• Title/Summary/Keyword: 어린순

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Development of Technology for Intensive Production of High-Quality Rosemary Shoots (고품질 로즈마리 어린 순 생산을 위한 적정 삽수 길이 및 삽목 시기 구명)

  • Myeong-Suk Kim;Se-Hyun Gi;Jung-Seob Moon;Gue-Saeng Yeom;Song-Hee Ahn;Dong-Chun Jung
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2021.04a
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    • pp.43-43
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    • 2021
  • 로즈마리(Rosmarinus officinalis)는 지중해 지역이 원산이고 꿀풀과에 속하는 다년생 식물로 자생지에서는 식물의 크기가 2m까지 자라는 관목성 식물이다. 식용, 약용, 미용, 향료뿐 아니라 관상용으로도 널리 이용되고 있고 특히 향이 좋아 세계 로즈마리 추출물 시장은 연평균 4.8%씩 증가하여 2027년에는 10억 달러를 넘을 것으로 예측된다. 우리나라도 소비 트렌드 변화에 따른 이용성 확대로 신선허브의 수요가 증가하고 있으나 아직은 허브 식물원료의 대부분을 수입에 의존하고 있고, 로즈마리 역시 식물원료뿐 아니라 가공품까지 외국에서 수입하여 사용하는 실정이다. 2018년 로즈마리 수입량은 신선상태 978kg, 건조상태 23,404kg으로 높은 수입의존에 따른 가격 상승과 긴 유통기간에 의한 품질 저하 등의 문제가 발생하고 있다. 본 연구는 로즈마리 어린 순 재배 적정 삽수 길이를 설정하고 어린 순 생산 가능 기간을 구명하여 추후에 고품질 로즈마리 어린 순 집약생산을 위한 다단재배기술을 확립하고자 수행되었다. 삽수 길이는 5, 10, 15cm로 하였고, 삽목 시기는 4월 하순 ~ 8월 하순까지 30일 간격으로 5회 실시하였다. 적정 삽수 길이 설정 실험에서는 15cm 삽수 발근률이 85.6%로 가장 높았으며 신초 출현시기는 5월 26일, 어린 순 생산시기는 6월 23일로 가장 빨랐고 수확시까지 소요일수는 56일로 가장 짧았다. 기대수량 또한 728g/m2로 가장 높았다. 로즈마리 어린 순 생산 가능 기간 구명 실험에서는 4월 28일 삽목시 발근율이 85.6%로 가장 높았고 육묘기간은 28일 어린 순 생산까지 소요일수는 56일로 가장 짧았다. 삽목 시기별 어린 순 품질 및 생산량은 4월 28일 삽목시 품질이 좋았으며 기대수량 또한 728g/m2로 가장 높았다. 결과적으로 상품성 있는 어린순 생산에 적합한 삽수 길이는 15cm, 삽목 시기는 4월 하순 경에 했을 때, 로즈마리의 생육상태, 수확까지의 기간, 어린 순 생산량 등 종합적인 면에서 가장 우수한 값을 얻을 수 있었다.

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Changes of Fruit Yield and Fresh Sprout Characteristics by Sowing Times on Chayote in Central Area of Korea (중부지방에서 파종시기별 차요테 과실 생산량 및 어린순 특성 변화)

  • Park, Eui Kwang;Jeong, Taek Gu;Lee, Min Jeong;Park, Jae Seong
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2018.10a
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    • pp.67-67
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    • 2018
  • 차요테(Sechium edule L.)는 중앙아메리카와 멕시코 남부가 원산인 박과 채소로 찜, 볶음, 튀김, 수프, 샐러드로 활용되는 아열대 채소다. 어린 순은 양념으로 무치거나 볶아서 나물로 이용되고, 열매는 샐러드, 수프, 볶음, 절임 등으로 이용된다. 동양에서는 뿌리채소로 이용되는 무(Raphanus sativus L.)와 유사하게 활용되고 있기도 하며, 인도네시아에서는 칠리 소스, 기름 등에 볶아 먹거나, 삶아서 양념을 찍어 먹기도 한다. 영양학적으로 열매에는 엽산, 비타민 C, 비타민 B6, 구리(Cu), 마그네슘(Mg) 등 미네랄이 풍부하며, 특히 칼륨(K)이 많이 함유되어 있다. 생태적으로 아열대지역에서는 다년생이지만 우리 나라에서는 일년생으로 취급하여, 봄에 정식하여 가을철에 개화되며, 늦가을에서 초겨울까지 열매를 수확한다. 본 연구는 중부지방에서 차요테 열매의 수확량이 줄어들지 않으면서, 차요테의 어린 순을 수확할 수 있는 재배기술을 개발하기 위하여, 2017년에 이어 2018년에도 동일한 처리로 시험을 수행하였다. 시설하우스에서 $2{\times}3m$ 간격으로 2018년 2월 9일부터 4월 21일까지 15일 간격으로 6회 파종하였고, 처리별로 발아시, 발아기, 발아전, 초장, 엽수, 엽록소함량, 어린순 수확량 등을 조사했다. 4차 처리구인 3월 23일 파종의 경우 발아시(최초 발아일)는 파종 후 4일이 소요되어, 1차 처리구 2월 10일 파종 보다 18일 빨랐고, 발아기(40% 발아)는 파종 후 10일로 24일 빨랐으며, 발아전(80% 발아)은 파종 후 16일로 25일 정도 더 빨리 발아되는 경향이었다. 정식 후부터 6월 하순까지 어린순 생산량은 4차 파종 시 773 g주$^{-1}$로 1차 파종 785g주$^{-1}$와 차이가 없을 정도로 생육이 좋았지만, 5차 파종 및 6차 파종의 경우 생산량이 저조하였다. 따라서, 하반기 과실 생산량을 추가적으로 조사하고, 어린순 생산량과 비교하여 중부지역 차요테의 최적 파종시기를 정할 수 있을 것으로 판단되었다.

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Physiochemical property of edible tissues (sprout and root) of steam-treated reed (증자처리에 의한 갈대 식용가능 부위(어린순과 뿌리)의 이화학적 특성)

  • Kim, Sung-Tae;Huh, Chang-Ki;Kim, Su-Hwan;Kim, Yong-Doo
    • Food Science and Preservation
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    • v.22 no.4
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    • pp.482-489
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    • 2015
  • This study was performed for the comparison of the general components, minerals, amino acids, organic acids, free sugars, ascorbic acid, polyphenol content and DPPH free radical scavenging activity of steamed-treated reed (sprout and root) to those of raw reed. Moisture content of sprout and root of reed after steaming treatment decreased from 81.28% and 81.64% to 70.18% and 65.50%, respectively. Crude ash content was the highest in raw sprout and steam-treated root. Crude lipid content of raw sprout and root were almost similar. In addition, crude lipid content of steam-treated sprout was greater than that of root. Nitrogen free extract content of root was 2 times as high as that of sprout. Total free sugar contents of raw sprout and root increased from 1,311.39 mg% and 4,130.98 mg% to 1,157.79 mg% and 3,750.90 mg%, respectively, after steam treatment. Furthermore, the organic acid contents of sprout and root of reed after steam treatment were less than those of raw sprout and root. Calcium and potassium contents were the highest among others in both steam-treated and raw reed. Amino acid content of sprout was higher than that of root in both before and after steam treatment. Among the amino acids, serine content was the best presented in both before and after steam treated reed. Vitamin C content of steam-treated sprout and root of reed decreased from 61.74 mg% and 6.57 mg% to 4.54 mg% and 80.79 mg%, respectively. Total polyphenol content of sprout was greater than that of root in raw and steam-treated reed. DPPH free radical scavenging activity of ethanol extraction of root was greater than those of other extracts of root.

Productivity Evaluation of Rosemary Shoots using Artificial Light Sources in Multi-layer Cultivation (다단재배에서 인공광원을 이용한 로즈마리 어린순의 생산성 평가)

  • Myeong Suk Kim;Jung Seob Moon;Song Hee Ahn;Dong Chun Cheong;Min Sil Ahn;So Ra Choi
    • Journal of Bio-Environment Control
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    • v.33 no.3
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    • pp.163-171
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    • 2024
  • This study was aimed to investigate the effects of layer-by-floor environmental conditions and lower shelf supplemental lighting on the productivity of fresh shoots when growing rosemary in multi-layer cultivation. The 10-cm cuttings from stock plants of common rosemary (Rosemarinus officinalis) were planted in a 128-hole tray, rooted, and then transplanted into pots of 750, 1,300, and 2,000 mL. Afterwards, they were placed on multi-layer shelves (width × length × height: 149 × 60 × 57 cm, 3-layer) in a two-linked greenhouse and cultivated using the sub-irrigation. The productivity of young shoots by layer of the multi-layer shelf was the highest on the third floor (top floor), but productivity decreased sharply after September due to stem lignification caused by excessive light during the summer. Conversely, the lower two layers exhibited faster growth rate of young shoots until the late cultivation period, but the quality decreased due to stem softening and leaf epinasty. To address the excessive light problem on the third floor during the summer, shading was implemented at 30% opacity in July and August, resulting in a 210% increase in rosemary young shoots count and a 162% increase in fresh weight per unit area compared to the unshaded control. To improve the lighting deficiency on the lower layer, supplemental lighting with LED at 30 W increased rosemary young shoot harvest by 168% from June to September compared to no supplemental lighting, but it decreased productivity after September. Therefore, when growing rosemary in multi-layer, it is judged that intensive production of young shoots is possible if the third floor (top layer) is shaded with 30% of light from July to August to prevent stem lignification, and the lower layer is temporarily supplemented with LED 30 W from June to September to increase young shoot growth.

Growth and Grain Yield under Different Direct Seeding Cultures in Rice (벼 직파재배 유형에 따른 생육 및 수량)

  • Choi, Weon-Young;Kim, Sang-Su;Sin, Hyun-Tak;Cho, Soo-Yeon;Choi, Sun-Young
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.42 no.1
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    • pp.14-21
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    • 1997
  • This experiment was conducted to identify the growth and yield differences in rice cultural types: Broadcasting on flooded paddy surface(BF), drilling on flooded paddy surface(DF), puddled-soil drill seeding(PD), drill seeding on dried paddy flat(DD), and machine transplanting of lO-day old seedling(MT) at National Honam Agricultural Experiment Station in 1995. Among the cultural types of direct seeding, the number of seedling stand showed high in order of DD>BF>DF>PD. Tillering at early growth stage was faster in MT and effective tiller showed higher in MT than in direct seeding. Growth duration from seeding to heading was longer in direct seeding than in MT for 2-13 days of Dongjinbyeo and 10-18 days of Nonganbyeo. Root distribution ratio at the surface soil revealed high in order of BF>DF>PD>DD and MT. Culm wall thickness of 4th internode was thicker in machine transplanting of 10-day old seedling than in direct seeding, and the depth of buried culm showed deep by turns of MT> DD>PD>DF and BF. The height of center gravity and moment related to lodging revealed higher in direct seeding than machine transplanting that resulted high lodging index by turns of BF>DF>DD> PD among the direct seeding cultural type. Lodging was occured seriously in the order of BF>DF>PD>DD =MT in Dongjinbyeo but wasn't significantly different in Nonganbyeo among the cultural type. The yield components and grain yield showed varietal differences but was not significantly different between in MT and in direct seeding, and among cultural types of direct seeding.

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Effect of Root Zone Volume on Productivity of Shoots in Multi-layer Cultivation of Rosemary (로즈마리 다단재배 시 근권부 용적이 어린순 생산성에 미치는 영향)

  • Myeong Suk Kim;Jung Seob Moon;Song Hee Ahn;Dong Chun Cheong;Min Sil Ahn;So Ra Choi
    • Journal of Bio-Environment Control
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    • v.33 no.3
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    • pp.156-162
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    • 2024
  • This study was conducted to investigate the effect of rooting volume on the productivity of fresh shoots when growing rosemary in multi-layer cultivation. The 10 cm middle cuttings from which the common rosemary (Rosmarinus officinalis L.) apical bud was removed were planted in a 128-hole tray, rooted, and then transplanted into pots of 125, 200, 550, 750, 1,300, and 2,000 mL to determine the growth characteristics and quantity of young shoots of 1-year-old and 2-year-old rosemary. In the case of 1-year-old rosemary, there was no clear difference in initial growth (30 days after transplanting) between treatments in pot size larger than 550 mL, in the case of 2-year-old rosemary, growth tend to be proportional as the pot became larger. The fresh weight of the underground part of 1-year-old and 2-year-old rosemary was the lowest at 6.9 g and 24.4 g, respectively, when surveyed on July 25 in a 550 mL container, and 10.3 g and 24.9 g, respectively, when surveyed on November 24, and there was a difference between treatments in containers of 750 to 2,000 mL. On the other hand, in the case of 1-year-old rosemary, the fresh weight of the above-ground part increased as the pot became larger, but there was no statistical difference above 1,300 mL, and the fresh weight of 2-year-old rosemary was also significantly higher as the pot became larger. The quality of young shoots was the best for 1-year-old rosemary in a pot of 2,000 mL, but for 2-year-old rosemary, there was a difference in quality depending on the season. Shoot productivity per unit pot was highest at 1,300 mL, but when converted to per unit area, the best was observed at 750 mL. Therefore, the most suitable pot size for intensive production through multi-layer cultivation of rosemary young shoots is judged to be 750 mL (12.5 × 11.5 cm).

Basic Research of Development for Food of Seedling in Some Plants (몇가지 식물에 있어서 어린순의 식품학적 가치개발을 위한 기초연구)

  • 박석근
    • Korean Journal of Plant Resources
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    • v.8 no.3
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    • pp.335-339
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    • 1995
  • This experiments were carried out to develop for food in some plants seeding. Plant materials were Raphanus sativus, Perilla frutescens var. acuta, Perilla frutescens var. japonica, Scutellaria baicalensis, Angelica dahurica, Angelica gigas, Ligusticum acutilobum, Peucedanum japonicum, Platycodon grandiflorum, Codonopsis lanceolata, Allium monanthum and Fagopyrum esculentum. The results obtained are summarized as follows ; germination rate was the highest in Raphanus sativus and germination vigor was excellent in Perilla frutescens var. acuta Total overall acceptability was the best in Perilla frutescens var. acuta

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Optimization of the extraction procedure for quantitative analysis of saponarin and the artificial light condition for saponarin production from barley sprout (고함량 사포나린 함유 보리 어린 순 재배를 위한 식물공장내 인공광 조건 및 사포나린 추출 분석법 최적화)

  • Oh, Kyeong-Yeol;Song, Yeong Hun;Lee, Duek-Yeong;Lee, Tae-Geun;Kim, Jin-Hyo
    • Journal of Applied Biological Chemistry
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    • v.64 no.3
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    • pp.197-203
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    • 2021
  • Saponarin is a crucial component of barley sprout, and the production and quantitative analysis are issued to date. In this study, the optimal saponarin extraction conditions were presented on the subject of acetonitrile, ethanol, methanol, and water for the quantitative analysis in barley sprout through the extraction efficiency compared with the solvent concentration and extraction time using the reaction surface methodology. The optimal extraction time and solvent condition for saponarin were 3.9 h and 53.7% of aqueous methanol, respectively. In addition, the effect of LED artificial light on the saponarin production in barley sprouts was evaluated by the light cycle, light quantity, and light quality. The optimal cultivation conditions under artificial light for the growth of barley sprout and saponarin production were most effectively achieved on 220-320 μmol m-2 s-1 of the light quantity with 8 h day-1 of a daylight cycle under 6500K LED combined with red light. Furthermore, blue light was evaluated as the main factor in the biosynthesis of saponarin.

Study of Seedling Type for Transplanting Culture in Rice Paddy Field at the Newly Reclaimed Land (신간척지에서 벼 기계이앙재배에 적합한 모 종류 구명)

  • Choi, Weon-Young;Kim, Sun;Lee, Jang-Hee;Kim, Si-Ju;Choi, Min-Kyu;Ko, Jong-Cheol;Lee, Kyu-Seong;Lee, Kyeong-Bo
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.57 no.2
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    • pp.166-170
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    • 2012
  • This research was carried out to choose the suitable seedling type to transplanting in order to stabilize rice yield. The brief of this research to transplant the seedling divided into 10-day seedling, 20-day seedling, 30-day seedling, 33-day pot seedling in the field of Saemangeum Gyehwa, newly reclaimed land were following; Average salt content in 2 years was reduced from 0.16% to 0.04% after transplanting. Heading date of seedling type was Aug. 14 at 33-day pot seedling compared to 2 days at 30-day seedling, 3 days at 20-day seedling, 5 days late at 10-day seedling. Lodging index was highest at 30-day seedling, and also, field lodging was 50%. Ripening ratio and 1,000 grain weight were similar and panicle number was higher 20-day seedling > 10-day seedling > 33-day pot seedling > 30-day seedling. Rice yield was higher 10-day seedling = 20-day seedling > 33-day pot seedling > 30-day seedling. Head rice ratio was higher in 20-day seedling > 30-day seedling = 10-day seedling > 33-day pot seedling. Amylose content and protein content was not significantly different between seedling types. With this results, the suitable seedling types in newly reclaimed land are 10-day and 20-day seedling.

Studies on the Differences of the Rice Tillering System and Yield Characteristics under the Different Cultivation Methods in Southern Region of Korea II. Variations of Heading and Yield Components under Different Nursing Methods and Transplanting Time (남부지방에서 벼 재배형태별 분얼체계 및 수량구성형질의 차이에 관한 연구 II. 출수기와 수량구성형질의 변화)

  • 김용재;신해룡;장강연
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.37 no.6
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    • pp.487-498
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    • 1992
  • To study the effects of different nursing methods and transplanting on the growth of rice plant (Oriza sativa L.) in southern region of Korea, Kumo-byeo, Palgong-byeo and Dongjinbyeo were transplanted from April 20 to July 20 at an interval of 15 days with 8 days old seedling (infant seedling) and 25 days old box-seedling for machine transplanting, and 45 days old conventional seedling. Threshold transplanting date in southern region of Korea were June 26 for 8 days old seedling, July 1 for 25 days old seedling and] July 11 for 45 days old seedling for Kumo-byeo, and June 21, June 30, July 10 for Palgong-byeo, June 10, June 24, July 5 for Dongjin-byeo, respectively. Yield has no uniform tendency according to the transplanting date. However, yield were greater in the order of 8 days old seedling >25 days old seedling> 45 days old seedling in Kuma-byeo and 25 days old seedling (equation omitted)8 days old seedling (equation omitted)45 days old seedling in Palgong-byeo, 45 days old seedling(equation omitted)25 days old seedling(equation omitted) 8 days old seedling in Dongjin-byeo. The optimum accumulated air temperature during yield productive stage around heading (40 days from 10 days before heading to 30 days after heading) for high yield were 1,003$^{\circ}C$ for 8 days old seedling, 1,014$^{\circ}C$ for 25 days old seedling and 1,027$^{\circ}C$ for 45 days old seedling in Kumo-byeo. And they were 1,018$^{\circ}C$, 1,015$^{\circ}C$, 1,086$^{\circ}C$ in Palgong-byeo and 998$^{\circ}C$, 984$^{\circ}C$, 949$^{\circ}C$ in Dongjin-byeo, respectively. Earlier transplanting with 8 days old seedling showed higher ratio of broken rice and green kerneled rice in Kuma-byeo, and late transplanting after July 5 showed significant high rate of green kerneled rice. Palgong-byeo and Dongjin-byeo also showed high rate of green kerneled rice at transplanting after July 5.

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