• 제목/요약/키워드: Total dry weight

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식재 당년생 신품종 포플러류의 Biomass 생산량 및 생산량 추정 (Biomass Production of One-year-old Hybrid Poplars and Its Estimation)

  • 구영본;심상영;노의래
    • 임산에너지
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    • 제7권1호
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    • pp.22-27
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    • 1987
  • 신품종 포플러류의 식재(10,000본/ha) 당년생일 때 직경, 수고, 재적$(D^2H)$등 몇가지 조사특성에 의한 biomass 생산량과 생산량 추정식을 유도한 결과를 요약하면 다음과 같다. 1. 현사시의 평균 건물 생산량은 줄기 2.86, 가지 0.41, 잎 0.70, 전체가 3.97t/ha이었으며 건중량 대 생중량의 비는 줄기 0.47, 가지 0.36, 잎 0.31, 전체가 0.41로 나타났다. 양황철나무의 경우 평균 건물생산량은 줄기 1.48, 가지 0.54, 잎 0.71, 전체가 2.73t/ha이었으며 건중량 대 생중량의 비는 줄기 0.42, 가지 0.37, 잎 0.28, 전체가 0.36이었다. 2. Biomass 생산량(건중량 및 생산량) 추정은 현사시의 경우 직경만으로 비교적 정확히 추정할 수 있었지만 양황철나무의 경우 직경 식재 당년생에서는 어느 특성으로도 추정이 어려울 것으로 생각된다. 3. Biomass 생산량(건중량) 분포비율은 현사시의 경우 줄기, 가지, 잎이 각각 73, 10, 17$\%$로 나타났으며 양황철나무는 줄기, 가지, 잎이 각각 54, 20, 26$\%$로 나타나 줄기 건중량에 의한 가지, 잎, 전체 건중량을 추정할 수 있었다.

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실험실 연구를 위한 엽상형 해조류의 생체량 추정 방법 (Estimating the Individual Dry Weight of Sheet Form Macroalgae for Laboratory Studies)

  • 김상일;윤석현
    • 해양환경안전학회지
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    • 제25권2호
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    • pp.244-250
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    • 2019
  • 엽상형 해조류의 간접적인 건중량 추정을 위해 구멍갈파래(Ulva australis), 잎파래(Ulva linza), 개도박(Pachymeniopsis lanceolata), 방사무늬김(Pyropia yezoensis)의 형태적 특성과 생체량의 관계를 분석하였다. 시료는 2017년 2월부터 2018년 12월 까지 남해안 6곳에서 채집되었으며, 총 319개체가 분석에 사용되었다. 엽상형 해조류 네 종의 길이와 생체량에 대한 상대성장 지수는 0.28로 일반적인 1/4 (0.25) 지수법칙에 해당하였다. 네 종의 엽체의 표면적과 습중량은 각각 건중량과 유의한 선형관계를 보였으며, 건중량의 94 ~ 99%를 설명할 수 있었다. 이 결과는 엽상형 해조류의 표면적 또는 습중량을 통해 개체의 건중량을 매우 정확하게 추정할 수 있다는 것을 의미한다. 이 방법론은 실험실 연구에서 건중량을 직접 측정할 수 없을 때 쉽고 빠르게 활용할 수 있으며, 추가적으로 소요되는 시간과 비용을 절약할 수 있을 것이다.

형질전환된 식물세포에서 hGM-CSF 생산과 안정성에 대한 다양한 탄소원의 효과 (Effect of Various Carbon Sources on the Production and Stabilization of hGM-CSF in Transgenic Plant Suspension Culture)

  • 이재화
    • Journal of Plant Biotechnology
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    • 제32권4호
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    • pp.313-319
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    • 2005
  • 다양한 탄소원을 사용하였을 시, 세포성장에 미치는 영향은 배양 5일제 glucose를 사용한 배양세포에서 dry cell weight가 11.2 g/L, wet cell weight가 310.8 g/L로 가장 높았다. 이후 배양 10일차에는 오히려 sucrose를 탄소원으로 사용한 배양세포에서 dry cell weight가 13.4 g/L, wet cell weight가 480 g/L로 가장 높이 성장한 것을 확인할 수 있었다. Total secreted protein의 경우는 배양 10일차에 sucrose를 기본 탄소원으로 사용하였을 때 110.3 mg/L로 가장 높게 나왔다. Total secreted protease 역시, 배양 10일차에 sucrose를 기본 탄소원으로 사용한 배양씩에서 3950 U/L로 가장 많은 양이 측정되었다. 최종적으로 재조합된 단백질인 hGM-CSF의 생산량에 대한 측정결과, sucrose를 기본 탄소원로 사용한 배지에서 배양 10일차에 56 mg/L로 가장 높게 측정됨을 확인할 수 있었다. 이 외에 다양한 탄소원 농도변화에 따른 total secreted protein과 hGM-CSF의 안정성 평가를 확인해본 결과, total secreted protein의 경우, 비교대상으로 사용한 sucrose에서는 농도변화에도 큰 손실률을 보이지는 않았으나, sorbitol, mannitol, fructose, glucose의 경우에는 농도가 높아질수록 배양액내의 protein의 손실률이 증가 하였다. 총 분비된 hGM-CSF 역시 sucrose에 비해 sorbitol, mannitol, fructose, glucose에서는 분비된 hGM-CSF의 양이 크게 감소하는 것을 확인할 수 있었고, 탄소원의 농도가 높아질수록 hGM-CSF의 양이 감소하는 경향이 크게 나타났다.

NaCl 농도가 이탈리안 라이그래스의 발아와 유묘생장에 미치는 영향 (Effect of NaCI Concentration on Germination and Seedling Growth of Italian Ryegrass(Lolium multiflorum L.))

  • 이강수;최선영;최철원
    • 한국작물학회지
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    • 제40권3호
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    • pp.340-350
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    • 1995
  • 이탈리안 라이그라스의 염해반응에 대한 기초 자료를 얻고자 NaCl의 8개 농도에서 14개 품종(2배체:7 4배체:7)의 발아율과 유묘건물중, 엽록소 및 유리 proline함량을 조사하였다. 1. 발아율은 NaCl 300mM 이상에서 크게 감소하였으며 대조구에 대한 50%의 발아감소 NaCl농도는 344mM이었다. 2배체품종은 4배체품종보다 감소 정도가 컸으며 NaCl의 농도가 높을수록 발아율에 대한 품종들의 차이가 크게 나타났다. 2. 지상부 건물중은 NaCl 166mM에서 대조구에 대한 50%의 감소율을 보여 발아기보다 유묘기에 NaCl에 대한 영향이 더욱 컸는데, 품종들의 발아율과 지상부 건물중과는 상관관계가 없었다. 3. 지하부 건물중은 NaCl농도가 높아질수록 감소 정도가 커서 NaCl 148mM에서 50%의 감소가 나타났으며, 품종들의 지상부 건물중과 지하부 건물중은 유의적인 상관관계가 있었다. 4. 지상부 건물중과 지하부 건물중은 NaCl의 각 농도에서 2배체가 4배체보다 높았다. 5. Total 엽록소 함량은 NaCl농도가 높아질수록 증가하였는다 엽록소 a가 엽록소 b보다 함량이 더욱 증가하였으며, 엽록소 a는 4배체가 2배체보다 높았으나 엽록소 b는 2배체가 4배체보다 높았다. 품종들의 엽록소 a함량과 지상부 건물중과는 NaCl 150mM 이상에서 높은 상관관계가 인정되었다. 6. 유리 proline함량은 NaCl처리에 의하여 현저히 축적되었는데 2배체와 4배체 사이에는 별다른 차이가 없었으며, 품종들의 지상부 건물중과도 상관관계가 없었다.

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Growth, Nitrogen Metabolism, and Nodulation of Hypernodulating Soybean Mutant Affected by Soil Fertility

  • Ha, Bo-Keun;Lee, Suk-Ha
    • 한국작물학회지
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    • 제46권2호
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    • pp.145-149
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    • 2001
  • This study was performed to evaluate the growth and nodulation characters of hypernodulating soy-bean mutant, SS2-2, and to know the growth and yield performance of the mutant in infertile soil. Soil fertility was adjusted by mixing the different ratios of soil components including clay, river sand, and horticultural bed, which resulted in fertile and infertile soil. Dry weight, nitrogen concentration, and leaf nitrate reductase of each plant were measured around V6 stage (47 days after planting) and around R3 stage (82 days after planting). There were significant effects of soil fertility and soybean genotype on the total dry weights including root, nodule, stem, leaf, and pod dry weight at V6 and R3 stages. Total dry weight of hypernodulating mutant, SS2-2, was clearly less than that of its wild type, Sinpaldalkong 2. However, nodule development on the roots of SS2-2 was much greater than that of Sinpaldalkong 2, regardless of soil fertility. Though SS2-2 was smaller in plant size than Sinpaldalkong 2, genotypic difference in total nitrogen content was not significant at both V6 and R3 stages because SS2-2 fixed more nitrogen biologically than its wild type in the root nodule. The SS2-2 mutant showed lower plant yield in both infertile and fertile soil. The SS2-2 contained more crude seed protein than Sinpaldalkong 2, and was characterized with reduced top and root growth.

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식용버섯 중 식이 섬유소의 함량 측정 (Determination of Dietary Fiber Contents in Mushrooms)

  • 임수빈;김미옥;구성자
    • 한국식품조리과학회지
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    • 제7권3호
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    • pp.69-76
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    • 1991
  • 6종류의 식용 버섯에 함유되어 있는 dietary fiber를 Southgate방법, NDF방법, FRI방법으로 측정한 결과는 다음과 같았다. 식용 버섯 중에 함유되어 있는 dietary fiber를 Southgate방법, NDF방법, FRI방법으로 측정한 결과는 각각 $20.08\pm1.45g$/100g dry weight, $20.24\pm1.85g$/100g dry weight, $27.5\pm2.7g$/100g dry weight이었고, 세가지 실험 방법간의 측정치 차이를 보면, 대체로 Southgate방법과 NDF방법과는 유의적인 차이가 없었던 반면, FRI방법과는 유의적인 차이가 크게 나타났다. 버섯중의 dietary fiber성분 비율은 Southgate방법에 의 한 water-soluble fiber성분이 1.7~3.1%, hemicellulose가 47.0~66.6%, cellulose가 28.4~57 7%, lignin 0.9~3.3%였고, NDF방법에 의해 측정한 hemicellulose는 61.8-79.1%, cellulose는 5.4~32.7%, lignin은 4.5~15.5% 였다. 일반적으로 버섯류의 dietary fiber성분은 hemicellulose가 가장 많았고 그 다음으로 cellulose가 많이 함유되어 있었다. Dietary fiber와 crude fiber의 함량비 (DF/CF)는 2~4배 정도로 dietary fiber가 높았다.

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Carbohydrate and Ginsenoside Changes in Ginseng Roots Grown in the Bay of Plenty, New Zealand

  • Follett John M.;Proctor John T.A.;Walton Eric F.;Boldingh Helen L.;McNamara Catherine;Douglas James A.
    • Journal of Ginseng Research
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    • 제28권4호
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    • pp.165-172
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    • 2004
  • Ginseng is traditionally cultivated worldwide in cold continental climates. It is now also being cultivated in maritime environments such as New Zealandis. This paper reports a number of growth and quality parameters for plants grown under those conditions over two growing seasons and the intervening winter dormant period. While shoot biomass peaked mid-summer, in contrast, root biomass peaked late autumn/early winter. Starch, sucrose, fructose, glucose and inositol were detected in the roots. Starch concentrations were highest in early autumn (mean 470 mg $g^{-1}$ dry weight) and lowest in mid spring (218 mg $g^{-1}$ dry weight). Sucrose concentrations were low during early summer until late autumn but increased rapidly with the onset of winter and peaked during mid spring (168 mg $g^{-1}$ dry weight). Fructose and glucose concentrations were similar and peaked in late spring (5.3 and 6.2 mg $g^{-1}$ dry weight). Inositol concentrations peaked in mid summer (1.7 mg $g^{-1}$ dry weight). Starch/sugar ratios were high during summer and autumn and low during winter and spring. Ginsenoside concentrations and profiles showed that the six major ginsenosides, Rgl, Re, Rb1, Rc, Rb2 and Rd, were present, but Rf was absent. Concentrations did not vary with sampling date. The most abundant ginsenosides were Re (15.9 to 17.5 mg $g^{-1}$ dry weight) and Rb1 (10.7 to 18.1 mg $g^{-1}$ dry weight). Combined, they accounted for < $75{\%}$ of total ginsenoside concentrations. Limited taste tests indicated that highest root quality occurred during late autumn, after the shoots had senesced. However, quality could not be related to plant chemistry.

The effect of implant drilling speed on the composition of particle collected during site preparation

  • Jeong, Chang-Hee;Kim, Do-Young;Shin, Seung-Yun;Hong, Jong-Rak;Kye, Seung-Beom;Yang, Seung-Min
    • Journal of Periodontal and Implant Science
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    • 제39권sup2호
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    • pp.253-259
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    • 2009
  • Purpose: This study was aimed to evaluate the effect of implant drilling speed on the composition of particle size of collected bone debris. Methods: $Br{\aa}nemark$ $System^{(R)}$ drills were used to collect bone debris from 10 drilling holes (1 unit) at 1,500 rpm (Group A) and 800 rpm (Group B) in bovine mandible. After separating particles by size into > 500 ${\mu}m$, between 250 ${\mu}m$ and 500 ${\mu}m$, and < 250 ${\mu}m$ fractions, particle wet volume, dry volume, and weight were measured and the proportion of 3 fractions of bone debris to total wet volume, dry volume and weight was calculated as wet volume % , dry volume % and weight %. Results: No significant differences were found between Group A and B in wet volume, dry volume, and weight. However, of >500 ${\mu}m$ fractions, Group B had significantly higher wet volume %(P = 0.0059) and dry volume %(P = 0.0272) than in Group A. Conclusions: The drilling speed influenced the composition of particle size in collected drilling bone debris. The drilling in 800 rpm produced the more percentage of large particles than in 1,500 rpm. However, the drilling speed didn't effect on total volume of and weight of bone debris.

Relationship between the sexual and the vegetative organs in a Polygonatum humile (Liliaceae) population in a temperate forest gap

  • Min, Byeong-Mee
    • Journal of Ecology and Environment
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    • 제41권9호
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    • pp.256-264
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    • 2017
  • Background: The aim of this study was to clarify the relationship between the sexual reproduction and the resource allocation in a natural Polygonatum humile population grown in a temperate mixed forest gap. For this aim, the plant size, the node which flower was formed, the fruiting rate, and the dry weight of each organ were monitored from June 2014 to August 2015. Results: Firstly, in 3-13-leaf plants, plants with leaves ${\leq}8$ did not have flowers and in plants with over 9 leaves the flowering rate increased with the number of leaves. Among plants with the same number of leaves, the total leaf area and dry weight of flowering plants were larger than those of non-flowering plants. The minimum leaf area and dry weight of flowering plants were $100cm^2$ and 200 mg, respectively. Secondary, the flowers were formed at the 3rd~8th nodes, and the flowering rate was highest at the 5th node. Thirdly, cumulative values of leaf properties from the last leaf (the top leaf on a stem) to the same leaf rank were greater in a plant with a reproductive organ than in a plant without a reproductive organ. Fourthly, fruit set was 6.1% and faithful fruit was 2.6% of total flowers. Biomasses of new rhizomes produced per milligram dry weight of leaf were $0.397{\pm}190mg$ in plants that set fruit and $0.520{\pm}0.263mg$ in plants that did not, and the difference between the 2 plant groups was significant at the 0.1% level. Conclusions: P. humile showed that the 1st flower formed on the 3rd node from the shoot's base. And P. humile showed the minimum plant size needed in fruiting, and fruiting restricted the growth of new rhizomes. However, the fruiting rate was very low. Thus, it was thought that the low fruiting rate caused more energy to invest in the rhizomes, leading to a longer rhizome. A longer rhizome was thought to be more advantageous than a short one to avoid the shading.

Response of Soybean to Elevated $\textrm{CO}_2$ Concentrations and Temperatures at Two Levels of Nitrogen Application

  • Kim, Hong-Rae;Song, Hong-Keun;Lee, Sun-Joo;Kim, Seung-Hyun;Han, Sang-Joon;Ahn, Joung-Kuk;Chung, Ill-Min
    • 한국작물학회지
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    • 제49권2호
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    • pp.73-81
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    • 2004
  • Effects of ambient and elevated $\textrm{CO}_2$ and high temperature, and their interactions with zero and applied nitrogen supply (NN-no nitrogen and AN-applied nitrogen) were studied on soybean (Glycine max L.) in 2001. In this experiment, elevated $\textrm{CO}_2$ (650 $\mu\textrm{mol}.\textrm{mol}^{-1}$) and temperature (+$5^{\circ}$) increased total dry mass at final harvest by 125% and 119% and seed weight per plant by 57% and 105% for NN and AN plants, respectively. Although the influence of temperature and temperature x $\textrm{CO}_2$ were not significant, the influences of $\textrm{CO}_2$ concentration and temperature x $\textrm{CO}_2$ concentration were significant on total dry weight and seed weight, respectively. In particular, seed weight per plant was increased, while weight per one hundred seed weight was decreased with elevated $\textrm{CO}_2$ and temperature. The N supply increased biomass and seed weight per soybean plants. The results of this study suggest that the long-term adaptation of soybean growth at an elevated $\textrm{CO}_2$ concentration and high temperature might potentially result in a increase in dry matter production and yield.