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Functional Package Wild Vegetables Combination and Production Model Productivity Test (기능성 꾸러미 산채류 조합 선발 및 생산모델 생산성 검정)

  • Gue-Saeng Yeom;Jung-Seob Moon;Song-Hee Ahn;Se-Hyun Ki;Dong Chun Cheong
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.12a
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    • pp.71-71
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    • 2020
  • 산채는 사람에 의하여 개량 육성되어 논밭에서 재배하고 있는 농작물과 달리 자연 그대로 산야에서 자생하는 식물 중 식용으로 가능한 것을 말한다. 산채류의 이용형태별 생산가능시기는 3~5월의 생채 생산과 6~7월의 건채 생산으로 소비자의 기호에 부합하는 신선 생채의 소비한계는 제한되어 있기 때문에 재배유형별 생채 수량검정을 통해 수확시기 연장 및 재배품목을 다양화 시킬 필요 있다. 따라서 본 시험은 재배가능한 산채류를 수집하고 기능성 분류를 통한 꾸러미 산채 조합을 구성하였고 조합된 산채류 들에 대한 생산성 검정을 위해 해발 500m의 전라북도 농업기술원 허브산채시험장에서 2018년 5월 말 갯기름나물 등 15 종을 정식하여 각 작물의 생육특성, 수확한계기 등을 조사하였다. 기능성 분류 결과 항당뇨, 항고지혈증, 항비만, 항혈전, 항염증 총 5가지 조합을 구성하였다. 산채류별 광합성특성 조사결과 돌단풍, 개미취, 섬쑥부쟁이, 질경이, 갯기름나물, 참취의 적정광량은 600~800 μmole/m2/s이였고 눈개승마, 어수리, 참당귀는 400~500 μmole/m2/s, 곤달비, 곰취, 단풍취는 200~300 μmole/m2/s이였다. 기능성 꾸러미 산채류 지상부 생육특성 결과 갯기름나물, 질경이, 참취, 곤달비 섬쑥부쟁이 등이 생육이 우수하였다. 수량성은 섬쑥부쟁이 1,694.6kg/10a로 가장 높았으며, 갯기름나물 1,673.4kg/10a, 참취 1,521.3kg/10a, 질경이 1,398.3kg/10a, 곤달비 1,300.6kg/10a 등이 높았다. 반면 돌단풍 111.8kg/10a, 단풍취 69.5kg/10a, 우산나물 25.4kg/10a로 아주 낮은 수량성을 보였다. 산채류 출현기는 산마늘이 2월 7일로 가장 빨랐으며 대부분 산채류들이 2월 11일에서 2월 25일에 출현하였고 단풍취, 우산나물이 3월 6일로 늦은 출현기를 보였다. 기능성 꾸러미 생채 수확가능 시기는 3월 상순부터 6월 하순까지 가능하였고 수확기간은 섬쑥부쟁이 117일, 두메부추 109일, 어수리 102일, 참당귀 102일로 길었고 돌단풍, 산마늘, 눈개승마, 우산나물은 생채 수확가능 시기가 짧았다. 건나물 수확기간은 돌단풍, 눈개승마는 3월부터 6월까지 가능하였고, 대부분의 산채류들이 5월부터 10월까지고 산마늘과 우산나물은 건나물을 생산할 수 없었다. 산채류 기능성 꾸러미별 생채 조합 가능 시기는 항당뇨는 3월 중하순, 항고지혈증은 3월 중순, 항비만은 3월 하순, 항혈전 3월 하순, 항염증은 3월 중하순으로 조사되었다.

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Variation of Functional Materials and Antioxidant Activity as Affected by Cultivation Environment in Pigmented Rice Varieties (재배환경에 따른 유색미의 기능성물질 및 항산화활성 변이)

  • Oh, Sung Hwan;Choi, Kyung-Jin;Kim, Sang Yeol;Seo, Woo Duck;Han, Sang Ik;Cho, Jun Hyun;Song, You Chun;Nam, Min Hee;Lee, Chung Keun;Woo, Sunhee;Lee, Chulwon
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.60 no.2
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    • pp.153-166
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    • 2015
  • Production of high quality pigmented rice contained with high content of anthocyanin, and polyphenol was significantly influenced by cultivation environments like transplanting date and cultivation location. This study was carried out to establish an optimum transplanting date and cultivation region to produce maximum content of anthocyanin, polyphenol and antioxidant activity of pigmented rice varieties (black, red colored). Three transplanting times (May 20, June 5, June 20) and four different sites (Miryang, Uiseong, Sangju, Bonghwa) were evaluated with five pigmented rice cultivars. Anthocyanin and total polyphenol index to average temperature during 30 days after heading (DAH) of black, red pigmented rice varieties showed that anthocyanin and total polyphenol contents were decreased by 10% and 9%, respectively, with increasing average temperature of $1^{\circ}C$. The optimum ripening temperature of the 30 DAH for the production of high anthocyanin and total polyphenol was 22 to $23^{\circ}C$ for early maturity black rice, 21 to $22^{\circ}C$ for mid-late maturity of black and red rices, respectively. On the other hand, an estimated heading date of pigmented rices in return according to the optimum ripening temperature of the 30 DAH was ranged Aug. 11 to 17 for early maturity black rice, Aug. 25 for mid-late maturity black, red rice variety in Jecheon, Aug. 27 to Sep. 2 for early maturity type, Sep. 3 to 6 for mid-late type in Daegu. It seemed that Jecheon, Boeun, Mungyeong, and Yeongju were optimum regions for cultivation of pigmented rices. The estimated sowing date of pigmented rices for high anthocyanin and total polyphenol production based on the optimum heading date was May 18 to 26 for early maturity black rice variety, April 11 for mid-late black, red variety in Jecheon, May 23 to 28 for early type, April 9 to 26 for mid-late type in Boeun, respectively.

Forecasting monthly precipitation of Gyeongan-cheon watershed using teleconnection with global climate indices (글로벌 기후지수와의 원격상관을 이용한 경안천 유역의 월 강수량 예측)

  • Kim, Chul-gyum;Lee, Jeongwoo;Lee, Jeong Eun;Kim, Nam-won;Kim, Hyeonjun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.314-314
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    • 2019
  • 가뭄대응 및 이수분야 활용을 위한 장기 기상예측정보 확보를 위해, 경안천 유역을 대상으로 전구기후지수의 원격상관 패턴을 이용하여 통계적 기반의 다중회귀모형을 구성하고 월 강수량의 예측가능성을 평가하였다. 예측인자로서 미국 NOAA에서 제공하는 기후지수 중 총 37개의 지수에 대해 1948~2018년의 월 자료를 이용하였으며, 예측대상인 경안천 월 강수량은 1966~2018년의 유역평균 강수량 자료를 활용하였다. 각 기후지수별 1~24개월 선행자료와 예측대상년도 월 강수량과의 상관분석을 통해 상관성이 높은 기후자료를 선별하여 다중회귀모형의 독립변수로 적용하였다. 예측대상년도를 기준으로 과거 40년의 자료(월 강수량 및 월 기후지수)를 보정자료와 검정자료로 구분(20년씩 무작위로 추출)하고, 보정기간에 대해 도출된 회귀모형 중 검정기간을 대상으로 예측성이 좋은 100개의 회귀모형을 선별하여 예측대상기간에 대한 예측모형으로 활용하였다. 2006~2018년에 대해 전망기간별(1개월, 3개월, 6개월, 12개월)로 각 월별 100개 회귀모형으로 부터의 예측값(예측치의 범위)이 실제 관측치를 포함하는 경우를 월별로 분석한 결과 10월이 가장 높고(83%), 11월(81%), 1월(79%), 8월(77%), 6월(75%), 12월(71%)의 순으로 높게 나타났으며, 상대적으로 7월(29%)과 3월(44%)의 예측성이 낮은 것으로 나타났다. 통계적 모형의 특성상 전망기간에 따른 예측의 정확도는 비례하지 않았다. 예측치의 편차는 크지 않지만 예측성이 낮게 나타나는 기간(3월, 2월)과 예측성은 높지만 예측범위가 크게 나타나는 기간(8월, 6월)에 대해서는 예측모형의 재검토 및 다양한 규모의 유역에 대한 적용을 통해 예측인자 추가 및 보완 등을 수행할 예정이다.

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Change of Total Glucosinolates Level according to Processing Treatments in Chinese Cabbage (Brassica campestris L. ssp. Pekinensis) from Different Harvest Seasons (수확기간별 배추의 가공처리에 따른 total glucosinolates함량변화)

  • Kim, Mee-Kyung;Hong, Eun-Young;Kim, Gun-Hee
    • Horticultural Science & Technology
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    • v.28 no.4
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    • pp.593-599
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    • 2010
  • This study was carried out to investigate the level of total glucosinolates in different parts (outer and inner part) of fresh, salted Chinese cabbage ($Brassica$ $campestris$ L. ssp. $Pekinensis$) and Kimchi at different harvesting periods (June-July, August-September, October-November, December-April, and May). For determination of total glucosinolates, Chinese cabbage was used for analytical sample preparation, provided with an anion exchanges column and measured by UV-visible Spectrophotometer. The fresh Chinese cabbage (FCC) that was harvested in June-July contained the highest level of total glucosinolates and was higher in outer part than inner part in all harvesting periods. The salted Chinese cabbage (SCC) that was harvested in May contained the lowest level of total glucosinolates. Total glucosinolates level of SCC in outer part was higher in June-July and August-September. The manufactured Kimchi (K) using harvested Chinese cabbage in June-July and August-September contained the highest level of total glucosinolates while that harvested in May contained the lowest level. The level of total glucosinolates in different parts was higher in inner part than outer part in all harvesting periods except for May. In all harvesting times, the level of total glucosinolates of FCC was higher than processed Chinese cabbage (SCC and K). Based on these results, levels of total glucosinolates are influenced by harvesting periods, parts and processing conditions of Chinese cabbage.

Composition of Vitamin A, E, $B_l$ and $B_2$ Contents in Korean Cow's Raw Milk in Korea (국내산 원유 중 비타민 A, E, $B_l$$B_2$ 함량에 관한 연구)

  • Kwak Byung-Man;Kim Sung-Han;Kim Kang-Seob;Lee Ki-Woong;Ahn Jang-Hyuk;Jang Chi-Hoon
    • Food Science of Animal Resources
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    • v.26 no.2
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    • pp.245-251
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    • 2006
  • This study was performed to investigate the changes of vitamin A, vitamin E, vitamin $B_l$ and vitamin $B_2$ contents in cow's raw milk collected from dairy farms in Chungcheong-do and Jeolla-do for a year. The contents of fat soluble vitamin A and E were changed as seasonal effect, but water soluble vitamin $B_l$ and $B_2$ contents were not changed as seasonal effect. Vitamin A content in cow's raw milk was as follows [minimum ${\sim}$maximum (mean), ug/100 mL]; $35.1{\sim}59.0$ (44.4) in spring, $36.7{\sim}65.6$ (50.0) in summer, $28.7{\sim}61.2$ (46.8) in autumn and $29.9{\sim}57.8$ (43.1) in winter. In case of vitamin E was as follows [minimum${\sim}$maximum (mean), ug/100 mL]; $28.3{\sim}59.2$ (45.8) in spring, $39.6{\sim}69.9$ (58.8) in summer, $35.0{\sim}62.8$ (46.2) in autumn and $26.0{\sim}55.4$ (41.5) in winter. In case of vitamin $B_l$ was as follow [minimum${\sim}$maximum (mean), ug/100 mL]; $27.7{\sim}57.9$ (42.84) in spring, $32.4{\sim}66.1$ (49.39) in summer, $34.1{\sim}63.7$ (46.69) in autumn and $20.6{\sim}61.4$ (43.20 in winter. The amounts of vitamin $B_2$ in cow's raw milk was as follows [minimum${\sim}$maximum (mean), ug/100 mL]; $150{\sim}182$ (160 in spring, $145{\sim}185$ (163) in summer, $149{\sim}180$ (166) in autumn and $148{\sim}190$ (167) in winter.

Forage Productivity of Collected Chinese Milkvetch Varieties (자운영 수집종의 생육 및 사료생산특성)

  • Seong, Rak-Chun;Park, Keun-Yong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.36 no.1
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    • pp.7-11
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    • 1991
  • Field experiment was conducted to examine the winter hardiness and forage productivity of Chinese milkvetch (Astragalus sinicus L.) varieties at the research farm of Korea University in Kyunggi province. Collected variety Nonsan, Imsil, Jangheung, Chungnam, Joongsan and introduced PI241587 were tested to untreated control and vinyl mulching conditions during winter season. Effect of vinyl mulching treatment was found no statistical significance in this experiment. Winter survival of six Chinese milkvetch varieties at the untreated control was average 88%. Variety Nonsan and Imsil showed higher fresh and dry weights than other varieties both on May 6 and 21 harvest. Average fresh weight per l0a of six varieties at the untreated control was 1,583kg on May 6 and 4,017kg on May 21 harvest. Crude protein content of dry matter of the varieties was average 21.3% on May 6 and 19.2% on May 21 harvest. However, average crude fiber content of the dry matter on May 6 was lower than that of May 21 harvest.

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Determination of Optimum Water Intaking Depth Based on Phytoplankton Distribution in Unmun Reservoir (식물플랑크톤 분포도에 따른 운문호의 선택취수 수심 결정)

  • Baek, In-Ho;Kim, Chul-Ho;Lee, Jung-Ho
    • Korean Journal of Ecology and Environment
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    • v.33 no.3 s.91
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    • pp.311-318
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    • 2000
  • The purpose of this study was to determine the optimum water intaking depth for water treatment plant based on the changes of phytoplankton distributions in Unmun reservoir. Sampling was carried around of intaking tower near the Dam site at monthly intervals from February to Ocotber in 1998. Total 79 phytoplankton taxa were observed and they were classified into 4 varieties, 75 species within 51 genera. Diatoms were mainly dominated from February to July. However Rhodomonas sp. was a dominant species in August, and Microcystis ichthyblabe in September and October. Cell density of 122,800 cells/mL in October was the highest, and 415 cells/mL in May was the lowest. The pattern of vertical distribution was similar until May; however, the cell density in the epilimnion was much higher than it in the hypolimnion during the periods with the high water temperature over $20^{\circ}C$ since June. The water depths showing over 5,000 cells/mL ranged from the surface to 9m in June, surface to 6m in September, and on the only surface in October. Based on water temperature and phytoplankton vertical distribution, the depth of 6m appeared to be the optimum intaking depth far water treatment plant: 75.4 to 98.0% of phytoplankton cell densities could be avoided and the temperature over $18.3^{\circ}C$ was preserved to prevent cold water damage for rice growth at the water depth during cyanobacterial blooming period in Unmun reservoir.

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Optimum Sowing date for Seed Production of Late-maturing Vegetable Perilla at Green House of Middle Region (중부지역에서 잎들깨 품종의 종자생산을 위한 비닐하우스 재배 적정파종기)

  • Ju, Jung-Il;Choi, Hyun-Gu;Kang, Young-Sik;Seong, Yeul-Gue;Lee, Hee-Bong
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.57 no.3
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    • pp.310-315
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    • 2012
  • The vegetable perilla is proved to be a late-maturing plant that flowers at the early of Oct. regardless of sowing time, so that the sowing time for seed production should be decided under consideration of maturity before beginning of frost. This experiment was carried out to determine the sowing date for seed production at greenhouse on late-maturing perilla cultivar, 'Ipdlkkae 1' in the middle region of Korea. The sowing dates were 8 times from May 6 to July 15 with an intervals of 10 days. As sowing date was delayed, the stem height, no. of nodes, no. of branches, no. of cluster per plant and no. of capsules per cluster were decreased. But as sowing was early, the lodging was occurred because of heavier growing. Days to flowering was linearly decreased about 0.86 day as affected by a day's delayed. But days from flowering to maturing was not significantly affected by sowing date. The grain yield was not significantly different among sowing from May 6 to June 15 and rapidly decreased the sowing after June 25 because of the reductions of no. of cluster and percent of ripened grain. Considering accumulative temperature, lodging, germination rate and grain yield, it is suggested that the sowing for seed production in late-maturing perilla cultivar should be finish before June 15 (transplanted at July 15) at greenhouse in the middle region of Korea.

Effect of Cutting Time on Growth and Flowering of Double Flowered Hydrangea serrata for. acuminata (겹꽃산수국의 삽목시기가 개화에 미치는 영향)

  • Lee, Jong Suk;Kim, Hyun Jin
    • FLOWER RESEARCH JOURNAL
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    • v.18 no.1
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    • pp.33-37
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    • 2010
  • Effects of cutting time of double flowered Hydragea serrata for. acuminata native to Korea on flowering and growth of following year were investigated in order to develop as a pot plant. Cuttings were carried out every 10th day from April to September in 2008. The cuttings were directly placed in 15 cm diameter pots. Longest plant was obtained from May cuttings and their average heights were 31.7 cm, and followed by April and July cuttings. Plant heights of August and September cuttings were 23.6 cm and 22.0 cm, respectively. In contrast, growth and height of June cutting were abnormally small. Leaf length, leaf width and petiole length of August and September cutting were reduced, but numbers of leaves were not changed. Average flower cluster numbers of May cuttings were 4 flower clusters, and July, August and September cuttings were 3 clusters while only 1 flower cluster per a plant was obtained during June. Biggest diameter of flower crown was observed from May cuttings and the size was 10.3 cm diameter; however, smaller flower crown size was observed after July cuttings. The best overall flower appearance was observed from May cuttings, and the worst was June cuttings. Even though plant height of August and September cuttings were reduced, flowering aspect and ornamental value were normal, but blooming times were retarded according to late cutting time.