 20cm 사각화분에 정식하여 재배하였다. 관비는 정식후 15일부터 7일 간격으로 5회 주었으며 관비량은 1회 화분당 65ml를 주었다. 화분은 완전임의배치 3반복으로 배치하였다. 초장은 정식후 38일까지 컸으며 엽장은 정식후 52일까지도 크는 경향을 보였다. 엽폭은 정식후 45일에 가장 많이 컸다. 초장, 엽장, 엽폭 모두 관비농도가 높을수록 커지는 경향이었으며 EC농도(dS/m) 1.4에서 가장 높게 나타났다. 주당 엽수와 주중도 EC농도가 높아질수록 많아졌으며 EC농도 1.4 처리에서 가장 많았고 그 다음이 EC 1.2 처리였다. 그러므로 관비 농도는 EC 1.4 dS/m 로 주는 것이 배추 생육에 좋을 것으로 생각된다.

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Projections of Future Summer Weather in Seoul and Their Impacts on Urban Agriculture (미래 서울의 여름날씨 전망과 도시농업에의 영향)

  • Kim, Jin-Hee;Yun, Jin I.
    • Korean Journal of Agricultural and Forest Meteorology
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    • v.17 no.2
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    • pp.182-189
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    • 2015
  • Climate departure from the past variability was projected to start in 2042 for Seoul. In order to understand the implication of climate departure in Seoul for urban agriculture, we evaluated the daily temperature for the June-September period from 2041 to 2070, which were projected by the RCP8.5 climate scenario. These data were analyzed with respect to climate extremes and their effects on growth of hot pepper (Capsicum annuum), one of the major crops in urban farming. The mean daily maximum and minimum temperatures in 2041-2070 approached to the $90^{th}$ percentile in the past 30 years (1951-1980). However, the frequency of extreme events such as heat waves and tropical nights appeared to exceed the past variability. While the departure of mean temperature might begin in or after 2040, the climate departure in the sense of extreme weather events seems already in progress. When the climate scenario data were applied to the growth and development of hot pepper, the departures of both planting date and harvest date are expected to follow those of temperature. However, the maximum duration for hot pepper cultivation, which is the number of days between the first planting and the last harvest, seems to have already deviated from the past variability.

Growth Characteristics of Ligularia stenocephala by Sowing Time in Field Seedlings (곤달비 노지육묘 파종 시기별 생육 특성)

  • Gue-Saeng, Yeom;Jeong-Seob Moon;Song-Hee Ahn;Dong-Chun Cheong
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2021.04a
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    • pp.40-40
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    • 2021
  • 곤달비(Ligularia stenocephala)는 쌍떡잎식물, 국화과의 다년생 초본식물로서 한국·일본·타이완·중국 등에 분포하고, 우리나라는 전남 홍도가 특산 자생지이며 주로 강원도, 경북 경주, 전북 남원 등지에서 재배되고 있다. 곤달비는 어린 부분을 생채, 데친 나물, 국거리, 튀김, 묵나물로 식용한다. 특수 성분으로는 Isopropenyl, dimethoxybenzofuran, Liguhodgsonal, Ligujapon, Ligularinone A, Ligularinone B 등이며 신경을 안정시키는 진정작용, 진통억제, 정기를 보익하고 허약함을 보하는 기능이 있고, 한방에서는 뿌리가 신경통, 유종(乳腫) 등에 쓰인다. 곤달비는 주로 시설하우스나 노동력이 많이 드는 임간에서 재배되어 생산 단가가 높아 소비활성화를 위한 가공제품을 생산하기가 힘들며, 육묘 또한 시설하우스에서 주로 이뤄지고 있다. 본 연구는 곤달비 노지육묘 파종시기별 생육특성을 구명하여 노지재배 생력화 재배기술을 확립하고자 2019년 4월부터 2020년 11월까지 전라북도농업기술원 허브산채시험장(해발 500m)에서 수행하였다. 춘파는 2019년 4월 상순, 5월 상순, 6월 상순에 각각 파종하였고 추파는 2019년 9월 상순, 중순, 하순에 파종하였다. 본포 정식은 춘파는 2019년 6월 말에, 추파는 2020년 4월 말에 식재하였으며, 파종시기별 발아율, 활착률, 생육특성, 수량성 등을 조사한 결과 파종시기별 발아율은 춘파가 35.0%로 추파 30.7%보다 높았으며, 발아 소요일수는 추파 육묘에서 8.3일로 춘파 육묘 9.3일보다 빨랐다. 파종시기별 정식시 묘소질은 춘파가 추파보다 좋은 생육상태를 보였고, 정식 후 육묘 활착률은 추파가 99.3%로 춘파 94%보다 높았고, 생존율 또한 추파 육묘에서 99.3%로 춘파 육묘 96.3%보다 높았다. 파종시기별 생육특성은 처리간 유의한 차이는 없지만 춘파에서 좀 더 좋은 생육을 보였으며, 수확량은 춘파 처리구에서 798.6kg/10a로 추파 처리 621.4kg/10a보다 높았다.

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Effects of Apex Removal on the Growth and Yield of Artichoke by Planting Times (정식시기별 생장점 제거가 아티초크(Cynara scolymus L.)의 생육 및 수량에 미치는 영향)

  • Seong, Ki-Cheol;Kim, Chun Hwan;Son, Danial;Lim, Chan Gyu;Cheon, Sung Jong
    • Journal of Bio-Environment Control
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    • v.23 no.1
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    • pp.56-59
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    • 2014
  • Apex removal is a common practice in artichoke cultivation to harvest heads of lateral shoots. This experiment was carried out to investigate the effect of apex removal by different planting times on the growth and yield of Artichoke (Cynara scolymus L.) in open field. Two treatments (apex removal and no apex removal) at three different planting times ($1^{st}$: Sep. 27, 2011, $2^{nd}$: March 29, 2012, and $3^{rd}$: Sep. 21, 2012) were tested using 'Green Globe' variety. There was no difference in the head characteristics and the number of harvested head between the treatments. The head weight was heavier in no apex removal of 242.7 g than the apex removal of 170.8 g. The yield also increased in no apex removal by 25% (1,249 kg/10a) compared to the apex removal of 997 kg/10a at the first planting time. At the second planting time, there was no difference in the head weights between the treatments. But the number of the harvested head was higher in no apex removal with 10.8 than 8.2 of the apex removal. The yield of no apex removal was 2,660 kg/10a, which was higher than 1,848 kg/10a of apex removal. At the third planting time, the head weight increased in no apex removal with 253.5 g compared to the apex removal with 218.7 g. The yield of no apex removal was 1,405 kg/10a, which was higher than 1,148 kg/10a of the apex removal. All the tests at 3 different planting times showed that the artichoke yields were higher in no apex removal than in apex removal. Therefore, it is desirable to cultivate artichoke without removing the apex for the higher yield and labor saving in open-field cultivation in Jeju island.

Changes in Visual Function After Viewing an Anaglyph 3D Image (Anaglyph 3D입체 영상 시청 후의 시기능 변화)

  • Lee, Wook-Jin;Kwak, Ho-Won;Son, Jeong-Sik;Kim, In-Su;Yu, Dong-Sik
    • Journal of Korean Ophthalmic Optics Society
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    • v.16 no.2
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    • pp.179-186
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    • 2011
  • Purpose: This study aimed to compare and assess changes of visual functions in viewing an anaglyph 3D image. Methods: Visual functions were examined before and after viewing a 2D image and an anaglyph 3D image with red-green glasses on seventy college students (mean age = 22.29${\pm}$2.19 years). Visual function tests were carried out for von Graefe phoria test, accommodative amplitude test by (-) lens addition, negative relative accommodation (NRA) and positive relative accommodation (PRA) test, negative relative convergence (NRC) and positive relative convergence (PRC) test, accommodative facility, and vergence facility test. Results: Assessment of the visual functions indicated that near exophoria and accommodative amplitude were reduced after viewing a 3D image, and although there were small changes in relation to these findings, NRC and PRC showed tendencies to increase and decrease at near, respectively. There were no significant changes with NRA and PRA, and accommodative and vergence facility were shown to have improved. Conclusions: Changes of visual functions were more in the 3D image than the 2D image, especially at near than distance. Particularly, the improvement of accommodative and vergence facility could be related to an effect of subsequent accommodation and vergence shift to have stereopsis in the 3D image. These results indicate that an anaglyph 3D image may, to some extent, be the effect of vision training such as anaglyphs.

Study on Removal Time of Former Crop and Bacterial Wilt Reduction in Non-Tillage Tomato Culture by Grafting with EG-203 after Strawberry Cropping (가지대목(EG-203)을 이용한 딸기 후작 토마토 무경운 재배에서의 풋마름병 경감 및 전작물 제거시기 구명 연구)

  • Lee, Mun-Haeng;Park, Guen-Se;Lee, Hee-Keyung;Lee, Hwan-Gu;Kim, Keyng-Jae;Lee, Sun-Gye;Cho, Pyeng-Hwa;Kim, Young-Shik;Kim, Sung-Eun;Han, Kyoung Suk;Hwang, Gap-Chun
    • Korean Journal of Organic Agriculture
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    • v.22 no.4
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    • pp.657-665
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    • 2014
  • This study was carried out to study the effect of eggplant (EG203) grafting and strawberry removal time on succeeding tomato cropping in high temperature season. In non tillage culture, bacterial wilt incidence was 30% and 0% in nongrafting and eggplant (EG203) grafting while 25% in non-grafting and 0% in eggplant (EG203) grafting in tillage culture. Commercial yield was similar in tillage and non-tillage culture using EG-203 grafting as 2,693 kg/10a and 2,657 kg/10a respectively with no difference in soluble solid content and hardness. Strawberry removal time after tomato planting enhanced plant height and internode length in 20days and 30days later removal while no difference in other growth characters. Commercial yield was higher as 1,885 kg/10a in strawberry removal before tomato planting than 1,678 kg/10a in 30days later removal. From this research, strawberry removal time should be determined by considering strawberry price and growth and expecting profit by succeeding tomato cropping.

Seedling Quality and Early Yield after Transplanting of Paprika Nursed under Light-emitting Diodes, Fluorescent Lamps and Natural Light (발광다이오드, 형광등 및 자연광 하에서 육묘된 파프리카의 묘소질 및 정식 후 초기 수량)

  • Lee, Jae Su;Lee, Hye In;Kim, Yong Hyeon
    • Journal of Bio-Environment Control
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    • v.21 no.3
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    • pp.220-227
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    • 2012
  • This study was conducted to analyze the seeding quality of paprika and the growth and early yield after transplanting of paprika nursed under artificial light and natural light. In this study, blue LED, red LED, and white fluorescent lamps (FL) were used as artificial lighting sources. Photoperiod, average photosynthetic photon flux, air temperature, and relative humidity in a closed transplants production system (CTPS) were maintained at 16/8 h, $204{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$, 26/$20^{\circ}C$, and 70%, respectively. Leaf length, leaf width, leaf area, top fresh weight and dry weight of paprika seedlings, and chlorophyll content in paprika leaves nursed under LED and fluorescent lamps for 21 days after experiment were significantly affected by light treatments. As compared with the control (white FL), leaf area of paprika grown under blue LED, red LED, and natural light was decreased by 63%, 63%, and 28%, respectively. Top dry weight of paprika grown under blue LED, red LED, and natural light was 64%, 50%, and 22%, respectively, compared with the control. Number of leaves on 18 days after transplanting showed with red LED, blue LED, and natural light by 86%, 84%, and 48%, respectively, compared with the control. On 114 days after transplanting, paprika nursed under blue LED and red LED had relatively short plant height. This result might be caused that the elongation of its internodes was suppressed by the illumination of sole blue or red light. Average number of fruits per plant harvested during 4 weeks after first harvest was 3.5 with red LED, 3.3 with blue LED, 1.0 with natural light, and 2.2 with control, respectively. Early yield of paprika nursed under red LED, blue LED, natural light, and control were 453 g/plant, 403 g/plant, 101 g/plant, and 273 g/plant, respectively. Larger fruit of 136 g was harvested with red LED treatment. Even though the early yield of paprika was greatly increased with artificial lighting, but total yield was almost similar as the harvest period after transplanting in greenhouses was lengthened. From the above results, we could understand that paprika nursed under white FL, blue LED, and red LED showed good growth after transplanting and was early harvested by a week as compared to the natural light. Therefore, the white FL, blue LED, and red LED as the artificial lighting sources in CTPS could be strategically used to enhance the seedling quality, to shorten the harvest time, and to increase the yield of paprika.