• 제목/요약/키워드: Water Soluble Carbohydrates

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인삼의 연생, 생육시기 및 식물체 부위별 수용성과 불수용성 탄수화물 함량과 합성저장량 비교 (Comparative Analysis on Concentration and Synthetic Amount of Water Soluble and Water Insoluble Carbohydrates with Different Plant Tissues, Growth Stages and Years Old of Panax ginseng C. A. Meyer)

  • 박성용;안복주;안희정;이경아;허수정;정햇님;송범헌
    • 한국약용작물학회지
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    • 제23권4호
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    • pp.292-297
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    • 2015
  • This study was carried out to have the basic and applied informations relating to develop the cultivation methods and to increase the productivity and quality of ginseng. 1 to 6 year old ginsengs of Jakyung cultivar were cultivated and the content and synthetic amount of carbohydrates were investigated with different plant tissues, growth stages, and years old. The concentration of total carbohydrates at six year old ginseng including water soluble and water insoluble carbohydrates was about 18.9%, 42.9%, and 43,6% in leaves, tap roots, and lateral roots, respectively. Water soluble carbohydrate of tap and lateral roots was slightly decreased from August until September, and then increased on November, whereas its water insoluble carbohydrate was increased from August to September and then decreased on November. Comparing with the content of carbohydrates of 1 to 6 year old ginsengs, it was continuously increased from one year old ginseng until five year old ginseng, however it was not increased much in six year old ginseng. The highest content of carbohydrates was at five year-old in all tissues of ginseng. Water soluble and water insoluble carbohydrates were significantly shown different in leaves, stems, tap roots, and lateral root at different growth stages and with different years old. The content of water soluble carbohydrate in the leaves was remarkedly higher compared to that of water insoluble carbohydrate, while in the root the content of water insoluble carbohydrate was clearly higher compared to the water soluble carbohydrate. Comparing with the synthetic amount of carbohydrates, water soluble carbohydrates was higher in the shoot than that in the root, whereas water-insoluble carbohydrates higher in the root than that in the shoot. Carbohydrates which would be utilized in ginseng tissues for short and long-term periods as major energy were appeared differently in between shoot and root, with different growth stages, and years old.

Soy Oligosaccharides and Soluble Non-starch Polysaccharides: A Review of Digestion, Nutritive and Anti-nutritive Effects in Pigs and Poultry

  • Choct, M.;Dersjant-Li, Y.;McLeish, J.;Peisker, M.
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권10호
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    • pp.1386-1398
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    • 2010
  • Soybean contains a high concentration of carbohydrates that consist mainly of non-starch polysaccharides (NSP) and oligosaccharides. The NSP can be divided into insoluble NSP (mainly cellulose) and soluble NSP (composed mainly of pectic polymers, which are partially soluble in water). Monogastric animals do not have the enzymes to hydrolyze these carbohydrates, and thus their digestion occurs by means of bacterial fermentation. The fermentation of soybean carbohydrates produces short chain fatty acids that can be used as an energy source by animals. The utilization efficiency of the carbohydrates is related to the chemical structure, the level of inclusion in the diet, species and age of the animal. In poultry, soluble NSP can increase digesta viscosity, reduce the digestibility of nutrients and depress growth performance. In growing pigs, these effects, in particular the effect on gut viscosity, are often not so obvious. However, in weaning piglets, it is reported that soy oligosaccharides and soluble NSP can cause detrimental effects on intestinal health. In monogastrics, consideration must be given to the anti-nutritive effect of the NSP on nutrient digestion and absorption on one hand, as well as the potential benefits or detriments of intestinal fermentation products to the host. This mirrors the needs for i) increasing efficiency of utilization of fibrous materials in monogastrics, and ii) the maintenance and improvement of animal health in antibiotic-free production systems, on the other hand. For example, ethanol/water extraction removes the low molecular weight carbohydrate fractions, such as the oligosaccharides and part of the soluble pectins, leaving behind the insoluble fraction of the NSP, which is devoid of anti-nutritive activities. The resultant product is a high quality soy protein concentrate. This paper presents the composition and chemical structures of carbohydrates present in soybeans and discusses their nutritive and anti-nutritive effects on digestion and absorption of nutrients in pigs and poultry.

수생식물 생태계에 있어서 낙엽의 구성성분의 유실률 I. 낙동강 삼각주지역의 갈대 초지 (The Removal Rate of the Constituents of the Litters in the Aquatic Plant Ecosystems I. Phragmites longivalvis Grasslands in a Delta of the Nakdong River)

  • 장남기;오경환
    • 아시안잔디학회지
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    • 제9권4호
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    • pp.331-342
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    • 1995
  • An investigation was performed to reveal the removal rates of organic constituents of the litters in a Phragmithea longivalvis grassland in a Delta of the Nakdong River, The removal rates of the inorganic and organic materials are determined by the mathematical models. The removal rates and time required to decay up to a percentage of each organic constituent were calculated using these new models. The removal rates of cold water soluble fractions, other carbohydrates, hot water soluble fractions, cellulose, crude fat, lignin and crude protein were 2.67, 1.39, 1.25, 1.02, 0.92, 0.49 and 0.47, respectively, The periods required to reach half time to the steady state of the removal and accumulation for cold water soluble fractions, other carbohydrates, hot water soluble fractions, cellulose, crude fat, lignin and crude protein of the litter were 0.26, 0.50, 0.55, 0.68, 0.75, 1.41 and 1.48 years, respectively.

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재생기간별 목초의 수량 및 탄수화물함량 변화 - Ladino Clover와 Orchardgrass를 중심으로 - (Changes of the Yield and Carbohydrate Content during the Regrowth of the Pastuer plants - Especially Ladno clover and Orchardgrass-)

  • 전우복
    • 한국초지조사료학회지
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    • 제1권1호
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    • pp.10-17
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    • 1978
  • The experiment were carried out to determine the rate of regrowth, the changes of carbohydrates contained in the samples right after cutting, plant part for storage of carbohydtates and top-dressing time of ladino clover and orchardgrass. Plants were grown in the simple growth chamber as well as in the fields. The temperature, light intensity and light period were controlled to be 15-20$^{\circ}$, 4,250 Lux, and 15 hours in the simple growth chamber. The results obtained are as follows ; 1. The period of recovery to initial stands after cutting was about 3 weeks in ladino clover and 4-5 weeks in orchard grass in terms of dry matter and carbohydrates. 2. The content of total water-soluble carbohydrates of plant parts was the hightest in stolon of ladino clover and in sheath of orchardgrass, and the lowest in roots of ladino clover and orchardgrass. 3. Cutting resulted in a temporary decrease of total water-soluble carbohydrates in the shoots. Similar trends were observed when the plants were left intact with top-dressing. 4. The top-dressing applied simultalliousely with the cutting was more effective to stimu1ate regrowth than that applied after cutting, however, both of the simultaneous and after cutting application were still better than application prior to cutting.

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Nitrogen Effects on Growth Responses and Carbohydrate Concentrations in Source and Sink Tissues of Two Rice Cultivars

  • Song, Beom-Heon;Lee, Chul-Won;Ryu, Shi-Hwan
    • 한국작물학회지
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    • 제45권5호
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    • pp.288-293
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    • 2000
  • Two rice cultivars (Oryza sativa L.), Hwa-seongbyeo of Japonica type and Taebackbyeo of Indica/Japonica type, were cultivated with hydroponic culture to examine nitrogen effects on the growth responses, contents and utilizations of carbohydrates, and the ripening velocity of grains with three different N levels. Plant height and tiller number were clearly increased to 80 ppm N level compared to 40 ppm N level and then they were slightly decreased in N level of 120 ppm. Higher dry weights were appeared with 80 ppm N level than did with other N levels, showing statistically differences in both cultivars and N levels, while dry weight of roots was heavier with decreasing the N levels. Therefore, T/R ratios were not significantly different among N levels, although there was statistically differences between rice cultivars. After the flowering stage, higher water-soluble carbohydrate (WSC) and water-insoluble carbohydrate (WISC) were contained in stem compared with other parts, showing that WISC of sheath and stem, unlike WSC, was significantly different among N levels. Starch of grain, WISC, was remarkedly increased from 3.0% at just after the flowering to 52.0% and 75.0% at 15 and 30 day after the flowering, respectively, showing that lower N application had faster accumulation of starch in rice grains. N would affect the contents of carbohydrates of each tissue, and starch accumulation in rice grains.

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상엽의 혈당강하 활성 (Blood Glucose-Lowering Effects of Mori Folium)

  • 이주선;최명현;정성현
    • 약학회지
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    • 제39권4호
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    • pp.367-372
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    • 1995
  • Mori Folium(MF) methanol extract and its water soluble fraction showed significant blood glucose lowering effects alloxan-induced hyperglycemic mice. Their hypoglycemic activities seemed to nothing to do with the stimulation of insulin release or insulin-like action, according to our experiments. On the other hand, MF prevents the hyperglycemic responses from an oral load of starch and glucose in vivo. Since complex carbohydrates present in a diet must be degraded to monosaccharides by $\alpha$-glucohydrolase before being absorbed in the gastrointestinal tract, it is thought that blood glucose lowering effects of MF may be related to the inhibition of $\alpha$-glucohydrolase catalyzed enzymatic reaction. In addition, experiments that examined an effect of MF water soluble fraction on gastrointestinal movement showed no significant GI movement inhibitory effect. In conclusion, MF water soluble fraction may possess active component which is a potential candidate as an orally active agent for the treatment of diabetes mellitus.

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Effects of wilting on silage quality: a meta-analysis

  • Muhammad Ridla;Hajrian Rizqi Albarki;Sazli Tutur Risyahadi;Sukarman Sukarman
    • Animal Bioscience
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    • 제37권7호
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    • pp.1185-1195
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    • 2024
  • Objective: This meta-analysis aimed to evaluate the impact of wilted and unwilted silage on various parameters, such as nutrient content, fermentation quality, bacterial populations, and digestibility. Methods: Thirty-six studies from Scopus were included in the database and analyzed using a random effects model in OpenMEE software. The studies were grouped into two categories: wilting silage (experiment group) and non-wilting silage (control group). Publication bias was assessed using a fail-safe number. Results: The results showed that wilting before ensiling significantly increased the levels of dry matter, water-soluble carbohydrates, neutral detergent fiber, and acid detergent fiber, compared to non-wilting silage (p<0.05). However, wilting significantly decreased dry matter losses, lactic acid, acetic acid, butyric acid, and ammonia levels (p<0.05). The pH, crude protein, and ash contents remained unaffected by the wilting process. Additionally, the meta-analysis revealed no significant differences in bacterial populations, including lactic acid bacteria, yeast, and aerobic bacteria, or in vitro dry matter digestibility between the two groups (p>0.05). Conclusion: Wilting before ensiling significantly improved silage quality by increasing dry matter and water-soluble carbohydrates, as well as reducing dry matter losses, butyric acid, and ammonia. Importantly, wilting did not have a significant impact on pH, crude protein, or in vitro dry matter digestibility.

Physiological Responses to Mineral-Excessive Conditions: Mineral Uptake and Carbohydrate Partitioning in Tomato Plants

  • Sung, Jwakyung;Lee, Suyeon;Lee, Yejin;Kang, Seongsoo;Ha, Sangkeun;Sonn, Yeonkyu
    • 한국토양비료학회지
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    • 제47권6호
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    • pp.563-570
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    • 2014
  • The shortage or surplus of minerals directly affects overall physiological metabolism of plants; especially, it strongly influences carbohydrate metabolism as a primary response. We have studied mineral uptake, synthesis and partitioning of soluble carbohydrates, and the relationship between them in N, P or K-excessive tomato plants, and examined the interaction between soluble carbohydrates and mineral elements. Four-weeks-old tomato plants were grown in a hydroponic growth container adjusted with excessive N ($20.0mmol\;L^{-1}$ $Ca(NO_3)2{\cdot}4H_2O$ and $20.0mmol\;L^{-1}$ $KNO_3$), P ($2.0mmol\;L^{-1}$ $KH_2PO_4$), and K ($20.0mmol\;L^{-1}$ $KNO_3$), respectively, for 30 days. Shoot growth rates were significantly influenced by excessive N or K, but not by excessive P. The concentrations of water soluble N (nitrate and ammonium), P and K were clearly different with each tissue of tomato plants as well as the mineral conditions. The NPK accumulation in all treatments was as follows; fully expanded leaves (48%) > stem (19%) = roots (16%) = petioles (15%) > emerging leaves (1). K-excessive condition extremely contributed to a remarkable increase in the ratio, which ranged from 2.79 to 10.34, and particularly potassium was dominantly accumulated in petioles, stem and roots. Fresh weight-based soluble sugar concentration was the greatest in NPK-sufficient condition ($154.8mg\;g^{-1}$) and followed by K-excessive (141.6), N-excessive (129.2) and P-excessive (127.7); whereas starch was the highest in K-excessive ($167.0mg\;g^{-1}$) and followed by P-excessive (146.1), NPK-sufficient (138.2) and N-excessive (109.7). Soluble sugar showed positive correlation with dry weight-based total N content (p<0.01) whereas was negatively correlated with soluble P (p<0.01) and dry weight-based total P (p<0.01). On the other hand, starch production was negatively influenced by total N (p<0.001), but, it showed positive relation with total K concentration (p<0.05). This study shows that uptake pattern of NPK and production and partitioning of soluble carbohydrate were substantially different from each mineral, and the relationship between water soluble- and dry weight-based-mineral was positive.

Solute patterns of four halophytic plant species at Suncheon Bay in Korea

  • Choi, Sung-Chul;Choi, Deok-Gyun;Hwang, Jeong-Sook;Kim, Jong-Guk;Choo, Yeon-Sik
    • Journal of Ecology and Environment
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    • 제37권3호
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    • pp.131-137
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    • 2014
  • To investigate the solute pattern of salt marsh plants in Suncheon Bay in Korea, plants and soil samples were collected at three sites from July to September 2011. The soil pH around the investigated species was weakly alkaline, 6.9-8.1. The total ion and Cl- content of site 1 gradually increased, while those of site 2 and site 3 were lowest in August and highest in September. The exchangeable $Ca^{2+}$, $Mg^{2+}$ and $K^+$ in the soil were relatively constant during the study period, but the soil exchangeable $Na^+$ content was variable. Carex scabrifolia and Phragmites communis had constant leaf water content and very high concentrations of soluble carbohydrates during the study period. However, Suaeda malacosperma and S. japonica had high leaf water content and constant very low soluble carbohydrate concentrations. Carex scabrifolia accumulated similar amounts of $Na^+$ and $K^+$ ions in its leaves. Phragmites communis contained a high concentration of $K^+$ ions. Suada japonica and S. malacosperma had more $Na^+$ and $Cl^-$ ions than $K^+$ ions in their leaves. Suaeda japonica had higher levels of glycine betaine in its leaves under saline conditions than C. scabrifolia and P. communis. Consequently, the physiological characteristics of salt marsh chenopodiaceous plants (S. japonica and S. malacosperma) were the high storage capacity for inorganic ions (especially alkali cations and chloride) and accumulation of glycine betaine, but monocotyledonous plant species (C. scabrifolia and P. communis) showed high $K^+$concentrations, efficient regulation of ionic uptake, and accumulation of soluble carbohydrates. These characteristics might enable salt marsh plants to grow in saline habitats.

인삼식물의 종자발육 과정에 있어서의 생리화학적 연구 (Studies on the Physiological Chemistry of Seed Development in Ginseng Seed)

  • 양희천
    • 한국작물학회지
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    • 제17권
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    • pp.115-133
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    • 1974
  • 인삼 종자의 결실과 최아과정중에서 일어나는 물질대사의 기본적 소인을 알고저 화기형성초기로부터 개화기까지, 결실초기부터 홍숙기까지, 그리고 최아과정중 화학성분의 변화를 추구하였다. 1. 화뢰에서는 감수분열기 이전까지 신선중, 건물중, 회수화물, 질소화합물의 변동은 그리 크지 않으며 TCA가용성인, 특히 유기태인의 증가와 현저하였다. 2. 감수분열기로부터 소포자기에 이르는 기간 동안 신선중, 건물중이 급격히 증가되고 전질소량이 증가하는데 불용성 질소구분은 이 시기부터 그 량이 늘어나 단백질이 합성되는 것을 의미하고 있으며 불용성 질소가 전질소의 62∼70%를 차지하고 있다. 또한 가용성 당분이 급격하게 증가되어 환원당, 비환원당이 모두 증가하나 전분의 증가는 볼 수 없고, 전인에 대한 TCA가용성인이 85.4%, TCA불용성인이 14.6%로 화뢰성장중 각각 최고, 최소치를 나타내고 있다. 3. 화분성숙기 이후와 개화기에서 특히 건물중의 증가가 현저하고 불용성질소도 계속 증가되어 총질소의 67%에 이른다. 또한 두드러진 유기태인의 저하와 갑작스런 조전분의 증가를 볼 수 있고 무기태인량이 유기태 인량을 능가하게 된다. 4. 결실기부터 홍열기까지에 있어서는 신선중량의 90%가 결실 후 3주간에 증가하는데, 1) 전질소량은 7배로 증가되었고 성숙되어 갈수록 전질소에 대한 불용성질소의 량이 커져서 65%에서 80%이상으로 상승되고 한편 가용성질소의 비율은 35%에서 20%이하로 저하되었다. 2) 전인산량도 8배로 증가되는데 홍숙이 시작되는 시기에 최고에 이르고 이때에 전인산에 대한 TCA가용성인의 비율도 가장 커서 90%에 이른다. 유기태인도 홍숙이 시작될 때까지 29배나 증가되며 지질태인, 핵산태인, 단백태인이 모두 증가되고 있다. 3) 회수화물의 증가는 신선중의 증가와 유사한데결실한지 3주 후에 최고량에 달하고 그 후는 사실상 증가하지 않으며 가용성당도 3주 후에 최고에 달했다가 일시 감소하며 홍숙기에 약간 증가하나 먼저 수준에는 이르지 못하며 조전분은 점차 증가되어 홍숙되기 일주 전에 최고량에 달하나 전 건물량의 2.36% 밖에 되지 못한다. 회수화물중 가용성당이 차지하는 비율이 훨씬 크며 완숙기에서는 가용성당분중 약80% 이상의 비환원당으로 되어 있어 인삼 종자의 주요 회수화물을 이루고 있다. 4) 한편 완숙된 종자의 배란중에는 60% 이상의 지방을 함유하고 있어 인삼 종자의 저장물질은 단백질이나 회수화물이기 보다는 주로 지방이다. 5. 최아조작중에는 배가 11월중순의 파종기까지 4.2∼4.7mm로 발육하며 충분히 흡수하여 50∼60%에 이르고, 저장지방, 단백질, 전분이 가수분해하여 가용화되고 당분, 무기태인, 인지질, 핵산태인, 단백태인과 가용성질소의 증가를 보이고 있어 세포내용물의 전이가 일어나 발아에 필요한 물질을 축적하고 있다.

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