• Title/Summary/Keyword: Vegetative Stages

검색결과 93건 처리시간 0.03초

들깨의 생육단계와 부위별 기능성화합물 함량 비교 분석 (Comparative Analysis of Functional Compounds in Perilla frutescens at Different Stages and Growth Times)

  • 김해은;윤희랑;허재복
    • 생명과학회지
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    • 제31권5호
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    • pp.511-519
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    • 2021
  • 들깨(Perilla frutescens var. japonica HARA)는 대표적인 유지작물 중 하나로서, 목적에 따라 잎들깨와 종실들깨로 구분된다. 들깨는 식용과 약용으로 사용되어 왔으며, 들깨의 잎, 줄기, 종자에는 다양한 기능성 성분이 많이 함유되어 있다고 알려져 있다. 본 연구는 들깨를 기능성 소재로서 이용하고자 최적의 수확시기 및 조건을 분석하기 위해 새싹들깨와 잎들깨의 생육단계별 및 부위별로 들깨의 주요 기능성 화합물인 rosmarinic acid, caffeic acid, luteolin, GABA의 함량 비교하였다. 새싹들깨의 기능성 화합물 분석 결과 자연광 조건하의 흙에서 재배한 새싹들깨가 rosmarinic acid 23.19±0.16 mg/g과 GABA 0.55±0.05 mg/g으로 높은 함량을 보였고, 파종 후 6~8일 시기에 rosmarinic acid, caffeic acid, GABA의 함량이 가장 높게 나타났다. 따라서 자연광 조건하의 흙에서 파종 후 6~8일이 새싹들깨의 최적의 수확조건으로 판단된다. 생육단계별 및 부위별로 잎들깨의 기능성 화합물 변화 분석결과 caffeic acid와 rosmarinic acid는 영양생장에서 생식생장으로 넘어가는 단계에 0.28±0.03~0.30±0.07 mg/g과 20.60±7.02~19.37±3.18 mg/g으로 함량이 가장 높았으며, luteolin은 생식생장단계에 31.11±2.98~22.35±1.64 ㎍/g으로 함량이 가장 높았다. GABA는 영양생장 초기단계에서 0.42±0.09~0.37±0.04 mg/g으로 가장 높은 함량을 보였다. 부위별 분석 결과 잎, 줄기, 추대 부위 중 추대부위가 rosmarinic acid (55.22±9.33 mg/g), caffeic acid (0.39±0.03 mg/g), luteolin (1044.89±6.72 ㎍/g)으로 함량이 가장 높게 나타났다. 종합적으로 새싹들깨와 잎들깨에서 기능성 화합물이 가장 증가하는 시기를 확인함으로써 적합한 수확시기 및 부위를 확인하였다. 본 연구는 기능성 소재로서 들깨를 이용하기 위해 새싹들깨와 잎들깨의 적합한 수확시기 및 조건을 제시하였다.

관수시간에 따른 콩의 생육 및 수량반응 (Growth and Yield Responses of Soybean to Overhead Flooding Duration at Four Growth Stages)

  • 박경열;이종형;조영철
    • 한국작물학회지
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    • 제40권1호
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    • pp.92-97
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    • 1995
  • 콩의 주요 생육기별 관수처리시간에 따른 생육양상과 감수요인을 구명하고자 콩의 생육기 $V_3(6월\;16일),\;V_6(6월\;29일),\;R_2(7월\;3일),\;R_4(7월\;29일)$ 시기에 관수시간을 6.12.24시간씩 명명 유지하여 비가림하우수내에서 pot시험한 결과를 요약하면 다음과 같다. 1. 개화기는 무처리 대비 $V_3{\cdot}V_6$생육기 관수처리에서 1일정도 지연되었다. 2. 성숙기는 무처리 대비 $V_6$시기 6~12시간 관수처리시 2~3일 조숙되었으나, $V_6$시기 24 시간과 $R_2{\cdot}R_4$시기의 관수처리는 2~8일 늦어지는 경향이었다. 3. $V_6와\;R_2$시기의 24시간 관수처리는 생장점이 고사하였으며 경장과 주경절수는 관수처리 시기가 빠르고 처리시간이 길수록 감소하는 경향이었다. 4. 내수는 처리시기가 늦고 처리시간이 길수록 감소되는 경향으로 $V_6$시기 24시간과 $R_2$ 6~24시간 $R_4$시기 6시간 관수처리는 16~26%, $R_4$시기 12시간 관수처리는 40%, $R_4$시기 24시간 관수처리는 60%씩 명명 감소되었다. 5. 수량은 관수시기가 늦고 관수시간이 길수록 감수되는 경향으로 무처리 대비 $V_3$시기 전처리와 $V_6$시기 6.12시간 처리까지 유의차가 없었으나 $V_6$시기 24시간, $R_2$시기 6.12 시간 및 $R_2$시기 6시간 관수처리는 27~36%, $R_2$시기 24시간 관수처리는 43%, $R_4$시기 12시간 관수처리는 53%, $R_4$시기 24시간 관수처리는 66%씩 명명 감수되었다. 6. 콩 생육기별 관수피해 정도는 $R_4>\;R_2>\;V_6>\;V_3$ 시기순으로 감수폭이 컸다.

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식물생장과 조절제의 종자처리가 콩의 생장과 수량구성요소에 미치는 영향 (Effect of Presowing Treatment with Growth Regulators on Different Growth and Yield Contributing Parameters in Soybean [Glycine max (L.) Merril])

  • Eun Oh, Kwon;Ja Ock, Guh
    • 한국작물학회지
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    • 제32권4호
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    • pp.392-402
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    • 1987
  • 본실험 '식물생장조절제의 콩종자처리가 수향 구성요소간의 상관계수에 미치는 영향'은 식물생장조절제의 콩종자처리가 콩의 초기생육에 어떠한 영향을 주며 이러한 초기영향이 생육후기까지의 지속여부 및 수량 구성요소에 미치는 영향을 연구하기 위한 것이다. 사용한 종자는 Bragg로서 10ppm의 kinetin, ethrel , IAA and salicylic acid에 침지한 후 근류균 인공접종후 파종하였다. 대조구로는 물에 침지한 종자를 사용하였다. 시료는 주기적으로 포장에서 채취하여 초기성장, 근류균형성 생화학적 변화(엽록소함량, Nitrate Reductase활성도) 및 수량 구성요소 등을 보았으며 결과는 다음과 같다. 1. kinetin, IAA 및 Ethrel은 초기생육을 촉진시켰으나 페놀계통의 SA는 발아과정을 지연시켰으며 가장 낮은 발아율을 보였음. 2. kinetin, ethrel, SA는 근류형성을 촉진했으나 IAA는 초기근류형성을 다소 지연시켰으나 후기에는 촉진시켰음. 3. kinetin, ethrel, IAA는 엽록소함량 및 N-RA에 유의성 있는 증가효과를 보였으나 SA는 대조구와 비슷한 경향을 보였음 4. SA는 개화촉진 및 개화수 증가에 가장 효과적이었는데 이는 패놀계통의 화학물질이 작물체의 영양생장에서 생식생장 단계로의 전환을 촉진하고 있음을 보였으며 이러한 생식생장기관의 증대가 수량증대에 기여한 것으로 나타남. 5. 전처리구에서는 수량 및 수량구생요소(꽃수, 협수, 주당립수)가 유의성 있는 증가를 보였으나 협당립수 및 결협률에는 유의성이 없었음 6. 수량은 협수(r=-0.962)와 가장 높은 정의 상관관계를 보였으나 100 립 중과는 부의 상관관계를 보임 (r =-0.634). 7. 100립중의 경우 전 처리구가 대조구보다 낮았는데 이는 식물생장조절제의 처리가 동화생산기관 (source) 및 저장기관(sink)을 동시에 증가시켜 수량증가효과를 가져왔으나 증가된 생산기관(source)이 증가된 저장기관(sink)에 동화물질을 충분히 공급할 수 없음에 따른 동화물질 분배상의 희석 효과(dilution effect)로 보여짐.

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파프리카 수경재배 시 EC 농도와 배지에 따른 생육 및 수량 특성 (Growth Characteristics and Yields According to EC Concentrations and Substrates in Paprika)

  • 홍영신;이재수;백정현;이상규;정선옥
    • 한국환경과학회지
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    • 제30권8호
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    • pp.605-612
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    • 2021
  • Supply electrical conductivity (EC) concentration of the nutrition solution is an important factor in the absorption of nutrients by plants and the management of the root zone, as it can control the vegetative/reproductive growth of a plant. Paprika usually undergoes its reproductive and vegetative growth simultaneously. Therefore, ensuring proper growth of the plant leads to increased yield of paprika. In this study, growth characteristics of paprika were examined according to the EC concentration of a coir and a rockwool substrate. The supply EC was 1.0, 2.0, and 4.0 mS·cm-1 applied at the initial stages of the growth using the rockwool (commonly used by paprika farmers) and the coir substrate with a chip and dust ratio of 50:50 and 70:30. For up to 16 weeks of paprika growth, EC concentrations of 1.0 and 2.0 mS·cm-1 were found to have a greater effect on the growth than EC at 4.0 mS·cm-1. The normality (marketable) rate of fruit, the soluble solid content, and paprika growth showed that the coir was generally better than the rockwool regardless of the supply EC concentration. The values of the yield per plant at an EC concentration of 4.0 mS·cm-1 was mostly similar at 1.6 kg (coir 50:50), 1.5 kg (coir 70:30) and 1.5 kg (rockwool), but the yield of the rockwool was 88%, which was lower than 98% and 94% yield of the coir substrate. Therefore, this concludes that coir substrate is more effective than rockwool at improving paprika productivity. The results also suggest that the use of coir substrate for paprika has many benefits in terms of reducing production costs and preventing environmental destruction during post-processing.

Effects of Rhizosphere Microorganisms and Wood Vinegar Mixtures on Rice Growth and Soil Properties

  • Jeong, Kang Wook;Kim, Bo Sung;Ultra, Venecio U. Jr.;Chul, Sang
    • 한국작물학회지
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    • 제60권3호
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    • pp.355-365
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    • 2015
  • Environment-friendly growth enhancers for rice are being promoted to reverse the negative impact of intensive chemical-based and conventional rice farming on yield sustainability and environmental problems. Several rhizosphere microorganisms and pyroligneous acids (PA) had demonstrated beneficial influence on growth, yield and grain quality of rice. Since most of the previous study had evaluated the effect of PGPR and PA on paddy rice singly, the effect of combined application of these on the growth and yield of paddy rice and on some soil chemical properties were determined. A four factorial pot experiment was conducted to evaluate the effect of PGPR, PA in combination with fertilizers and on different soil types. There were 54 treatment combinations including the control with three replications under complete randomized design. Plant growth parameters were evaluated using standard procedures during tillering and heading stages. Rice yield and some soil chemical properties were determined at harvest. Results showed that inoculation of Bacillus licheniformis and Fusarium fujikuroi enhanced plant growth by increasing the plant height which could be ascribe to its ability to promote IAA and GA production in plants. Inoculation of Rhizobium phaseoli enhanced chlorophyll content indicative to its ability to improve the N nutrition. However, these plant growth benefits during the vegetative stage were override by the fertilizer application effect especially during the maturity stage and grain yield. High fertilization rates on coarse-textured soil without nutrient loss resulted to high available nutrients and consequently high yield. Wood vinegar application however improved nutrient availability in soil which could be beneficial for improving soil quality. Further evaluation is necessary to fully assess the potential benefits that could be derived from inoculation of these organisms and wood vinegar application in different soil environment especially under different field conditions.

생육단계별 한발처리가 콩의 생육 및 수량에 미치는 영향 (Effect of Drought Stress at Various Growth Stages on Soybean Growth and Yield)

  • 김충국;고문환
    • 한국작물학회지
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    • 제42권1호
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    • pp.89-94
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    • 1997
  • 토양수분 부족이 콩의 생육 및 수양에 미치는 영향을 알아보고자 비가림 비닐하우스 안의 베드에서 우리나라 기상여건상 토양수분 부족의 유발가능성이 높은 영양생장기인 신장기에 제 3 복엽기부터 30일간 단수(FNS)와 생육중기인 착협시부터 30일간 단수(BPS), 생육후기 인 입비대시부터 30일간(BSS) 토양수분 부족을 유발시켜 시험을 수행한 결과를 요약하면 다음과 같다. 1. 지상부의 건물중은 FNS 단수처리시 감소율이 가장 컸으며, BPS와 BSS 단수처리시는 대조구와 큰 차이가 없었다. 2. 엽록소 함량은 FNS와 BPS 단수처리시 처리종료 직후에는 현저히 감소되었으나, 수확기에는 회복이 되어 대조구와 유사하였다. 3. 한발처리 종료직후의 토양깊이별 뿌리 분포는 단수처리시 대조구에 비해 지표면 가까이에서 분포되 었으며, 뿌리혹 수와 뿌리혹의 건물중은 BPS 단수처리시 감소가 가장 심하였다. 4. 개체당 협수, 개체당 입중 및 수양은 단수처리시 대조구에 비해 현저하게 감소되었으며, BPS 단수처리시 감소율이 가장 심하였다.

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제대천 유역 답지대의 물수지 (Water Balance on Paddy Fields in Jedae Cheon Basin)

  • 안세영;이근후
    • 한국농공학회지
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    • 제32권3호
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    • pp.56-66
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    • 1990
  • To investigate the status of irrigation water use and the degree of repeated use of irrigation water, observations for water balance analysis were made during the irrigation periods in 1986 and 1987 crop year. The total area of studied site is 1,441 ha. The site is a major portion of Jedaecheon basin which is located in Bubuk-myeon, Miryang-gun, Gyeongnam Province. The studied area was subdivided into six small blocks. The water balance analysis for these subdivided blocks were carried out considering characteristics of each block. Obtained results are as follow: 1.In mountainous sloppy paddy area(less than 7% slope), the surface inflow was 5A mm/day in average that is one third of the surface inflow into plain paddy area ; 16.7 mm/day. 2.The surface inflows at the vegetative stage and the ripening stage were 15.5 mm/day and 10.4 mm/day, respectively. Those figures were larger than the actual consumptive use at respective same stages ; 13.3 mm/day and 9.2 mm/day, respectively. Whereas, the surface inflow at generative stage was 12.5 mm/day which was less than 14.0 mm/day ; the actual consumptive use. 3.The range of the variation of water storage term was 1 mm/day. This means that there were no change in depth of ponded water on paddy fields. The relationship between the variation of water storage(AS) and the variation of ground water table(H) could be expressed as follow: : AS=0.14H+0.26 4.The ground water inflow: into the transition region ; paddy fields which are located continuously from the mountainous area to the plain area, was larger than the out flow from this region, in general. Rowever, in the plain region where the ground water utilization was predominant, the ground water outflow from this region was larger than inflow: to this region. The relationship between the ground water flow(G2- G1) and the consumptive use in large paddy area(D1-D2) could be expressed as follow: (G2-G1) =0.95(D1-D2) -3.79

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Diaporthe phaseolorum var. caulivora, a Causal Agent for Both Stem Canker and Seed Decay on Soybean

  • Sun, Su-li;Van, Kyu-Jung;Kim, Moon-Young;Min, Kyung-Hun;Lee, Yin-Won;Lee, Suk-Ha
    • The Plant Pathology Journal
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    • 제28권1호
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    • pp.55-59
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    • 2012
  • Northern stem canker caused by $Diaporthe$ $phaseolorum$ var. $caulivora$ ($Dpc$) has become a serious disease in soybean. The objectives of this study were to survey the existence of $Dpc$ on soybean in Korea, and to examine the potential pathogenicity of $Dpc$ in seed decay. One such isolate, SSLP-4, isolated from a field-grown plant of the Korean soybean cultivar Danbaekkong, was identified as $Dpc$, based on its morphological and molecular characteristics by sequences of internal transcribed spacer (ITS), translation elongation factor (TEF) 1-${\alpha}$ and ${\beta}$-tubulin regions, as well as pathogenic analyses. Moreover, morphological and molecular analyses revealed that isolate SSLP-4 was nearly identical to $Dpc$ strains from the United States. Pathogenicity tests on hypocotyls of soybean seedlings and detached leaves resulted in typical symptoms of soybean northern stem canker and inoculation on plants at R5-R7 stage caused seed decay. All results suggest that the $Dpc$ strain SSLP-4 can cause both stem canker and seed decay on soybean. Thus, the SSLP-4 isolate has the potential to contribute greatly to understanding of host plant resistance mechanisms, both at vegetative and reproductive growth stages in soybean.

낙동강 하구에 이식된 잘피(Zostera marina)의 환경변화에 따른 성장특성 (Growth Dynamics of Zostera marina Transplants in the Nakdong Estuary Related to Environmental Changes)

  • 박정임;이근섭;손민호
    • 한국수산과학회지
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    • 제44권5호
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    • pp.533-542
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    • 2011
  • Numerous seagrass habitat restoration projects have been attempted recently due to the remarkable decline in seagrass coverage. Seagrass transplants tend to adapt to a new environment after experiencing transplanting stress during the early stages of transplantation. Once acclimated, the transplants grow into healthy seagrass beds via vegetative propagation. The establishment and growth dynamics of transplanted seagrasses in bays and coasts are widely reported, but few studies have been conducted on estuaries in Korea. We transplanted Zostera marina in November 2007 and November 2008 in the Nakdong estuary using the staple method, and monitored the survival, adaptation, and growth dynamics of the transplants as well as environmental factors every month for 1 year. Both transplants adapted well to the new environment without initial losses and showed rapid productivity during early summer. However, density of transplants increased 320% in 1 year from the previous year's transplants but that decreased to 59% during the following year. This significant reduction in density in the second year may have been caused by exposure to low salinity (10 psu) for 3 weeks during the unusually long monsoon season. While the survival and growth dynamics of seagrass transplants planted in bays and coasts are mainly controlled by underwater photon flux density and water temperature, salinity was the critical factor for those planted in Nakdong estuary.

Effects of Controlled Drainage Systems on Soybean (Glycine max L.) Growth and Soil Characteristics in Paddy Fields

  • Lee, Sanghun;Jung, Ki-Yuol;Chun, Hyen Chung;Choi, Young Dae
    • 한국작물학회지
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    • 제62권2호
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    • pp.134-142
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    • 2017
  • Crop production in rice paddy fields is of great importance because of declining rice consumption and the low self-sufficiency ratio for field crops in Korea. A controlled drainage system (CDS) is recognized as an effective means to adjust water table (WT) levels as needed and control soil water content to improve the soil environment for optimum crop growth. The present study evaluated the effects of a CDS on soil characteristics, including soil water distribution and soybean development in paddy fields. The CDS was installed with two drain spacing (3 m and 6 m) at the experimental paddy field at the National Institute of Crop Science, Miryang, Korea. It was managed with two WT levels (0.3 m and 0.6 m) during the growing season. Soil water content, electrical conductivity and plant available nitrogen content in the soil were significantly greater in the 0.3 m WT management plots than in the 0.6 m plot and the control. At the vegetative stage, chlorophyll content was significantly lower with higher WT control because of excess soil moisture, but it recovered after the flowering stage. Soybean yield increased with WT management and the 0.6 m WT treatment produced the greatest grain yield, $3.38ton\;ha^{-1}$, which was 50% greater than that of the control. The CDS directly influenced outflow through the drains, which significantly delayed nutrient loss. The results of this study indicated that WT management by CDS can influence soil characteristics and it is an important practice for high yielding soybean production in paddy fields, which should be considered the crop growth stages for stable crop production.